Dr. George STANCIU | Materials Science & Laser Materials | Best Researcher Award

Dr. George STANCIU | Materials Science & Laser Materials | Best Researcher Award

National Institute for Laser, Plasma and Radiation Physics, Romania

Author Profile

Scopus 

🎓 Early Academic Pursuits

Dr. George Stanciu was born on July 26, 1980, in Bucharest, Romania, and from an early age demonstrated a keen interest in the sciences, particularly in chemistry and materials. His academic path began at the prestigious University Politehnica of Bucharest, where he enrolled in the Faculty of Applied Chemistry and Materials Science. Over the course of five rigorous years (2002–2007), he developed a solid foundation in chemical engineering, culminating in the attainment of his Engineering Diploma. Eager to advance his knowledge and practical competencies, he continued his education with a Master’s degree in Composite Materials at the same institution between 2007 and 2009. During this period, he gained significant insight into the synthesis, characterization, and application of advanced materials—interests that would form the core of his future research.

Dr. Stanciu’s commitment to scientific exploration led him to doctoral studies from 2009 to 2012, where he focused on micro- and nanostructured perovskite-type materials—a challenging and highly impactful area of chemical engineering with far-reaching applications in optics, electronics, and energy storage. His PhD journey exemplified a fusion of theoretical depth and experimental acumen, laying the groundwork for a career in advanced materials science. 🧪📘

🧑‍🔬 Professional Endeavors

Following the successful completion of his PhD, Dr. Stanciu embarked on a progressive research career at Romania’s esteemed National Institute for Laser, Plasma and Radiation Physics (INFLPR). He joined the Laboratory of Solid-State Quantum Electronics, where he held multiple positions of increasing responsibility. From 2012 to 2013, he served as a Scientific Researcher Assistant, rapidly advancing to Scientific Researcher (2014–2020), and eventually achieving the title of Senior Researcher (CS III) in July 2020.

Parallel to his early research engagements, he gained industry experience as a Chemical Engineer at S.C. CEPROCIM S.A. between 2007 and 2009. This role in the Department of Binder Research Materials Projects honed his skills in applied chemical technologies, adding a practical, solutions-oriented perspective to his primarily academic background. This rare combination of industrial and academic experience has made Dr. Stanciu a versatile and insightful researcher. 🧑‍🏭🔬

A notable milestone in his postdoctoral career was his involvement in a prestigious research scholarship under the supervision of Professor Dr. Ecaterina Andronescu at the University Politehnica of Bucharest. His work focused on the “SrxBa1-xNb2O6 doped system,” supported by the European Social Fund (POS DRU), marking his active engagement with European-level scientific initiatives. 📚🌍

🔬 Contributions and Research Focus

Dr. Stanciu’s scientific contributions reflect a focused and evolving engagement with crystal growth technology, transparent polycrystalline ceramics, and non-linear optics. His expertise in X-ray diffraction (XRD) for structural analysis underscores his dedication to uncovering the fundamental properties of materials at the atomic and molecular scale.

Among his primary research interests is the technology of transparent ceramics, a field that bridges the domains of material science and optics. These ceramics have critical applications in lasers, biomedical devices, and defense technologies. Furthermore, his work in frequency conversion and non-linear optical materials places him at the intersection of photonics and advanced material engineering, supporting global advancements in high-efficiency light generation and signal processing. 🔍🧿

His academic output is remarkable: 34 peer-reviewed journal articles, 85 presentations at international conferences, and contributions to 2 proceedings volumes, reflecting both his commitment to scientific communication and the relevance of his research to global scientific communities. His consistent presence in international forums signals a researcher deeply engaged in the advancement and dissemination of knowledge. 🌐📊

🏅 Accolades and Recognition

Though his CV does not list formal awards, Dr. Stanciu’s trajectory within INFLPR and his rapid ascent to senior researcher status are clear indicators of his esteem within the Romanian scientific community. Being entrusted with a postdoctoral research project funded by the European Social Fund also demonstrates recognition at the institutional and continental level. His work under Professor Andronescu, one of Romania’s most respected scientists, further underscores the trust placed in his abilities and potential. 🏆👨‍🎓

🌍 Impact and Influence

Dr. Stanciu’s work has significant implications for the future of laser and photonic technologies, where precision materials play a crucial role in performance and innovation. His research into perovskite-type structures aligns with global priorities in energy, environmental sustainability, and next-generation electronics. By developing novel materials with finely tuned optical and structural properties, his contributions support advances in everything from clean energy solutions to medical imaging technologies.

