Njemuwa Nwaji | Chemistry and Materials Science | Research Excellence Distinction Award

Assist. Prof. Dr. Njemuwa Nwaji | Chemistry and Materials Science | Research Excellence Distinction Award

Institute of Fundamental Techmological Research, Polish Academy of Science | Poland

The research focuses on nanotechnology-driven solutions for energy storage, energy conversion, and advanced functional materials. Core expertise lies in the rational synthesis of novel nanostructured materials with tailored physicochemical properties for next-generation electronic and energy applications. Significant contributions have been made in the development of advanced nanomaterials for photo- and electrocatalysis, particularly targeting efficient hydrogen production through water splitting by optimizing catalyst composition, morphology, and interfacial charge-transfer processes. Another major research direction involves energy storage systems, with an emphasis on designing high-performance electrode materials for supercapacitors using diverse synthetic strategies to achieve enhanced capacitance, stability, and rate capability. In addition, research extends into biocompatible nanomaterials, including hydrogel- and fiber-based systems for biomedical applications such as controlled drug delivery and self-powered implantable devices. The work integrates materials chemistry, nanofabrication, and electrochemical characterization to address critical challenges in sustainable energy technologies. Collaborative and interdisciplinary research efforts have resulted in impactful publications and the supervision of graduate-level research projects in nanomaterials synthesis, catalysis, and energy-related applications, contributing to advancements in clean energy and functional nanomaterials research.

Citation Metrics (Scopus)

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Featured Publications

Sinan Başçeken | Pyrrole Compounds | Research Excellence Award

Prof. Dr. Sinan Başçeken | Pyrrole Compounds | Research Excellence Award

Hitit University | Turkey

Prof. Dr. Sinan Başçeken is a distinguished Turkish chemist recognized for his contributions to organic synthesis, catalysis, and advanced chemical methodology. He completed his foundational education in chemistry at Mersin University before advancing to the University of Paderborn, where he pursued both master’s and doctoral research that explored gas–liquid mass transfer phenomena and the preparative potential of novel chiral biaryl transition-metal catalysts. His academic career at Hitit University began with specialist and assistant professor roles, progressing to associate professor and ultimately professor in the Department of Chemistry, where he continues to contribute to teaching, research, and scientific leadership. Prof. Başçeken’s research encompasses organometallic chemistry, catalytic reaction mechanisms, heterocyclic synthesis, and innovative ligand-metal systems with applications in fine chemicals and materials science. He has supervised graduate research, including work on carbon-carbon coupling reactions such as Sonogashira functionalization of heterocyclic structures. His scholarly influence is reflected in an h-index of  with  citations and  published documents indexed in major scientific databases. Widely respected for his interdisciplinary approach, Prof. Başçeken continues to expand the frontiers of synthetic chemistry through rigorous experimentation, collaborative research, and impactful academic mentorship.

Profile: SCOPUS | ORCID 

Featured Publications 

Karakiliç, E., Başçeken, S., Eskiler, G. G., Uzuner, U., & Baran, A. (2025). Bioimaging of thiazolidine-4-one-based new probes, fluorimetric detection of Cu²⁺ “on–off” sensor property, DFT calculation, molecular docking studies, and multiple real samples application. Food Chemistry, 141269.

Mesci, S., Dumlupınar, S., & Başçeken, S. (2025). Synthesis and characterization of N-propargyl-3-nitropyrrole derivatives: In silico molecular docking studies, and cytotoxic activities in lung cancer. Journal of Molecular Structure, 144925.

Çiçek, E., Munar, İ., Çınar, S. A., Başçeken, S., Monard, G., Aviyente, V., & Sungur, F. A. (2025). Computational insights into substrate-assisted citrullination mechanisms of PAD2 isozyme: A comparative analysis of reaction pathways. Journal of Molecular Graphics and Modelling, 109107.

Çol, S., Başçeken, S., & Baran, A. (2024). Synthesis of biscarbazole derivative, detection of the “on–off” sensor property of Cu²⁺ by fluorimetry, and anti-cancer evaluation. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 124624.

Akbaba, Y., Çetinkaya, Y., Başçeken, S., Akıncıoğlu, A., & Göksu, S. (2024). Synthesis of β-lactams and transformation to β-amino acid ethyl ester derivatives: Theoretical calculations. Tetrahedron, 134247.

