Kavya Keremane | Biotechnology | Best Researcher Award

Dr. Kavya Keremane | Biotechnology | Best Researcher Award

postdoctoral researcher at The Pennsylvania State University, United States

Dr. Kavya S. Keremane is a distinguished postdoctoral research scholar at the Department of Materials Science and Engineering, Pennsylvania State University, USA. With a Ph.D. in Materials Science, her research bridges the realms of advanced optoelectronics, photovoltaics, and neuromorphic computing. She is an expert in designing, synthesizing, and fabricating next-generation materials and devices such as perovskite solar cells, biological sensors, and memory devices. Her journey encompasses experience from prestigious institutions across India, Singapore, and the United States. Dr. Keremane’s scholarly impact is evident through her editorial roles with Discover Energy (Springer Nature) and the Journal of Organic Chemistry Synthesis and Process Development, alongside a growing list of high-impact publications. Her interdisciplinary contributions continue to redefine how material science drives innovation in energy and bio-integrated electronics. 🌍🔬⚡

Professional Profiles📖

Google Scholar 

ORCID 

🎓 Education

Dr. Kavya S. Keremane earned her Ph.D. in Materials Science from the National Institute of Technology Karnataka (NITK), Surathkal, India, where she conducted pioneering work on perovskite solar modules and sustainable energy devices. She further deepened her expertise with thesis-based projects at Nanyang Technological University (NTU), Singapore, focusing on large-area carbon-based perovskite modules. Earlier, she completed her Master’s studies in Chemistry with a specialization in organic synthesis at a reputed Indian institution, contributing to research on β-amino acid derivatives at Syngene International Ltd., Biocon. Her academic journey blends theoretical knowledge with practical applications, especially in synthetic organic chemistry and device engineering. Dr. Keremane’s educational background reflects a seamless transition from drug discovery chemistry to energy harvesting materials, showcasing her versatile aptitude for research and innovation across multiple scientific domains. 📚🧪🌱

🧪 Experience

Dr. Keremane brings over a decade of multidisciplinary research and industrial experience. At Penn State University, she currently explores advanced optoelectronic materials, neuromorphic computing, and wireless power transfer systems. Her Ph.D. research included developing tandem solar cells, DSSCs, and large-area stable modules. During her time at NTU Singapore and NITK Surathkal, she focused on photovoltaics and organic semiconductor design. Before transitioning to academia, she worked at Biocon and SignalChem Lifesciences, where she contributed to the synthesis of anticancer drug candidates using advanced synthetic organic chemistry. Her research has led to innovations in DNA-perovskite memory devices and photochemical neurotransmitter sensors funded by NSF and AFSOR. As an editor and prolific researcher, Dr. Keremane integrates material design with translational goals, crafting cutting-edge solutions in energy and biosensing. Her diverse roles reflect her ability to merge deep scientific inquiry with technological application. 🔧⚗️🌞

🏅 Awards and Honors

Dr. Kavya S. Keremane has received prestigious fellowships and project grants from leading funding agencies, including the National Science Foundation (NSF), Air Force Office of Scientific Research (AFSOR), and the U.S. Army RIF program. These awards supported her groundbreaking research on DNA-integrated memory devices, laser-induced wireless power systems, and photoreceptive architectures. Her doctoral work on large-area carbon-based perovskite solar modules earned acclaim for its innovation and potential scalability. She has been recognized for academic excellence throughout her education and has played influential editorial roles in high-impact journals such as Discover Energy (Springer Nature). Her interdisciplinary research profile and significant scholarly output have positioned her as an emerging leader in material science and sustainable energy research. 🥇📖🌟

🔬 Research Focus

Dr. Keremane’s research traverses the interface of material science, optoelectronics, and bioelectronics. Her core areas include perovskite photovoltaics (including tandem and transparent structures), memristor devices for neuromorphic computing, and organic/inorganic hybrid materials for next-gen energy solutions. She is actively developing biosensors and biomimetic devices, photochemical neurotransmitter sensors, and quantum-enhanced optoelectronics. Her work integrates fundamental materials chemistry with device engineering, enabling practical applications in energy harvesting, wireless power transfer, and high-density data storage. She also explores large-area device fabrication for real-world deployment, emphasizing stability, scalability, and sustainability. With funding from top-tier organizations, her research continues to advance frontier technologies at the crossroads of electronics and biology. ⚡🧠🔍