Moreover, his involvement with INFLPR—a flagship research institute in Romania—places him in a strategic position to mentor young scientists, collaborate on multidisciplinary projects, and influence policy and funding directions within the national research ecosystem. 🌟🧭

🔮 Legacy and Future Contributions

Looking ahead, Dr. George Stanciu is well poised to expand his influence through cross-disciplinary collaborations, international research networks, and mentorship roles. As transparent ceramics, non-linear optics, and quantum electronics continue to gain importance in global technology sectors, his expertise will remain indispensable.

Given the rise in demand for perovskite-based applications in solar cells, LED devices, and sensing technologies, his foundational work in this area could lead to patentable innovations and technological breakthroughs. There is also strong potential for leadership in international consortia and EU-funded research initiatives.

His future contributions will likely continue to reflect the same intellectual rigor, collaborative spirit, and innovative mindset that have characterized his career so far—making him not just a researcher, but a builder of scientific legacies. 🌱🚀

📝Notable Publications

The Micro-Structure of the Celiac Ganglia—A Two-Photon Microscopy Study on Parkinson’s Disease

Authors: Morgos, Diana Theodora; Eftimie, Lucian George; Nicolae, Horia; Tulin, Adrian Daniel; Filipoiu, Florin Mihail
Journal: Diagnostics
Year: 2025

Differential Diagnosis of Thyroid Tumors Through Information Fusion from Multiphoton Microscopy Images Using Fusion Autoencoder

Authors: Kethireddy, Harshith Reddy; Tejaswee, A.; Eftimie, Lucian George; Stanciu, George A.; Paul, Angshuman
Type: Conference Paper
Year: Not explicitly mentioned (assumed 2024–2025)

A Coronaviral Pore-Replicase Complex Links RNA Synthesis and Export from Double-Membrane Vesicles

Authors: Chen, Anan; Lupan, Ana Mihaela; Quek, Rui Tong; Mitchison, Timothy J.; Salic, Adrian N.
Journal: Science Advances
Year: 2024

 Antibacterial Interactions of Ethanol-Dispersed Multiwalled Carbon Nanotubes with Staphylococcus aureus and Pseudomonas aeruginosa

Authors: Asaftei, Mihaela; Lucidi, Massimiliano; Anton, Stefan Razvan; Visca, Paolo J.; Stanciu, Stefan G.
Journal: ACS Omega
Year: 2024

Prof. Ning Yongquan | Materials Science and Engineering | Best Researcher Award

Prof. Ning Yongquan | Materials Science and Engineering | Best Researcher Award

Northwestern Polytechnical University, China

Author Profile

Google Scholar 

🎓 Early Academic Pursuits

Yongquan Ning’s academic journey began with a strong foundation in materials science and engineering, a discipline he would eventually come to master and significantly contribute to. Born on May 14, 1982, in the People’s Republic of China, Ning’s early academic promise was evident from his undergraduate years. He completed his Bachelor of Science in Materials Science and Engineering at Nanchang Hangkong University in 2005, a period during which he was already involved in hands-on research in composite materials. His undergraduate work, which explored the fabrication and thermophysical properties of SiCp/Al composites, showcased a keen interest in materials innovation and experimentation.

