Assoc Prof Dr. Ayse Nihan Basmaci | materials | Best Researcher Award

Assoc Prof Dr. Ayse Nihan Basmaci | materials | Best Researcher Award

Tekirdag Namik Kemal University, Turkey

Author Profile

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🎓 Early Academic Pursuits: The Foundations of Brilliance

Ayşe Nihan Basmacı’s academic journey began with a clear and passionate vision rooted in electrical and electronics engineering. Her foundational years were shaped at Pamukkale University, where she pursued a Bachelor of Science degree in Electrical-Electronics Engineering from 2004 to 2008. Her early interest in understanding the behavior of electronic systems, particularly the wave-based phenomena in engineered materials, guided her into graduate studies with an inquisitive mindset and technical precision.

She advanced seamlessly into a Master of Science at the same university, earning her degree in 2011. This formative period sharpened her theoretical understanding and experimental skills, setting a strong base for further scholarly exploration. Committed to academic excellence, she continued on to a Ph.D. in the same discipline, completing it in 2017. Her doctoral work laid the groundwork for future exploration into electromagnetic wave propagation, a field where she has made significant scholarly contributions. 📘💡

🧑‍🏫 Professional Endeavors: Educator and Innovator

Since 2012, Ayşe Nihan Basmacı has been an integral part of Tekirdağ Namık Kemal University, beginning her career as a lecturer and eventually rising to the rank of Associate Professor in the Department of Electronics and Automation within the Vocational School of Technical Sciences. Her dedication to education is evident in her decade-long contribution to developing electronic engineering curricula and mentoring students in practical and research-intensive environments.

Between 2021 and 2022, she also took on an administrative role as Deputy Director of the Research and Application Center, showcasing her leadership abilities and commitment to fostering an innovative research culture within the institution. 🔬👩‍💼

📡 Contributions and Research Focus: Exploring the Invisible

Assoc. Prof. Basmacı’s research centers around electromagnetic wave propagation, particularly in advanced materials like carbon nanotubes, photonic crystals, and welded functionally graded structures. She has a keen interest in understanding how electromagnetic waves interact with novel materials, which has vast implications in communications, photonics, and material science.

Her scholarly output is prolific and impactful. In recent years, she has published in respected international journals such as Materials, Coatings, Applied Sciences, and the Journal of Optoelectronics and Advanced Materials. Her work includes investigating backward wave behavior in carbon nanotube-coated metamaterials, and simulating electromagnetic properties in photonic-like welded structures using the finite element method.

She also delves into experimental and computational analyses, as seen in her studies on welded rods with functionally graded materials, and dual-mode microstrip filters for communication systems. This diverse but coherent body of research reflects both scientific depth and practical relevance. 🧲📐📶

🏆 Accolades and Recognition: A Scholar’s Rising Star

While specific awards and honors are not explicitly listed, her appointment as an Associate Professor in 2022 is a significant academic milestone that speaks volumes about her reputation, contributions, and recognition within the scientific community. Her collaborative works with other noted researchers like Filiz Seçkin, Ceyhun Karpuz, and Ali Kürşad Görür further underscore her visibility and respect in the field of electronics and applied physics.

The citation of her articles, particularly those published in high-impact journals with rigorous peer review, demonstrates the value of her work to both academia and industry. She has positioned herself as a knowledgeable voice in a highly technical and specialized area of research. 🥇📈

🌍 Impact and Influence: Bridging Theory and Application

Assoc. Prof. Basmacı’s research on carbon nanostructures and photonic waveguides has implications for the development of next-generation communication systems, sensors, and metamaterials. Through her investigations, she contributes to the global scientific understanding of how materials at the nanoscale behave under electromagnetic influence — a key to innovations in 5G/6G technologies, biomedical imaging, and defense systems.

Her academic influence also extends to her role as a mentor and educator. Generations of engineering students have benefited from her lectures and research supervision, gaining both technical skills and inspiration to pursue careers in electronics and material science. 🧑‍🎓🌐

🌱 Legacy and Future Contributions: A Vision of Progress

Looking ahead, Ayşe Nihan Basmacı stands at the confluence of emerging technologies and scientific discovery. Her expertise in computational electromagnetics and nanomaterials places her in a unique position to lead interdisciplinary research projects that could redefine materials engineering and telecommunications.