🛠️  Research Skills

Dr. Kavya S. Keremane boasts a versatile skill set encompassing materials synthesis, nanostructuring, thin-film fabrication, and device engineering. She is proficient in optoelectronic material design, including quantum dots, hybrid perovskites, and organic semiconductors. Her expertise extends to solar cell fabrication (DSSC, tandem, organic, perovskite), photodetectors, and memristors. She has hands-on experience with laser-based systems for wireless energy transfer and designing bio-interfacing sensors for diagnostics. Her strong foundation in synthetic organic chemistry enables her to develop new functional molecules for both pharmaceutical and electronic applications. She is adept in advanced instrumentation, photophysical characterization, and collaborative R&D workflows, making her a valuable contributor to multidisciplinary scientific teams. 🧪💡🔬

✅ Conclusion 

Dr. Kavya S. Keremane is an exceptionally qualified candidate for the Best Researcher Award, with a track record that reflects both depth and breadth across interdisciplinary scientific domains. Her work in materials science, optoelectronics, and energy technology not only advances fundamental understanding but also drives practical innovations with real-world impact. Through her commitment to rigorous research and creative problem-solving, she has consistently delivered high-quality publications and meaningful contributions to the scientific community. Dr. Keremane’s ability to bridge theory and application underscores her unique position as a forward-thinking researcher. While further expanding her leadership in research funding and translational innovation would enhance her already impressive portfolio, her current achievements stand as a testament to her excellence and promise. She serves as a role model for emerging scientists, inspiring through both intellect and integrity. Dr. Keremane is a brilliant scientist whose work exemplifies innovation, dedication, and impact—strongly deserving of the Best Researcher Award.

Publications Top Notes📚

New carbazole-based symmetric double D–A type chromophores for DSSC application: Impact of di-anchoring nature on photoelectrochemical processes
Journal of Photochemistry and Photobiology A: Chemistry — 2025
Citations: N/A (recent/forthcoming)

A Molecular‐Level Exploration of Dopant‐Free Pyrazine‐Derived Hole Transport Materials: Investigation of Interfacial Interaction in Perovskite Photovoltaics
ChemPlusChem — 2025
Citations: N/A

Recent Advances in Aggregation-Induced Emission (AIE) Fluorescent Sensors for Biomolecule Detection
Chemosensors — 2025
Citations: N/A

Deciphering Potent Protein Tyrosine Phosphatase‐1B Inhibitors Through In silico Molecular Docking, MMGBSA, and Molecular Dynamics
ChemistrySelect — 2025
Citations: N/A

Pioneering the future of dentistry: AI-driven 3D bioprinting for next-generation clinical applications
Translational Dental Research — 2025
Citations: N/A

Dopant-free hydrophobic fluorene-based hole transport materials: impact of methoxy-substituted triphenylamine and carbazole peripheral groups on the performance of perovskite solar cells
Sustainable Energy & Fuels — 2025
Citations: N/A

Push–pull carbazole twin dyads as efficient sensitizers/co-sensitizers for DSSC application: effect of various anchoring groups on photovoltaic performance
Journal of Materials Chemistry C — 2025
Citations: N/A

Photovoltaic bioelectronics merging biology with new generation semiconductors and light in biophotovoltaics photobiomodulation and biosensing
npj Biosensing — 2024
Citations: ~7

HFIP‐Mediated Dual C(Ar)‐Alkylation Process Towards the Regioselective Synthesis of Triarylmethanes (TRAMs)
Chemistry – An Asian Journal — 2024
Citations: N/A

HFIP‐Mediated Cyclodesulfurization Approach for the Synthesis of 2‐Aminobenzoxazole and 2‐Aminobenzothiazole Derivatives
Asian Journal of Organic Chemistry — 2024
Citations: ~3

Reductive C−N Bond Formation of Nitroarenes Using Pd@rGO‐CuFe₂O₄ Magnetic Nanoparticles in Water towards the Synthesis of N‐Aryl Formamide and Azole Derivatives
Asian Journal of Organic Chemistry — 2024
Citations: N/A

Metal‐Free Organic Dyes for NiO‐Based Dye‐Sensitized Solar Cells: Recent Developments and Future Perspectives
Energy Technology — 2024
Citations: ~6

Exploring optical, electrochemical, thermal, and theoretical aspects of simple carbazole-derived organic dyes
Heliyon — 2024
Citations: ~15

Perovskite Optoelectronic Devices (Book) — 2024
Citations: N/A (book citations not typically tracked)

Synthesis and Characterization of Novel Pd@rGO−CuFe₂O₄ Magnetic Nanoparticles: A Recyclable Catalyst for C−C Coupling Reaction in Biomass‐Derived Organic Solvent
Asian Journal of Organic Chemistry — 2023
Citations: N/A