Driven by a thirst for deeper knowledge and technological contribution, Ning proceeded to Northwestern Polytechnical University (NPU) in Xi’an, where he earned his Master’s degree in 2008 and subsequently a Ph.D. in 2010. His doctoral research delved into the high-temperature deformation behavior and recrystallization mechanisms of powder metallurgy (P/M) superalloys, under the mentorship of the distinguished Prof. Zekun Yao. His academic career further culminated in a postdoctoral fellowship at NPU in 2011, complemented by a year as a research associate at the prestigious Hong Kong Polytechnic University. These formative years solidified his expertise and prepared him for a lifelong contribution to materials engineering. 📘🧪

🏢 Professional Endeavors

Upon the completion of his postdoctoral training, Dr. Ning took on a faculty position at the School of Materials Science and Engineering at Northwestern Polytechnical University. From his base at NPU, he launched a range of research initiatives with significant academic and industrial relevance. Among his most enduring projects has been the study and optimization of structural-gradient materials (SGMs) used in dual-property turbine disks—an innovation pivotal to aerospace engineering.

His professional work has seamlessly blended academic inquiry with applied science. Ning has actively investigated the intricate relationships between gradient-temperature-heat-treatment parameters and their impact on the microstructure and mechanical properties of advanced alloys. His understanding of microstructure transitions, particularly the control of duplex grain regions, has enabled optimization efforts that significantly enhance the dual mechanical properties needed in high-performance turbine components.

🔬 Contributions and Research Focus

Dr. Ning’s primary research focus has revolved around the development and refinement of high-performance superalloys and structural-gradient materials. His contributions to understanding microstructural evolution during thermomechanical processing, including isothermal forging and hot compression, have offered novel insights into recrystallization behaviors and grain refinement mechanisms.

His work with powder metallurgy FGH4096 superalloys between 2006 and 2010 established foundational knowledge about the internal relationships between flow behavior and initial microstructures in HIPed (Hot Isostatically Pressed) materials. Additionally, his investigations into IN718 and GH4133A superalloys under various deformation conditions have had a lasting impact on forging technologies and alloy design strategies. 🔧🧬

🏅 Accolades and Recognition

Dr. Ning’s academic excellence has been recognized consistently throughout his educational and professional career. As a student, he was the recipient of the First-Class Scholarship from NPU for four consecutive years (2006–2009), reflecting his outstanding academic performance and research achievements. In 2008, his growing expertise was acknowledged with the Second-Class Special Scholarship from the China Air-to-Air Missile Research Institute—an endorsement of both his intellectual capacity and the practical significance of his research in national defense technology.

In 2010, he was further honored with the Second-Class Chongde Scholarship awarded by the School of Materials Science and Engineering, signifying high regard from his academic community. 🏆📜

🌍 Impact and Influence

Through his research and teaching, Dr. Ning has influenced both his peers and a new generation of materials scientists. His investigations into gradient microstructures have provided critical pathways for improving dual-property materials, which are now crucial in aerospace and energy sectors. His close collaboration with both academic and industrial institutions has helped translate complex metallurgical theory into real-world engineering applications.

Furthermore, his work has added to the global body of knowledge on powder metallurgy and thermomechanical processing, enhancing the scientific community’s ability to develop materials that are lighter, stronger, and more resilient under extreme conditions. His scientific outputs not only push the boundaries of materials performance but also contribute directly to technological competitiveness in sectors vital to national and global progress. 🌐🚀

🧭 Legacy and Future Contributions

As a scholar grounded in both theory and application, Dr. Yongquan Ning’s legacy lies in his methodical approach to solving some of the most pressing challenges in materials science. With a professional ethos rooted in curiosity, precision, and innovation, he is poised to continue contributing significantly to the development of high-performance materials for aerospace, defense, and energy systems.

