Peck Loo Kiew | Nanotechnology | Research Excellence Award

Dr. Peck Loo Kiew | Nanotechnology | Research Excellence Award 

Dr. Peck Loo Kiew | Nanotechnology | Malaysia-Japan International Institute of Technology at Malaysia

Nanotechnology forms the central scientific foundation of Dr. Peck Loo Kiew’s distinguished and highly productive academic career, aligning perfectly with her expertise in chemical engineering, environmental technology, and innovative bio-based materials. Dr. Peck Loo Kiew is a highly respected academic at the Malaysia-Japan International Institute of Technology, Universiti Teknologi Malaysia, where her contributions integrate Nanotechnology into food science, biopolymers, bioplastics, and chemical and environmental engineering. Her educational foundation reflects strong academic rigor; Dr. Peck Loo Kiew earned her Doctor of Philosophy in Chemical Engineering from Universiti Sains Malaysia, preceded by her Bachelor of Engineering (Honours) in Chemical Engineering from the same university, graduating with First Class distinction, an exceptional CGPA of 3.91, and Dean’s Awards consistently throughout eight semesters, demonstrating academic excellence. She further expanded her pedagogical expertise through a Postgraduate Diploma in Tertiary Teaching from UCSI University, completed with an outstanding CGPA of 3.81, enhancing her instructional proficiency for tertiary academic environments. Professionally, Dr. Peck Loo Kiew has served with dedication in teaching, mentoring postgraduate students, publishing impactful scientific research, and contributing significantly to the advancement of Nanotechnology-aligned innovation. Her extensive conference engagements include participation in national and international scientific platforms, such as ICaTAS, SCE3, MJJIC, ICoST, ICL, ICAME, and other engineering and sustainability-focused conferences, reflecting her active academic networking, knowledge dissemination, and collaboration pursuits. Dr. Peck Loo Kiew’s research interests are diverse yet synergistic, focusing on Nanotechnology applications in food and biomaterials science, nanocrystalline cellulose, bioplastics, bio-based polymers, sustainable materials, waste valorization, environmental remediation, and synergistic multi-objective optimization processes, which serve industrial needs across biotechnology, chemical engineering, and green manufacturing. Her research skills include nanostructure characterization, response surface methodology, biochemical extraction optimization, fatty acid profiling, microstructural analysis, and biodegradability evaluation using advanced instrumental techniques, aligning strongly with Nanotechnology-driven sustainability breakthroughs. Dr. Peck Loo Kiew’s commitment to impactful science is demonstrated through her widely cited research publications, including major works on nanocrystalline cellulose extracted from palm oil biomass, nanotechnology-enabled food science, environmental bio-based polymers, optimization of pectin extraction, and biodegradable polymeric bioplastics, which contribute meaningfully to academic literature and industrial application potential. She has earned recognition through her strong citations, granting her growing influence in the Nanotechnology scientific community. Dr. Peck Loo Kiew exemplifies academic integrity, scientific curiosity, and innovative leadership. Her career reflects excellence in chemical engineering education, high-impact research, active conference participation, strong publication record, and advancement of eco-friendly Nanotechnology solutions. As a scholar committed to environmentally conscious development and advanced materials engineering, Dr. Peck Loo Kiew continues shaping modern research directions while inspiring younger generations of engineers and researchers. Her work in Nanotechnology demonstrates deep intellectual rigor, industrial relevance, and societal value, highlighting Dr. Peck Loo Kiew as an outstanding contributor to engineering science, environmental innovation, and sustainable technological development.

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Featured Publications

Kiew, P. L., & Don, M. M. (2012). Jewel of the seabed: sea cucumbers as nutritional and drug candidates. International Journal of Food Sciences and Nutrition, 63(5), 616–636. Cited by 118.
Shanmugarajah, B., Kiew, P. L., Chew, I. M. L., Choong, T. S. Y., & Tan, K. W. (2015). Isolation of nanocrystalline cellulose (NCC) from palm oil empty fruit bunch (EFB): Preliminary result on FTIR and DLS analysis. Chemical Engineering Transactions, 45, 1705–1710. Cited by 86.
Tan, X. B., Lam, M. K., Uemura, Y., Lim, J. W., Wong, C. Y., Ramli, A., & Kiew, P. L. (2018). Semi-continuous cultivation of Chlorella vulgaris using chicken compost as nutrients source: Growth optimization study and fatty acid composition analysis. Energy Conversion and Management, 164, 363–373. Cited by 85.
Duwee, Y. S., Kiew, P. L., & Yeoh, W. M. (2022). Multi-objective optimization of pectin extraction from orange peel via response surface methodology: Yield and degree of esterification. Journal of Food Measurement and Characterization, 16(2), 1710–1724. Cited by 51.
Ng, J. S., Kiew, P. L., Lam, M. K., Yeoh, W. M., & Ho, M. Y. (2022). Preliminary evaluation of the properties and biodegradability of glycerol-and sorbitol-plasticized potato-based bioplastics. International Journal of Environmental Science and Technology, 19(3), 1545–1554. Cited by 49.
Kiew, P. L., & Don, M. M. (2013). The influence of acetic acid concentration on the extractability of collagen from the skin of hybrid Clarias sp. and its physicochemical properties: A preliminary study. Focus on Modern Food Industry, 2, 123–128. Cited by 42.