Synthesis, optical, electrochemical, and computational investigation of new cyanopyridine-centered organic dyads
Optical Materials — 2023
Citations: ~23

Push‐Pull Phenoxazine‐Based Sensitizers for p‐Type DSSCs: Effect of Acceptor Units on Photovoltaic Performance
ChemSusChem — 2022
Citations: ~12

New Carbazole-Based Sensitizers for p-Type DSSCs: Impact of the Position of Acceptor Units on Device Performance
The Journal of Physical Chemistry C — 2022
Citations: ~10

Carbazole based organic dyes as effective photosensitizers: A comprehensive analysis of their structure‐property relationships
Electrochemical Science Advances — 2022
Citations: ~24

Simple carbazole derivatives with mono/dimethoxyphenylacrylonitrile substituents as hole‐transporting materials: Performance studies in hybrid perovskite solar cells
Electrochemical Science Advances — 2021
Citations: ~10

Improving the Performance of Carbon-Based Perovskite Solar Modules (70 cm²) by Incorporating Cesium Halide in Mesoporous TiO₂
ACS Applied Energy Materials — 2021
Citations: ~21

Simple 3,6‐disubstituted Carbazoles as Potential Hole‐Transport Materials: Photophysical, Electrochemical and Theoretical Studies
Photochemistry and Photobiology — 2020
Citations: ~24

A simple D-A-π-A configured carbazole based dye as an active photo-sensitizer: A comparative investigation on different parameters of cell
Journal of Molecular Liquids — 2020
Citations: ~44

Solvent selection for highly reproducible carbon-based mixed-cation hybrid lead halide perovskite solar cells via adduct approach
Solar Energy — 2020
Citations: ~15

Simple Thiophene Based Organic Dyes as Active Photosensitizers for DSSC Application: from Molecular Design to Structure Property Relationship
Journal of Nano- and Electronic Physics — 2020
Citations: ~9

Simple thiophene-bridged D–π–A type chromophores for DSSCs: a comprehensive study of their sensitization and co-sensitization properties
Physical Chemistry Chemical Physics — 2020
Citations: ~45

Improvement in performance of N3 sensitized DSSCs with structurally simple aniline based organic co-sensitizers
Solar Energy — 2018
Citations: ~46

Highly efficient carbazole based co-sensitizers carrying electron deficient barbituric acid for NCSU-10 sensitized DSSCs
Solar Energy — 2018
Citations: ~34

Naghmeh Satarzadeh | Biotechnology | Best Researcher Award

Assist. Prof. Dr. Naghmeh Satarzadeh | Biotechnology | Best Researcher Award

Assistant Professor at Kerman University of Medical Sciences, Iran

Dr. Naghmeh Satarzadeh is a dynamic Iranian researcher and academic, currently pursuing her Ph.D. in Pharmaceutical Biotechnology at Kerman University of Medical Sciences. With a solid foundation in microbiology and biotechnology, her expertise spans across nanomedicine, phage therapy, and microbial applications in drug development. Over the years, she has made significant contributions to the field of biosynthesized nanoparticles and antibacterial agents, with multiple peer-reviewed publications. Naghmeh is also an active reviewer for prestigious international journals, showcasing her commitment to advancing scientific knowledge. Her passion for innovation is reflected in her award-winning research ideas and her involvement in commercializing health technologies. In addition to her research, she has taught several undergraduate and Pharm.D. courses, further underlining her dedication to education and mentorship. Known for her academic excellence and multidisciplinary approach, she continues to push the boundaries of science through collaboration, creativity, and resilience.

Professional Profiles📖

ORCID 

Education 🎓

Dr. Naghmeh Satarzadeh’s academic journey began with a B.Sc. in Microbiology from Islamic Azad University (2005–2009), where she developed a deep interest in microbial sciences. She pursued her M.Sc. in Microbial Biotechnology at Payam Noor University (2011–2013), gaining hands-on experience in applied microbiology and molecular techniques. In 2017, she embarked on her Ph.D. in Pharmaceutical Biotechnology at the Faculty of Pharmacy, Kerman University of Medical Sciences, where she has since distinguished herself through pioneering research in nanoparticle biosynthesis and phage technology. Her educational path is marked by a consistent pursuit of innovation, critical thinking, and academic excellence. Her achievements include top GPA among Ph.D. entrants and multiple recognitions for her research ideas and outputs. Dr. Satarzadeh’s formal training is complemented by her deep understanding of both fundamental biology and advanced biotechnological techniques, positioning her as a versatile scholar capable of translating science into impactful medical solutions.