With the steady growth of fields like quantum computing, smart materials, and wearable electronics, her work is expected to become even more relevant. Her future contributions will likely focus on expanding the functionality of metamaterials and optimizing photonic structures for energy efficiency and signal clarity.

Through a rich combination of teaching, research, and leadership, Assoc. Prof. Basmacı is not only shaping the field of electromagnetic engineering but also cultivating a legacy of scientific curiosity and educational excellence. 🔭📚🚀

Characteristics of electromagnetic wave propagation in a segmented photonic waveguide

Author: Ayşe Nihan Basmacı
Journal: Journal of Optoelectronics and Advanced Materials
Year: 2020

Experimental analysis of welded rods with a functionally graded material approach

Author(s): Ayşe Nihan Basmacı, Filiz Seçkin, Mümin Şahin
Journal: Applied Sciences
Year: 2020

Design of tunable microstrip dual-mode bandpass filter having reconfigurable filtering characteristics for mobile applications

Author(s): Ceyhun Karpuz, Ali Kürşad Görür, Ayşe Nihan Basmacı
Conference: 46th European Microwave Conference (EuMC)
Year: 2016

Design and analysis of a compact dual-mode dual-band microstrip bandpass filter

Author(s): Ceyhun Karpuz, Ali Kürşad Görür, Ayşe Nihan Basmacı, Ahmet Özek
Journal: Journal of Electromagnetic Waves and Applications
Year: 2013

Dual‐mode dual‐band microstrip bandstop filter design with independently tunable center frequencies

Author(s): Ali Kürşad Görür, Ayşe Nihan Basmacı, Engin Doğan, Ceyhun Karpuz, Adnan Görür
Journal: Microwave and Optical Technology Letters
Year: 2017

Dr. Rajendra Patil | Materials Science | Best Researcher Award

Dr. Rajendra Patil | Materials Science | Best Researcher Award

M H Shinde Mahavidyalaya, Tisangi, India

Profile

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Early Academic Pursuits 🎓

Dr. Rajendra Pandurang Patil’s academic journey is marked by dedication, perseverance, and a relentless pursuit of knowledge. Born on January 18, 1982, in Kolhapur, India, he displayed a keen interest in chemistry from an early age. His educational foundation was laid at Kolhapur Board, where he completed his Secondary School Certificate (SSC) with distinction in 1997. Despite facing challenges, his passion for learning led him to achieve a first-class ranking in his Higher Secondary Certificate (HSC) in 1999.

His academic excellence continued as he pursued a Bachelor of Science (B.Sc.) degree from Shivaji University, Kolhapur, where he graduated in 2002 with an impressive 83% and a distinction. Driven by his fascination with inorganic chemistry, he furthered his studies with a Master of Science (M.Sc.) degree in Inorganic Chemistry, also from Shivaji University. In 2004, he secured a first-class distinction with 71.58%, solidifying his expertise in the field.

Recognizing his potential, he took the Graduate Aptitude Test in Engineering (GATE) in 2006, securing an outstanding score of 89.66, which highlighted his deep understanding of chemical sciences. His academic rigor culminated in a Ph.D. from Shivaji University in 2012, where he specialized in the synthesis, characterization, and applications of mixed-metal oxides under the mentorship of Prof. P. P. Hankare. His doctoral research paved the way for innovative advancements in material science and industrial chemistry.

Professional Endeavors 🏫

Dr. Patil’s commitment to education and research naturally led him to academia. Currently, he serves as an Assistant Professor in Chemistry at M. H. Shinde Mahavidyalaya, Tisangi, Taluka Gaganbavada, District Kolhapur. In this role, he has been instrumental in shaping the academic careers of numerous students, providing them with a strong foundation in chemical sciences. His teaching methodology combines theoretical principles with practical applications, ensuring that students grasp complex concepts with clarity and confidence.

His professional endeavors extend beyond the classroom, as he actively engages in curriculum development, academic mentorship, and student research projects. His expertise in inorganic chemistry, particularly in mixed-metal oxides and thin-film synthesis, has allowed him to mentor students in cutting-edge research, guiding them toward promising scientific careers.