 

Sumithra Yasaswini Srinivasan | Nanomaterials | Best Researcher Award

Dr. Sumithra Yasaswini Srinivasan | Nanomaterials | Best Researcher Award 

Dr. Sumithra Yasaswini Srinivasan | Nanomaterials | Researcher at Institute of Materials Science of Barcelona | Spain

Dr. Sumithra Yasaswini Srinivasan is an accomplished material scientist whose career integrates nanomedicine development, biomaterials engineering, genetics, and translational biomedical research, with extensive expertise in nanoparticle synthesis, drug and nucleic acid conjugation, multiscale characterization, and therapeutic evaluations. She completed her Ph.D. in Material Sciences with a specialization in nanomedicine for cardiac therapies at the Autonomous University of Barcelona under a prestigious international fellowship, building on her earlier academic foundation in bioengineering and medical nanotechnology. Professionally, Dr. Sumithra Yasaswini Srinivasan has served as a Doctoral Researcher at an advanced European materials research institute and as a Research Assistant in leading Indian scientific institutions, contributing to high-impact projects spanning cardiac nanotherapies, cancer drug-delivery systems, magneto-conductive nanoparticles, nano-immunosensors, safe-by-design nanomaterial synthesis, and epigenetic and gene-editing studies. Her research interests include polymeric and hybrid nanoparticles, conductive biomaterials for cardiac repair, nanomedicine-based arrhythmia treatment, CRISPR-assisted disease modeling, nano-enabled biosensing, and multifunctional nanocomposites for therapeutic precision. She possesses strong research skills in formulation chemistry, CRISPR-Cas9 gene editing, microscopic and spectroscopic characterization, RNA and DNA technologies, in-vitro cytocompatibility studies, in-vivo evaluations including murine and C. elegans models, and advanced data analysis using scientific computation platforms. Throughout her career, she has received competitive international research funding, contributed to collaborative multinational studies, mentored young researchers, and published influential articles in high-impact journals indexed in Scopus and IEEE. Her honors include a prestigious international fellowship, multiple high-quality peer-reviewed publications, and recognition for developing cutting-edge nanomedicine and biosensing platforms. In conclusion, Dr. Sumithra Yasaswini Srinivasan’s multidisciplinary expertise, innovative scientific contributions, leadership in research project development, and commitment to advancing biomedical nanotechnology position her as a rising global researcher with strong potential to drive future breakthroughs in therapeutic nanomaterials, integrated drug-delivery technologies, and regenerative biomedical engineering.

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Featured Publications

Srinivasan, S. Y., Paknikar, K. M., Bodas, D., & Gajbhiye, V. (2018). Applications of cobalt ferrite nanoparticles in biomedical nanotechnology. Nanomedicine. Citations: 331.

Kashyap, A., Jiménez-Jiménez, Á. L., Zhang, W., Capellades, M., Srinivasan, S., et al. (2022). Induced ligno-suberin vascular coating and tyramine-derived hydroxycinnamic acid amides restrict Ralstonia solanacearum colonization in resistant tomato. New Phytologist. Citations: 58.

Srinivasan, S. Y., Paknikar, K. M., Gajbhiye, V., & Bodas, D. (2018). Magneto-conducting core/shell nanoparticles for biomedical applications. ChemNanoMat. Citations: 32.

Srinivasan, S. Y., Cler, M., Zapata-Arteaga, O., Dörling, B., Campoy-Quiles, M., et al. (2023). Conductive bacterial nanocellulose–polypyrrole patches promote cardiomyocyte differentiation. ACS Applied Bio Materials. Citations: 23.

Blasi, D., González-Pato, N., Rodriguez Rodriguez, X., Diez-Zabala, I., Srinivasan, S. Y., et al. (2023). Ratiometric nanothermometer based on a radical excimer for in vivo sensing. Small. Citations: 20.

Srinivasan, S. Y., Gajbhiye, V., & Bodas, D. (2020). Development of nano-immunosensor with magnetic separation and electrical detection of Escherichia coli using antibody-conjugated Fe3O4@Ppy. Nanotechnology. Citations: 16.

Srinivasan, S. Y., Illera, P. A., Kukhtar, D., Benseny-Cases, N., Cerón, J., et al. (2023). Arrhythmic effects evaluated on Caenorhabditis elegans: The case of polypyrrole nanoparticles. ACS Nano. Citations: 8.