Work Experience💼

Dr. Naghmeh Satarzadeh has cultivated a rich blend of academic, research, and teaching experience throughout her career. As a lecturer, she has taught various undergraduate and Pharm.D. courses, including Genetics Laboratory, Molecular Biology, and Biotechnology, shaping future generations of scientists. Her research experience includes extensive laboratory work in DNA extraction, nanoparticle synthesis, bacteriophage biology, and cytotoxicity analysis. She has led and co-authored over 20 scientific publications, many of which explore innovative biomedical applications of biosynthesized nanoparticles and phages. Dr. Satarzadeh is also a trusted peer reviewer for several leading journals such as BMC Microbiology, BioNanoScience, and Virology Journal, which speaks to her credibility in the scientific community. She has actively contributed to health technology innovation centers, bridging the gap between research and practical application. With a career grounded in interdisciplinary science and translational research, Dr. Satarzadeh continues to build impactful experiences that serve both academia and society.

Awards and Honors 🏆

Dr. Naghmeh Satarzadeh has been recognized multiple times for her outstanding academic performance and innovative contributions to biotechnology. In 2018, her research idea was selected for presentation at the First Pharmaceutical Technology Commercialization Festival in Dubai. She earned first place in both the 2020 Idea Talk Speech Competition and the 2021 national call for extremophile research proposals. Her scientific excellence was further acknowledged in 2022 and 2023 when she registered novel bacterial strains (Bacillus tequilensis ASFS1 and Brevundimonas vesicularis strain sataricum) in GenBank. In 2023, she achieved the highest GPA among Ph.D. entrants in her field and was named Outstanding Talent. She was also recognized by Kerman University’s Health Technology Incubator and awarded First Researcher by both the National Student Research Committee and the Faculty of Pharmacy. These accolades reflect her dedication to scientific innovation, academic leadership, and her ability to transform complex research into recognized contributions.

Skills💡

Dr. Satarzadeh is highly skilled in a wide range of laboratory techniques essential for modern biomedical research. Her molecular biology toolkit includes DNA extraction, PCR, multiplex PCR, PCR-RFLP, and SDS-PAGE. She has hands-on experience with electrophoresis, bacteriophage cultivation, and DNA sequencing. She is proficient in nanoparticle synthesis using both bacterial and herbal sources and in analyzing their bioactivity through cytotoxicity and antioxidant assays. Her expertise extends to microbial testing, HPLC, TLC, and FTIR spectroscopy. In cell biology, she works adeptly with cell culture systems and MTT assays. She is proficient in data analysis using SPSS and is adept with scientific software such as Endnote, Chromas, CodonCode, CLC Genomics, IRPal, and ChemDraw. Additionally, her skillset includes primer design and gene analysis using Gene Runner. These diverse capabilities enable her to conduct interdisciplinary research at the intersection of microbiology, nanotechnology, and pharmacology.

Research Focus 🔬

Dr. Naghmeh Satarzadeh’s research centers around microbial biotechnology, with a specialized focus on biosynthesized nanoparticles, phage therapy, and microbial agents for medical applications. Her work bridges microbiology and nanomedicine, leveraging bacteria and bacteriophages to synthesize metal nanoparticles with therapeutic properties, including anticancer, antibacterial, and antioxidant effects. She is particularly interested in extremophiles and their unique biochemical pathways for novel compound production. Her recent studies delve into the biomedical potential of selenium and arsenic nanostructures, immunoglobulin Y conjugation, and green synthesis using medicinal plants like Mentha pulegium. Dr. Satarzadeh also explores epigenetic interactions with nanomaterials and the role of microbial agents in combatting drug-resistant infections and viral diseases such as COVID-19. Her research stands out for its interdisciplinarity, combining molecular biology, pharmacology, and material science to develop sustainable, effective health solutions. She is passionate about translating lab-based discoveries into clinical and industrial applications for a healthier future.

Conclusion✅

Dr. Naghmeh Satarzadeh is a highly competitive and deserving candidate for the Best Researcher Award. Her multidisciplinary research contributions, peer recognition, and academic accomplishments collectively present a compelling case. While a few areas such as international engagement and commercialization can be enhanced, her overall profile aligns very well with the criteria typically valued for such an award. She exemplifies innovation, productivity, and academic service.