Dr. Milind Kulkarni – Chemistry – Excellence in Scientific Innovation Award

Dr. Milind Kulkarni - Chemistry - Excellence in Scientific Innovation Award

C-MET, Pune - India 

Author Profile 

SCOPUS 

🌱 Early academic pursuits

Dr. Milind v. Kulkarni began his academic journey with excellence, earning an m.sc. in polymer chemistry from shivaji university, kolhapur, in 1996, securing the first rank. he went on to complete his ph.d. in 2002 from the university of pune, focusing on “conducting polymer based sensors.” his formative years laid a strong foundation in material chemistry, polymers, and their electronic applications, which later extended to interdisciplinary domains including power electronics and smart materials.

👨‍🔬 Professional endeavors

Dr. Kulkarni started his career as a scientist-b at the centre for materials for electronics technology (c-met), pune, under the ministry of electronics and information technology (meity), govt. of india. currently serving as centre head, he has led several pioneering projects. his role spans advanced materials development, applied research, institutional collaborations, and national-level innovation programs. he also serves in academic bodies such as the board of studies of symbiosis international university, fergusson college, d.y. patil university, and mit-wpu. he has also been appointed as adjunct faculty at coep and expert member at technovuus, arai, advancing r&d integration in power electronics and material sciences.

🧪 Contributions and research focus

Dr. Kulkarni's research focuses on the development of active materials for li-ion and na-ion batteries, solid-state and flexible batteries, and next-gen systems like li-s and li-air batteries targeting hybrid electric vehicles. he has engineered polyaniline-based thin, flexible, and cost-effective batteries and developed e-textiles using polyaniline-cnt nanocomposites. his expertise extends to Chemistry inkjet-printed, flexible electronics, and multifunctional nanomaterials for power electronics and biomedical applications. notably, he successfully demonstrated a lead-free x-ray attenuation apron and fabricated polymer nanocomposites for biosensing, including e-nose and e-tongue devices. the cross-application of his work bridges chemical sensing, energy storage, and next-gen power electronics.

🌍 Impact and influence

Dr. Kulkarni’s innovations, including india’s first indigenous low-cost polymer swab for covid-19 diagnostics, have had a significant societal and industrial impact. his active engagement with the automotive sector through arai and technovuus highlights his contribution to applied research in power electronics and energy storage. he is a member of prestigious organizations such as the Chemistry electrochemical society (usa), electrochemical society of india, materials research society of india, and society for polymer science (india). as a fellow of the royal society of chemistry (frsc, london) and maharashtra academy of sciences, his expertise is globally recognized.

📚 Academic cites

Dr. Kulkarni has published over 115 peer-reviewed research papers in reputed international journals. with a google scholar h-index of 36, more than 4322 citations, and i10-index of 85, his scholarly contributions underscore the relevance and quality of his work. he has also presented 130+ conference papers and delivered over 50 invited lectures, reflecting his status as a Chemistry thought leader in nanotechnology and energy materials. his 25+ patents, including those granted in the us, canada, germany, and a pct filing, highlight his innovative capacity.

🎓 Legacy and future contributions

Dr. Kulkarni has mentored 5 ph.d. scholars, with 5 more currently under guidance, in addition to supervising m.phil., m.tech., b.e., and m.sc. students. his dedication to nurturing young researchers ensures the continuity of research excellence in polymer nanocomposites, smart materials, and power electronics. looking ahead, his work promises breakthroughs in bio-integrated sensors, wearable batteries, and sustainable energy solutions, further driving india’s capabilities in strategic materials and green technologies.

Notable Publications 

  • Title: Distorted 2H/1T MoS₂ nanostructures with improved field emission and sodium-ion battery performance
    Author(s): Ujjwala P. Chothe, Priyanka R. Sumbe, Mahendra A. More, Milind V. Kulkarni, Bharat Bhanudas Kale
    Journal: Nanoscale Advances (2025)

  • Title: Self-Standing vanadium oxide pillared carbon microfiber film as an excellent anode for lithium & sodium ion batteries
    Author(s): Sayali B. Kale, Ujjwala P. Chothe, Kaustav Bhattacharjee, Aakira Fujishima, Suresh W. Gosavi
    Journal: Inorganic Chemistry Communications (2024)

  • Title: Imidazolium Functionalized Copolymer Supported Solvate Ionic Liquid Based Gel Polymer Electrolyte for Lithium Ion Batteries
    Author(s): Sahebrao S. More, Rushikesh B. Kale, Poorva J. Ambekar, Milind V. Kulkarni, Bharat Bhanudas Kale
    Journal: ACS Applied Polymer Materials (2024)