 

Yun Ming Wang | Micro & Nano Manufacturing Technology | Best Researcher Award

Prof. Dr. Yun Ming Wang | Micro Nano Manufacturing Technology | Best Researcher Award 

Professor at Huazhong University of Science and Technology, China

Prof. Dr. Yun Ming Wang is an accomplished researcher in micro and nano manufacturing technology, currently serving as an Associate Professor at Huazhong University of Science and Technology, China. With a focus on multifunctional nanocomposites, triboelectric and piezoelectric nanogenerators, 3D printing, and electronic skin, he has made significant contributions to advancing the field. His work addresses key technological challenges in polymer micro-nano structure forming, with a strong emphasis on practical applications and innovations. Over the years, he has built a reputation as a leading expert through high-impact research publications and numerous patents, establishing himself as a key figure in the scientific community.

Profile

ORCID

Education

Prof. Wang’s academic journey began with a Bachelor of Science in Applied Chemistry from Anhui University of Technology, China, in 2007. He pursued his doctoral studies at the Department of Applied Chemistry, Dalian University of Technology, under the guidance of Prof. Shufen Zhang and Assoc. Prof. Bingtao Tang. During his Ph.D. from 2007 to 2013, he developed expertise in polymer device micro-nano structure forming technology and proposed novel methods for multi-scale ordered micro-nano structure forming. His education laid a solid foundation for his future research endeavors, equipping him with the skills to tackle the challenges in micro and nano manufacturing technology.

Experience

Prof. Wang’s professional career has been marked by notable positions that have allowed him to expand his research impact. After completing his Ph.D. in 2013, he undertook a postdoctoral position at the College of Engineering, University of Wisconsin-Madison, USA, where he worked in the Department of Biomedical Engineering. There, he focused on advanced research in nanogenerators and 3D printing technologies. Since 2016, he has been an Associate Professor at the State Key Laboratory of Mold & Die Technology, Huazhong University of Science and Technology. His role involves leading research projects, supervising graduate students, and engaging in industry collaborations to translate cutting-edge research into practical applications.

Research Interest

Prof. Wang’s research interests lie at the intersection of polymer science, nanotechnology, and engineering. He focuses on multifunctional nanocomposites, triboelectric and piezoelectric nanogenerators, and micro-nano structure forming technologies. His work aims to address the technical bottlenecks associated with polymer chain orientation, crystal structure regulation, and the precise formation of micro-nano structures. He has proposed innovative approaches, such as the high-elastic forming process for polymer nanospheres, which enables the precise adjustment of polymer structures. Additionally, his research on triboelectric and piezoelectric nanogenerators has potential applications in energy harvesting, wearable electronics, and artificial skin technologies, making significant contributions to sustainable and advanced material solutions.

Awards

Prof. Wang has been recognized for his outstanding research contributions through various awards and honors. His innovations have earned him accolades in the scientific community, and he has received recognition for his high-impact publications. Although his awards list includes a few formal recognitions, his achievements are evident in the broader impact of his work, which has led to collaborations with industry and academic institutions. His patents and highly cited publications further testify to the influence and importance of his research.

Publications

Prof. Wang has published extensively in high-impact journals, with his work significantly advancing the fields of polymer processing and nanotechnology. Below are six representative publications that highlight his research:

Dan Chen, Yunming Wang, et al., “Current and Future Trends for Polymer Micro/nano Processing in Industrial Applications,” Advanced Materials, 2022, link. Cited by 32 articles.

Jiaqi Zheng, Zhaohan Yu, Yunming Wang*, et al., “Acoustic Core−Shell Resonance Harvester for Application of Artificial Cochlea Based on the Piezo-Triboelectric Effect,” ACS Nano, 2021, link. Cited by 18 articles.

Haiyu Qiao, Yun Zhang, Yunming Wang*, et al., “3D Printing Individualized Triboelectric Nanogenerator with Macro-Pattern,” Nano Energy, 2018, link. Cited by 19 articles.

Mei Li, Yunming Wang*, et al., “Self-Powered Infrared-Responsive Electronic Skin Employing Piezoelectric Nanofiber Nanocomposites,” ACS Applied Materials & Interfaces, 2020, link. Cited by 10 articles.

Yunming Wang, Bingtao Tang, et al., “Single-Walled Carbon Nanotube/Phase Change Material Composites for Solar Thermal Energy Storage,” Advanced Functional Materials, 2013, link. Cited by 25 articles.

Shihua He, Zhaohan Yu, Yunming Wang*, et al., “Polymer Tubes as Carrier Boats of Thermosetting and Powder Materials Based on 3D Printing,” Nano Energy, 2018, link. Cited by 17 articles.

Conclusion

Prof. Dr. Yun Ming Wang’s career demonstrates his dedication to pushing the boundaries of micro and nano manufacturing technology. His innovative research has addressed critical challenges in polymer processing and nanotechnology, with potential applications that extend to sustainable energy and biomedical fields. His impressive publication record, patents, and collaboration with international institutions affirm his status as a leading researcher. Prof. Wang’s profile aligns well with the criteria for the Best Researcher Award, and his contributions have positioned him as a key figure driving advancements in material science and engineering. With a continued focus on innovation and collaborative research, he is well on his way to further elevating his academic and professional standing.