Publications Top Notes📚

COVID-19 (Coronavirus disease 2019): a new coronavirus disease

📑 Citations: 104

📅 Year: 2020

Mentha pulegium as a source of green synthesis of nanoparticles…

📑 Citations: 38

📅 Year: 2023

An insight into biofabrication of selenium nanostructures and their biomedical application

📑 Citations: 25

📅 Year: 2023

Medicinal and Therapeutic Properties of Ephedra

📑 Citations: 25

📅 Year: 2022

Facile microwave-assisted biosynthesis of arsenic nanoparticles…

📑 Citations: 21

📅 Year: 2023

Antimicrobial activity of Ephedra pachyclada methanol extract…

📑 Citations: 18

📅 Year: 2016

Association between VKORC1 gene polymorphism and warfarin dose…

📑 Citations: 14

📅 Year: 2020

A review on immunoglobulin Y (IgY) conjugated with metal nanoparticles…

📑 Citations: 13

📅 Year: 2023

Phage therapy as a glimmer of hope in surgical site infections

📑 Citations: 12

📅 Year: 2024

Synthesized arsenic nanoparticles and their biomedical potential: a review

📑 Citations: 10

📅 Year: 2024

The impact of COVID-19 on liver injury in various age groups

📑 Citations: 10

📅 Year: 2023

The use of phages for the biosynthesis of metal nanoparticles…

📑 Citations: 9

📅 Year: 2024

Purification and anticancer activity of iron oxide nanoparticles by Bacillus tequilensis

📑 Citations: 5

📅 Year: 2024

The use of Ephedra herbs in the treatment of COVID-19

📑 Citations: 5

📅 Year: 2023

The spread of carbapenemase genes in K. pneumoniae in Iran: A review

📑 Citations: 5

📅 Year: 2021

Mutuality of epigenetics and nanoparticles: two sides of a coin

📑 Citations: 4

📅 Year: 2024

Relationship between early childhood caries and lactose in breast milk

📑 Citations: 3

📅 Year: 2022

Biological applications of nanoparticles synthesized via Olea europaea

📑 Citations: 2

📅 Year: 2024

[Cu(dimethylbpy)₂Cl]PF₆ complex as an antibacterial agent

📑 Citations: 1

📅 Year: 2024

Hepatitis B and C infection in Jirof blood donors (2011–2016)

📑 Citations: 1

📅 Year: 2022

Jiabin Xu | Biotechnology | Best Researcher Award

Dr. Jiabin Xu | Biotechnology | Best Researcher Award

Researcher at Harbin Institute of Technology, China

Jiabin Xu is a dedicated researcher specializing in ultra-precision grinding, intelligent materials, and material engineering. His academic journey spans multiple top institutions in China, including Harbin Institute of Technology, Xi’an Jiaotong University, and Tianjin University of Technology and Education. Jiabin has been actively involved in national research projects and has published multiple high-impact journal articles. His research focuses on cutting-edge advancements in precision manufacturing, materials science, and advanced machining processes. He has served as a reviewer for renowned journals, demonstrating his commitment to academic excellence. With expertise in numerical control machining, cold atmospheric plasma processing, and electrospinning technology, he continues to contribute significantly to the field of advanced materials and precision engineering. Jiabin Xu’s research efforts are recognized in both academic and industrial applications, making him a promising scientist in his field.

Professional Profiles📖

ORCID

Education 🎓

Jiabin Xu has pursued a rigorous academic journey in mechanical and mechatronics engineering. He is currently a Ph.D. candidate in Mechatronics Engineering at Harbin Institute of Technology, China (2020-2025), where he specializes in precision manufacturing and ultra-precision grinding. Prior to this, he earned his M.S. in Mechanical Engineering from Xi’an Jiaotong University (2016-2018), completing the program a year early due to his outstanding academic performance. His undergraduate studies were at Tianjin University of Technology and Education (2011-2016), where he obtained a B.S. in Mechanical Engineering, equipping him with fundamental knowledge in mechanical design and machining. Before his university education, he completed a technical diploma in Numerical Control Machining (2004-2008) at Xi’an Engineering Technician College, gaining hands-on expertise in CNC machining and automation. His early education began at Xi’an Gaoxin No.6 High School (2001-2004), where he built the foundational skills that later propelled his career in engineering.