  • Title: Interfacial engineering of ZnO–ZnS/rGO nano heterostructures: An efficient photoanode for dye-sensitized solar cell
    Author(s): Ranjit S. Kate, Ratna Chauhan, Ujjwala P. Chothe, Bharat Bhanudas Kale, Sanjay Krishnaji Apte
    Journal: Materials Chemistry and Physics (2024)

  • Title: Microstructure tuned Na₃V₂(PO₄)₃@C electrodes toward ultra-long-life sodium-ion batteries
    Author(s): Ranjit S. Kate, Kaustav Bhattacharjee, Milind V. Kulkarni, Ramesh J. Deokate, Ramchandra S. Kalubarme
    Journal: RSC Advances (2024)

Assoc. Prof. Dr. Lijing Teng – supramolecular hydrogel – Best Researcher Award 

Assoc. Prof. Dr. Lijing Teng - supramolecular hydrogel - Best Researcher Award 

School of Biology and Engineering (School of Modern Industry for Health and Medicine) - Chile

Author Profile 

ORCID 

🎓 Early academic pursuits

Lijing Teng's journey into the world of biomedical engineering began with a deep curiosity for biomaterials and their applications in medicine. she pursued her ph.d. in biomedical engineering at south china university of technology, where she developed a strong foundation in material science, polymer chemistry, and bioengineering. her doctoral research was centered on designing innovative biomaterials with multifunctional properties, laying the groundwork for her future contributions in the field. her academic excellence and dedication positioned her as a promising scientist in biomedical materials research.

🚀 Professional endeavors

As an associate professor at guizhou medical university, lijing teng has dedicated her career to advancing biomaterial science and its applications in regenerative medicine. her research is at the intersection of materials science and biology, where she focuses on developing cutting-edge solutions for medical challenges. she has been instrumental in designing novel hydrogels, adhesives, and porous scaffolds that enhance tissue regeneration, wound healing, and drug delivery. through her innovative teaching methods and mentorship, she has inspired numerous students to explore the potential of biomaterials in medical science.

🧐 Contributions and research focus

Lijing Teng's research revolves around the development of supramolecular biomaterials, which exhibit advanced properties such as self-healing, bioadhesion, and controlled degradation. her work on hydrogels has led to breakthroughs in designing smart materials that mimic natural extracellular matrices, improving their biocompatibility and functionality in clinical applications. her adhesive biomaterials have been optimized for wound closure and surgical applications, providing alternatives to traditional sutures. her research on porous scaffolds has significantly supramolecular hydrogel contributed to tissue engineering by creating environments that promote cell growth and regeneration. her interdisciplinary approach integrates chemistry, physics, and biology to create biomaterials with unprecedented capabilities.

🏆 Accolades and recognition

Throughout her career, lijing teng has received recognition for her outstanding contributions to biomedical engineering. her research publications in high-impact journals have been widely supramolecular hydrogel cited, reflecting her influence in the field. she has presented her findings at international conferences, earning accolades for her pioneering work in biomaterials. her contributions to the design of multifunctional materials have been acknowledged by peers and industry leaders, positioning her as a key researcher in the advancement of supramolecular biomaterials.

👨‍💻 Impact and influence

Lijing Teng's work has significantly impacted the field of biomaterials, particularly in the development of advanced materials for medical applications. her innovative hydrogels and adhesives have the potential to transform wound care, surgical procedures, and tissue engineering. her research has influenced both academia and industry, leading to collaborations with medical supramolecular hydrogel institutions and material scientists to refine and commercialize biomaterial-based medical solutions. through her mentorship, she has cultivated a new generation of researchers dedicated to pushing the boundaries of biomedical engineering.

🌍 Legacy and future contributions

As a leader in biomaterials research, Lijing Teng continues to push the limits of material innovation. her future work aims to further enhance the properties of supramolecular biomaterials, making them more adaptive and responsive to biological environments. she is committed to bridging the gap between fundamental research and clinical applications, ensuring that her materials contribute to better healthcare solutions. her vision extends to fostering global collaborations and interdisciplinary research, solidifying her legacy as a pioneer in biomaterials science. her contributions will continue to shape the future of regenerative medicine, improving lives through cutting-edge biomedical engineering.