Looking forward, Ning is expected to deepen his research in structural-gradient materials, possibly exploring additive manufacturing integrations and AI-driven materials design—fields that align with global trends in smart manufacturing and digital engineering. Through continued mentorship, publication, and cross-disciplinary collaboration, he stands to leave an enduring mark on both academic research and industry practices. 🔭📈

📝Notable Publications

Competition between dynamic recovery and recrystallization during hot deformation for TC18 titanium alloy

Authors: Y.Q. Ning, X. Luo, H.Q. Liang, H.Z. Guo, J.L. Zhang, K. Tan
Journal: Materials Science and Engineering: A, Vol. 635, pp. 77–85
Year: 2015

Dynamic softening behavior of TC18 titanium alloy during hot deformation

Authors: Y.Q. Ning, B.C. Xie, H.Q. Liang, H. Li, X.M. Yang, H.Z. Guo
Journal: Materials & Design, Vol. 71, pp. 68–77
Year: 2015

DDRX and CDRX of an as-cast nickel-based superalloy during hot compression at γ′ sub-/super-solvus temperatures

Authors: B. Xie, H. Yu, T. Sheng, Y. Xiong, Y. Ning, M.W. Fu
Journal: Journal of Alloys and Compounds, Vol. 803, pp. 16–29
Year: 2019

Mechanisms of DRX nucleation with grain boundary bulging and subgrain rotation during the hot working of nickel-based superalloys with columnar grains

Authors: B. Xie, B. Zhang, Y. Ning, M.W. Fu
Journal: Journal of Alloys and Compounds, Vol. 786, pp. 636–647
Year: 2019

Microstructure evolution and underlying mechanisms during the hot deformation of 718Plus superalloy

Authors: B. Xie, B. Zhang, H. Yu, H. Yang, Q. Liu, Y. Ning
Journal: Materials Science and Engineering: A, Vol. 784, Article 139334
Year: 2020

Prof. Hetao Chu | Material Science Research | Best Researcher Award

Prof. Hetao Chu | Material Science Research | Best Researcher Award | 3601

University of Electronic Science and Technology of China, China

Profile

Orchid

Early Academic Pursuits 🎓

Chu Hetao’s journey into the realm of engineering and advanced materials began with a strong academic foundation. His passion for material sciences and structural engineering led him to the prestigious Harbin Institute of Technology, where he pursued a Ph.D. in Engineering at the Institute of Composite Materials and Structures, School of Astronautics. His doctoral research laid a solid groundwork for his future explorations into intelligent materials, composite structures, and flexible material applications. During these formative years, he honed his expertise in developing materials that could seamlessly integrate functionality with structural integrity, a theme that would later define his career.

Professional Endeavors and Research Focus 📚

As a Professor and Doctoral Supervisor, Chu Hetao has dedicated his career to pioneering research in the field of intelligent materials, high wave-transparent structural-functional integrated composites, and flexible materials. His work is at the intersection of engineering and material science, focusing on developing innovative solutions that can be applied in various high-tech industries, including aerospace, telecommunications, and biomedical fields. His ability to bridge fundamental scientific research with practical applications has set him apart as a thought leader in his field.

His research has been widely recognized, with over 30 publications in internationally renowned journals such as Science, Advanced Functional Materials, and ACS Nano. His contributions to an English monograph further demonstrate his role in shaping the academic discourse around composite materials. Through his studies, he has not only advanced theoretical knowledge but also contributed to real-world technological advancements that push the boundaries of material performance and integration.

Contributions and Innovations 🎨

Chu Hetao’s contributions to the field extend beyond publications and theoretical advancements. His inventive spirit has led to the application and authorization of 15 Chinese invention patents and one PCT (Patent Cooperation Treaty) patent. These patents reflect his commitment to developing new materials with enhanced functionalities, whether it be through improved sensing capabilities, actuation mechanisms, or wave-transparency features.

His research has garnered significant attention from both domestic and international media, highlighting its importance and transformative potential. Additionally, he has been invited to serve as a session chair and present academic reports at numerous conferences, further cementing his reputation as a leading expert in his domain. His ability to communicate complex material science concepts effectively has made him a sought-after speaker in academic and industrial circles alike.

Accolades and Recognition 🏆

Recognizing his exceptional contributions, Chu Hetao has been the recipient of several prestigious honors and awards. He was selected for the National High-level Youth Talent Program, a testament to his outstanding research achievements and potential to drive innovation in his field. His recognition as a Reserve Candidate of Sichuan Academic and Technical Leaders and his inclusion in the “Hundred Talents Program” at the University of Electronic Science and Technology of China further underscore his influence and leadership in academia.