Work Experience💼

Jiabin Xu has accumulated extensive experience in precision manufacturing, materials engineering, and research. He is currently a Ph.D. candidate at Harbin Institute of Technology (2020-Present), where he conducts advanced research in mechatronics and ultra-precision grinding. As a researcher in National Major Science and Technology Projects, he has contributed to critical national research initiatives, focusing on high-precision material processing. His expertise has also led him to serve as a reviewer for prestigious journals such as Heliyon and Materials Science in Semiconductor Processing, evaluating cutting-edge studies in his field. Prior to his doctoral studies, he worked as a research assistant at Xi’an Jiaotong University (2016-2018), engaging in projects related to mechanical engineering and materials science. During his Ph.D., he was also a graduate student researcher specializing in precision manufacturing and aeronautical science. His early career included hands-on experience as an engineer trainee in various precision manufacturing companies, gaining practical industry knowledge.

Awards and Honors 🏆

Jiabin Xu has received multiple accolades for his outstanding contributions to precision manufacturing and materials engineering. He was awarded funding from the National Science and Technology Major Project of China, recognizing his innovative research in ultra-precision grinding and advanced materials. Additionally, he secured a grant from the National Key R&D Program of China, supporting his work in high-precision material processing. His academic excellence has been distinguished throughout his graduate and doctoral studies, earning recognition for his research impact. His expertise and dedication have also been acknowledged by prestigious international journals, where he serves as a reviewer for publications such as Heliyon and Materials Science in Semiconductor Processing. These honors reflect his commitment to advancing cutting-edge manufacturing technologies and his significant contributions to the scientific community.

Skills💡

Jiabin Xu possesses a strong expertise in precision grinding and machining, specializing in ultra-precision techniques to enhance material processing efficiency. His deep knowledge in material engineering and surface modification focuses on optimizing RB-SiC ceramics, a crucial material in high-performance applications. With a proficiency in numerical control machining (CNC), he expertly operates and optimizes high-precision equipment for complex manufacturing processes. His advanced research in cold atmospheric plasma processing explores innovative material treatment mthods to improve surface properties and performance. In addition to his technical skills, Jiabin excels in scientific writing and peer review, having published extensively in top international journals while contributing as a reviewer for reputed scientific publications. Furthermore, his expertise in electrospinning and nanotechnology drives the development of innovative materials with enhanced mechanical and functional properties. His multidisciplinary skill set makes him a key contributor to advancements in precision manufacturing and material science.

Research Focus 🔬

Jiabin Xu’s research revolves around ultra-precision grinding of RB-SiC ceramics and the development of intelligent materials, aiming to enhance the efficiency and accuracy of modern manufacturing processes. His work explores cold atmospheric plasma processing, a cutting-edge technique that improves material properties for advanced industrial applications. With a strong foundation in numerical control machining and optimization, he investigates innovative strategies to enhance machining precision and performance. Additionally, he delves into electrospinning nanofiber technology, leveraging its potential to create high-performance materials with superior mechanical and functional properties. His expertise extends to aeronautical and astronautical applications, where precision manufacturing plays a crucial role in the development of aerospace components. Furthermore, he actively works on advanced material surface modifications, focusing on improving durability, wear resistance, and performance in industrial applications. Through his research, Jiabin Xu continues to push the boundaries of material engineering and precision manufacturing technologies.

Conclusion✅

Jiabin Xu is a strong candidate for the Best Researcher Award, given his impressive publication record, funding achievements, and contributions to precision manufacturing and materials science. His dedication to high-quality research and innovative methodologies makes him a noteworthy contender. Strengthening international collaborations, leadership roles, and applied industrial contributions would further solidify his standing as a top researcher in his field.

Publications Top Notes📚

 

Investigation into the role of electrospinning nanofiber technology based on controlled magnetic-electric field

Journal of Magnetism and Magnetic Materials, 2025-03

DOI: 10.1016/j.jmmm.2025.172991

Investigation into the role of Si and SiC phases in RB-SiC ceramics surface modified ultra-precision grinding

Materials Science in Semiconductor Processing, 2024-12

DOI: 10.1016/j.mssp.2024.108786

Euler’s equation grinding track, microgrinding mechanism, and process research of space optical crystal materials

The International Journal of Advanced Manufacturing Technology, 2023-10

DOI: 10.1007/s00170-023-12193-4

Experimental study on ultrasonic grinding of quartz and glass-ceramics

Non-traditional Machining, 2023-09

DOI: 10.19287/j.mtmt.1005-2402.2023.09.006

Study on the Cold Atmospheric Plasma Process via Oxygen (O₂) Fluid Flow Fabrication RB-SiC Ceramic

International Journal of Precision Engineering and Manufacturing, 2023-08

DOI: 10.1007/s12541-023-00823-6

Study on the effect of tungsten alloy milling process on surface roughness

ICAMTMS 2023 (Conference Paper), 2023-07-18

DOI: 10.1117/12.2688727

Wheel wear behavior and its influence on grinding performance in electrical discharge diamond grinding of reaction-bonded silicon carbide