Contributions and Research Focus 🔬

Dr. Patil’s research contributions have been significant in the field of material chemistry. His Ph.D. research on mixed-metal oxides has implications for various industrial applications, including catalysis, energy storage, and electronic materials. His work focuses on the synthesis and characterization of new compounds with enhanced properties, contributing to advancements in nanotechnology and sustainable chemistry.

His M.Sc. research on lead selenide thin films at different temperatures showcased his ability to explore semiconductor materials, paving the way for their applications in optoelectronics. Over the years, he has been actively involved in research projects that bridge the gap between fundamental science and real-world applications. His investigations into high-performance materials have provided valuable insights into improving industrial processes and developing sustainable solutions.

Beyond his independent research, Dr. Patil has collaborated with fellow scientists and institutions to explore interdisciplinary applications of chemical materials. His scholarly work is not only limited to experimental chemistry but also extends to theoretical modeling and analysis, further enriching the scientific community’s understanding of material properties.

Accolades and Recognition 🏆

Dr. Patil’s outstanding academic achievements and research contributions have earned him several accolades. His distinction as a Gold Medalist in his academic pursuits is a testament to his hard work and intellectual prowess. His exceptional GATE score further highlighted his analytical capabilities, positioning him among the top chemists in his domain.

Throughout his career, he has been recognized for his contributions to research, teaching, and scientific innovation. His work has been cited in various academic journals, and he continues to receive invitations to present his findings at national and international conferences. As a mentor and educator, he has been acknowledged for his ability to inspire students and foster a passion for scientific discovery.

Impact and Influence 🌍

Dr. Patil’s influence extends beyond the confines of his institution. His research on mixed-metal oxides has practical applications in industries related to catalysis, energy storage, and electronic devices. His expertise in thin-film technology contributes to advancements in nanomaterials, which are crucial in developing efficient electronic components.

As an educator, he has shaped the careers of aspiring chemists, many of whom have gone on to pursue higher education and research. His mentorship has guided students toward innovative projects, many of which have received recognition in academic circles. His ability to simplify complex scientific concepts has made chemistry more accessible and engaging for students, fostering a new generation of researchers and scientists.

His role as a faculty member also involves academic leadership, where he participates in curriculum development and institutional growth. Through his dedication to research and teaching, he has strengthened the scientific community, contributing to the advancement of chemistry as a discipline.

Legacy and Future Contributions 🚀

Looking ahead, Dr. Patil’s legacy in academia and research is set to expand further. His ongoing projects in inorganic chemistry and material science will continue to shape technological advancements, particularly in energy-efficient materials and sustainable industrial processes. His commitment to innovation ensures that his research will have a lasting impact on both academic and industrial sectors.

In the future, he aims to expand his research collaborations with national and international institutions, contributing to interdisciplinary studies that address global challenges. His vision includes mentoring more students in pioneering research, developing innovative materials with environmental benefits, and contributing to policy-making in scientific education.

With his strong foundation in chemistry, unwavering dedication to research, and passion for education, Dr. Patil remains a beacon of inspiration in the scientific community. His journey from a determined student to a distinguished researcher and educator exemplifies the power of perseverance, intellectual curiosity, and the pursuit of knowledge. His contributions will undoubtedly continue to influence the field of chemistry for years to come, leaving an indelible mark on academia and industry alike.

📝Notable Publications

 Highly stable dielectric frequency response of chemically synthesized cobalt substituted Zn-Mn-ferrites

Author: Not provided
Journal: Ceramics International
Year: 2025

Green synthesis of benzimidazole scaffolds using copper-substituted zinc aluminate in a sol-gel process

Author: Not provided
Journal: Journal of the Indian Chemical Society
Year: 2025

 Magnetically retrievable Nb2O5/CoFe2O4 photocatalysts for degradation of crystal violet dye pollutant under solar irradiation

Author: Not provided
Journal: Inorganic Chemistry Communications
Year: 2024

Studies on sol–gel autocombustion processed Ni–Zn–Mg ferrite system: effect of calcination temperature, thermoelectric power, and gas sensing application

Author: Not provided
Journal: Journal of Materials Science: Materials in Electronics
Year: 2024

Investigation of structural and magnetic properties of novel Zn-substituted Ni–Mg ferrites

Author: Not provided
Journal: Journal of Materials Science: Materials in Electronics
Year: 2023