In 2021, he was honored with the Outstanding Young Scientist Award by the International Forum on Advanced Materials (IFAM), recognizing his groundbreaking work in material sciences. These accolades reflect the impact of his research and its significance in advancing both academic knowledge and practical applications.

Impact and Influence 🌐

Beyond his individual achievements, Chu Hetao has made substantial contributions to the academic and scientific communities. He serves as a committee member of the Sichuan Science and Technology Collaborative Innovation Promotion Association and holds editorial board positions in esteemed journals such as J. Mater. Sci. Technol., Nano. Prec. Eng., and China Plastics. His role as a reviewer for high-impact journals like Advanced Functional Materials, Biomaterials, and ACS Applied Materials & Interfaces further highlights his expertise and influence in shaping contemporary research.

Additionally, he has been appointed as a science and technology expert for the Ministry of Education, the Ministry of Science and Technology, Sichuan Province, and Chongqing City. His advisory roles demonstrate his commitment to guiding national and regional scientific advancements and ensuring that research translates into meaningful technological progress.

Legacy and Future Contributions 🌟

Looking ahead, Chu Hetao’s work is poised to leave a lasting legacy in the field of intelligent and composite materials. His research continues to push the frontiers of material science, with potential applications spanning aerospace, defense, medical technology, and beyond. By mentoring doctoral students and leading innovative projects, he is shaping the next generation of researchers who will carry forward his vision of integrating structural and functional excellence in materials.

As technological demands evolve, his expertise in flexible and wave-transparent materials will play a crucial role in advancing next-generation technologies. Whether through academic publications, patented innovations, or collaborative research initiatives, Chu Hetao remains at the forefront of engineering breakthroughs, ensuring that his contributions will continue to influence scientific progress for years to come.

📝Notable Publications

Dielectric-mechanical couple effect of COF cyanate derived from dual functions of molecular interaction and chain entanglement

Author(s): Feifan Cai, Ruoyu Chen, Qichao Dong, Wansong Gu, Kai Zheng, Longjiang Deng, Hetao Chu
Journal: Journal of Materials Science & Technology
Year: 2025

Nanozyme‐Based Stretchable Hydrogel of Low Hysteresis with Antibacterial and Antioxidant Dual Functions for Closely Fitting and Wound Healing in Movable Parts

Author(s): Yanyan Li, Peng Yu, Jie Wen, Hui Sun, Dingqian Wang, Jinming Liu, Jianshu Li, Hetao Chu
Journal: Advanced Functional Materials
Year: 2022

Chemically Grafted Nanozyme Composite Cryogels to Enhance Antibacterial and Biocompatible Performance for Bioliquid Regulation and Adaptive Bacteria Trapping

Author(s): Yanyan Li, Dingqian Wang, Jie Wen, Peng Yu, Jinming Liu, Jianshu Li, Hetao Chu
Journal: ACS Nano
Year: 2021

Ultra‐Stretchable, Variable Modulus, Shape Memory Multi‐Purpose Low Hysteresis Hydrogel Derived from Solvent‐Induced Dynamic Micelle Sea‐Island Structure

Author(s): Yanyan Li, Dingqian Wang, Jie Wen, Jinming Liu, Dongyue Zhang, Jianshu Li, Hetao Chu
Journal: Advanced Functional Materials
Year: 2021

Overall Structure Construction of an Intervertebral Disk Based on Highly Anisotropic Wood Hydrogel Composite Materials with Mechanical Matching and Buckling Buffering

Author(s): Jinming Liu, Dingqian Wang, Yanyan Li, Ziqi Zhou, Dongyue Zhang, Jianshu Li, Hetao Chu
Journal: ACS Applied Materials & Interfaces
Year: 2021

Dr. Rajendra Patil | Materials Science | Best Researcher Award

Dr. Rajendra Patil | Materials Science | Best Researcher Award

M H Shinde Mahavidyalaya, Tisangi, India

Profile

Orchid 

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