Journal of Manufacturing Processes, 2023-01

DOI: 10.1016/j.jmapro.2022.12.024

Investigation into the role of cold atmospheric plasma on the precision grinding of RB-SiC ceramic at room temperature

The International Journal of Advanced Manufacturing Technology, 2022-07-27

DOI: 10.1007/s00170-022-09554-w

Investigation into the Role of Cold Atmospheric Plasma on the Precision Grinding of RB-SiC Ceramic at Room Temperature (Preprint)

The International Journal of Advanced Manufacturing Technology, 2021-11-30

DOI: 10.21203/rs.3.rs-1106967/v1

Controllable generation of nanofibers through a magnetic-field-assisted electrospinning design

Materials Letters, 2019-07-15

DOI: 10.1016/j.matlet.2019.03.080

Analysis of micro-failure behaviors in artificial muscles based on fishing line and sewing thread

IOP Conference Series: Materials Science and Engineering, 2017-05-23

DOI: 10.1088/1757-899x/213/1/012003

Nadeem Zaidkilani | Biotechnology | Best Zoology Research Award

Mr. Nadeem Zaidkilani | Biotechnology | Best Research Award

  PhD Researcher In AI at Rovira I Virgili University, Palestine

Nadeem Zaidkilani is a Palestinian computer science and software engineering professional with extensive experience in business analysis, software design, and quality assurance. He obtained his bachelor’s degree in Computer Science from Birzeit University in 2005 and later pursued a master’s in Software Engineering from the same institution in 2019. Over the years, he has worked in various roles, including Senior Application Specialist at Paltel and Text Mining Engineer, contributing to the enhancement of electronic systems, business portals, and document management solutions. His expertise extends to deep learning, image processing, computer vision, and natural language processing (NLP). Currently, he is pursuing a Ph.D. in Computer Engineering and Mathematics at URV University, Spain, focusing on medical image analysis using artificial intelligence. With strong programming skills in Python, Java, and C++, Nadeem continues to explore AI-driven solutions for healthcare and other domains, leveraging advanced technologies for innovative problem-solving.

Professional Profiles📖

Scopus

Education 🎓

  • Bachelor’s Degree in Computer Science (2005) – Birzeit University 🏅
    Nadeem’s undergraduate studies laid the foundation for his expertise in programming, database management, and software development. He gained proficiency in Java, C++, and web technologies, leading to early career opportunities in software engineering.

  • Master’s Degree in Software Engineering (2019) – Birzeit University 🎖️
    His master’s research focused on automatic classification of app reviews for requirements engineering, specifically analyzing user needs for healthcare applications. He mastered agile methodologies, system architecture, and business process modeling.

  • Ph.D. in Computer Engineering & Mathematics (Ongoing) – URV University, Spain 🎓
    Currently, Nadeem is researching computer vision and deep learning for medical image analysis, employing AI-based techniques to enhance diagnostics. His work integrates advanced machine learning, convolutional neural networks (CNNs), and medical imaging technologies to improve healthcare solutions.

Work Experience💼

  • Part-Time Lecturer (2024–Present) – Al-Zaytoonah University of Science and Technology 🎤
    Teaching Python, C++, and HCI, focusing on Agile and Scrum methodologies for UI/UX design.

  • Text Mining Engineer (2023–2024) 🔍
    Developed a biomedical literature classification system using Python, MySQL, INDRA, and PubMed, enhancing researcher workflows.

  • Senior Application Specialist (2012–2022) – Paltel 📡
    Managed portals, electronic payment systems, document management, and vendor systems to optimize business operations.

  • Senior Software Developer (2009–2012) – Hulul Company 💻
    Led the development of donor management and archiving systems, using JEE, Struts 2, and JavaScript.

  • IT Manager (2007–2009) – Ministry of Finance 📊
    Supervised IT projects, project timelines, and reporting structures.

  • Junior Developer (2005–2007) – Palestinian Authority Tax System 💾
    Contributed to tax management software using J2EE, XML, and Oracle 10g.

Awards and Honors 🏆

  • Scholarship for Ph.D. Studies – Received a merit-based scholarship at URV University, Spain, for his research in AI-driven medical image analysis.
  • Best Master’s Research Award – Recognized for his Automatic Classification of App Reviews for Requirements Engineering, focusing on user needs in healthcare applications.
  • AI Research Grant – Secured funding for text mining in biomedical research, supporting advancements in NLP and knowledge extraction.
  • Outstanding Contribution Award (Paltel, 2020) – Honored for enhancing Paltel’s electronic systems, particularly in E-Pay, EDMS, and Business Portals.
  •  Top Software Engineer Recognition – Acknowledged by Hulul Company for leading the development of high-impact enterprise applications.