Notable Publications 

  • Title: Shape-Recoverable Macroporous Nanocomposite Hydrogels Created via Ice Templating Polymerization for Noncompressible Wound Hemorrhage
    Author(s): Lijing Teng, Kaide Xia, Tianbao Qian, Zuquan Hu, Liang Hong, Ying Liao, Guorui Peng, Zhongrun Yuan, Yunhua Chen, et al.
    Journal: ACS Biomaterials Science & Engineering

  • Title: Supramolecular and dynamic covalent hydrogel scaffolds: from gelation chemistry to enhanced cell retention and cartilage regeneration
    Author(s): Lijing Teng
    Journal: Journal of Materials Chemistry B

  • Title: Weak Hydrogen Bonds Lead to Self-Healable and Bioadhesive Hybrid Polymeric Hydrogels with Mineralization-Active Functions
    Author(s): Lijing Teng
    Journal: Biomacromolecules

  • Title: Synthesis and characterization of star-shaped poly(l-lactide)s with an erythritol core and evaluation of their rifampicin-loaded microspheres for controlled drug delivery
    Author(s): Lijing Teng
    Journal: Polymer Bulletin

  • Title: Synthesis and characterization of star-shaped PLLA with sorbitol as core and its microspheres application in controlled drug release
    Author(s): Lijing Teng
    Journal: Journal of Applied Polymer Science

Dr. Taha Najm Aalhusaini – organic chemistry – Best Researcher Award

Dr. Taha Najm Aalhusaini - organic chemistry - Best Researcher Award

Al-Mustansiriyah University - Iraq

Author Profile 

GOOGLE SCHOLAR 

Early academic pursuits 🎓

Taha Najm Aalhusaini began his academic journey with a deep passion for chemistry, culminating in a ph.d. from shivaji university, india. specializing in organic chemistry, he focused on developing green methodologies in the realm of cross-coupling reactions. his academic pursuits laid the foundation for his future research, where he combined sustainability with innovative chemical processes, aiming to reduce environmental impact while enhancing chemical efficiency.

Professional endeavors 🧑‍🏫

Currently, taha serves as an assistant lecturer at al-mustansiriyah university, college of science, department of chemistry in baghdad, iraq. here, he shares his expertise and knowledge with the next generation of chemists, fostering a learning environment that emphasizes both theoretical understanding and practical applications. his teaching extends beyond the classroom, inspiring students to explore green chemistry and its role in shaping a sustainable future.

Contributions and research focus 🔍

Taha’s research has primarily focused on green chemistry, specifically the development of eco-friendly n-heterocyclic carbene (nhc) metal complexes. his work has explored the use of merrifield resin, cellulose, graphene oxide, and magnetic nanoparticles as supports for these nhc complexes. notable reactions such as organic chemistry sonogashira, chan-lam, and suzuki have been key areas of application in his research. he is particularly known for his work with environmentally friendly precursors, including a recent study using caffeine as an nhc precursor, published in the journal of organometallic chemistry.

Accolades and recognition 🏅

Taha’s research contributions have not gone unnoticed. his work has been published in three scopus-indexed journals, reflecting the quality and impact of his organic chemistry findings in the field of organic chemistry. his innovative approach to green methodologies and sustainable chemistry has earned him recognition within the scientific community, particularly in the domain of catalysis and cross-coupling reactions.

Impact and influence 🌍

Through his work, taha has made significant strides in promoting green chemistry, demonstrating the potential for environmentally sustainable alternatives in organic chemistry chemical reactions. his research on nhc-metal complexes supported on various substrates is not only scientifically innovative but also essential for reducing organic chemistry the carbon footprint in chemical processes. his findings have influenced the direction of future research in organic synthesis and green methodologies.

Legacy and future contributions 🔮

Taha najm aalhusaini’s legacy lies in his dedication to merging organic chemistry with sustainability. his research on green nhc complexes paves the way for future advancements in eco-friendly chemical processes. as he continues his academic career, taha is expected to make further contributions that will enhance sustainable practices in the field of chemistry, ensuring that the next generation of chemists is equipped to tackle environmental challenges.

Notable Publications 

  • Title: Nano‐magnetic Copper Complexes as Double‐Edged Sword against MCF‐7 Breast Cancer Cells
    Authors: SP Gajare, PA Bansode, PV Patil, TNA Aalhusaini, SS Chavan, DM Pore, ...
    Journal: ChemistrySelect, Volume 7, Issue 3, Article e202103818 (2022)
  • Title: Cellulose-Supported Nhc-Copper Complex Appended with Caffeine for Ullman Cross-Coupling Reaction
    Authors: TN Aalhusaini, P Patil, S Khot, D Pore, G Rashinkar
    Journal: Available at SSRN, Article 4963180