Skills 💡

  • Nadeem Zaidkilani possesses a diverse and extensive technical skill set, making him proficient in various aspects of software engineering, artificial intelligence, and research. He is well-versed in programming languages such as Python 🐍, Java ☕, C++ 🚀, and JavaScript 🌐, allowing him to develop robust applications across multiple domains. His expertise in machine learning and AI includes frameworks like TensorFlow 🤖, Keras 🧠, PyTorch 🔥, and OpenCV 👀, enabling him to implement deep learning models for image processing and AI-driven applications.
  • In the field of data science and natural language processing (NLP), Nadeem utilizes Scikit-learn 📈, Pandas 🐼, NLTK 🗣️, and SpaCy 🧩 for analyzing datasets, extracting insights, and automating text processing. His software development expertise spans JEE 🌍, Struts 2 🏗️, Hibernate 🏛️, and Spring Boot 🌱, allowing him to build scalable enterprise applications. Additionally, he has hands-on experience in database management, using MySQL 🗄️, PostgreSQL 🛢️, and Oracle DB 🔗 for efficient data storage and retrieval.
  • As an advocate of Agile and Scrum methodologies, Nadeem integrates Jira 📋, Confluence 📑, and Kanban 🚦 to streamline project management and ensure efficient team collaboration. His knowledge in cloud and DevOps technologies includes Docker 🐳, Kubernetes ☁️, and GitHub Actions 🔄, facilitating automated deployment and scalable infrastructure. Moreover, he leverages scientific research tools such as PubMed 🏥, INDRA 🔬, and LaTeX 📖 to support his research in biomedical AI and text mining, further strengthening his role as a technology-driven researcher and innovator. 🚀

Research Focus 🔬

  • Nadeem Zaidkilani’s research focuses on the intersection of computer vision, deep learning, and artificial intelligence (AI) in medical imaging, aiming to develop innovative solutions for healthcare and technology-driven applications. His expertise in medical image analysis enables him to build deep learning-based diagnostic tools for detecting anomalies in MRI, CT, and X-ray images, improving early disease detection and patient outcomes. Additionally, he applies natural language processing (NLP) techniques to biomedical literature, leveraging text mining to extract and classify critical health-related insights, which aids in medical research and decision-making.
  • In the realm of deep learning and AI, Nadeem implements convolutional neural networks (CNNs) and transformer-based models for image segmentation, feature extraction, and classification, enhancing the accuracy and efficiency of automated diagnostic systems. His work in E-health applications focuses on integrating AI-driven solutions into healthcare systems, enabling automated diagnostics and decision support for medical practitioners.
  • Beyond healthcare, Nadeem’s expertise extends to software engineering and business analysis, where he integrates AI technologies into enterprise systems, E-Services, EDMS (Electronic Document Management Systems), and fintech solutions. His research contributes to the development of intelligent, data-driven applications that bridge the gap between AI, healthcare, and enterprise automation, driving innovation in both the medical and technological domains

Conclusion✅

Nadeem Zaidkilani is a strong contender for the Best Researcher Award due to his multi-disciplinary expertise in AI, computer vision, and biomedical informatics. His work in deep learning for medical imaging and text mining for biomedical applications highlights his innovative approach to solving real-world challenges. Enhancing publication output and interdisciplinary collaborations will further solidify his position as a leading researcher in his domain.

Publications Top Notes📚

  • “CoAtUNet: A Symmetric Encoder-Decoder with Hybrid Transformers for Semantic Segmentation of Breast Ultrasound Images”

    • Authors: N. Zaidkilani, M.Á. García, D.S. Puig
    • Journal: Neurocomputing
    • Year: 2025
    • Citations: 0
  • “Arabic Topic Classification Corpus of the Nakba Short Stories”

    • Authors: O. Hamed, N. Zaidkilani
    • Conference: Proceedings of the First International Workshop on Nakba Narratives as Language Resources
    • Year: 2025
    • Citations: Not specified
  • “Exploring Author Style in Nakba Short Stories: A Comparative Study of Transformer-Based Models”

    • Authors: O. Hamed, N. Zaidkilani
    • Conference: Proceedings of the First International Workshop on Nakba Narratives as Language Resources
    • Year: 2025
    • Citations: Not specified