Parveen Saini | Materials Science | Best Researcher Award

Dr. Parveen Saini | Materials Science | Best Researcher Award 

Sr. Principal Scientist and Professor AcSIR, at CSIR National Physical Laboratory New Delhi, India.

Dr. Parveen Saini is a Sr. Principal Scientist at the CSIR-National Physical Laboratory in New Delhi, India. He leads the Conjugated Polymers, Graphene Technology, and Waste Management Lab within the Photovoltaic Metrology Section, Advanced Materials and Devices Metrology Division. With a strong academic background in polymer science and material science, Dr. Saini has developed innovative research in areas including conductive polymers, graphene technology, and sustainable waste management solutions ♻️. His contributions have earned him recognition in engineering sciences, particularly for developing advanced materials with applications in EMI shielding, sustainable coatings, and nanotechnology. His work reflects a commitment to both industrial innovation and environmental sustainability 🌍, and he continues to guide research at CSIR-NPL, with his findings being highly influential in both scientific and industrial domains.

Profile

Education 🎓

Dr. Saini began his academic journey at Delhi College of Engineering, University of Delhi, where he earned his B.Tech. in Polymer Science and Chemical Technology in 2002. Driven by his interest in materials science, he went on to complete his Ph.D. at the Indian Institute of Technology (IIT), Delhi, in 2012, specializing in conducting polymers. His Ph.D. research provided critical insights into material properties that have since informed his subsequent work in advanced polymeric and graphene-based technologies. This robust educational foundation equipped Dr. Saini with the knowledge and skills to lead cutting-edge research in material science, establishing him as a prominent figure in both the academic and industrial fields of polymer and nanotechnology.

Experience 💼

Dr. Saini’s professional journey began as a Graduate Engineer Trainee at Shriram Institute for Industrial Research, where he worked in the Rubber, Plastics, and Textile Lab. In 2004, he joined the CSIR-National Physical Laboratory, where he quickly advanced through various roles, starting as a Junior Scientist in the Polymeric & Soft Materials Section, then progressing to Scientist and Senior Scientist in the Materials Physics and Engineering Division. Since 2021, he has served as Sr. Principal Scientist, overseeing the Advanced Materials and Devices Metrology Division. Over his extensive career, Dr. Saini has been at the forefront of research in materials science, pioneering techniques in polymer development, waste management, and graphene technology for enhanced industrial applications.

Research Interests 🔍

Dr. Saini’s research is centered on the development of advanced materials, particularly in the realms of conjugated polymers, graphene technology, and waste management. His interests span the synthesis and application of conductive polymers for electromagnetic interference (EMI) shielding, sustainable coatings for corrosion resistance, and recycling methods for waste solar modules. Dr. Saini also explores innovative uses of graphene for energy storage and environmental sustainability, aiming to create materials that address industrial needs while promoting eco-friendly practices. His work on nanocomposites and sustainable materials highlights a commitment to improving material resilience and reducing environmental impact, making significant contributions to both industrial technology and green innovation 🌱.

Awards 🏆

In 2013, Dr. Parveen Saini received the prestigious CSIR Young Scientist Award in the area of Engineering Sciences, recognizing his pioneering contributions to material sciences. This honor reflects his influential work in developing novel conductive polymers and graphene-based materials with applications in EMI shielding and sustainable coatings. Dr. Saini’s award-winning research is known for its practical industrial applications, particularly in enhancing material durability and eco-friendliness. His accomplishments in the field have positioned him as a leading figure in advanced materials science, with his innovative approaches influencing the direction of polymer research and development in India and globally.

Publications 📚

Dr. Saini has authored numerous influential papers in high-impact scientific journals. Here are some of his notable publications:

    • Enhanced Anticorrosive Behavior of Waste Tea Bags Derived Nanocrystalline Cellulose Incorporated Polyaniline for Protection of Mild Steel Under Aggressive Saline Environment
      • Journal: Transactions of the Indian Institute of Metals
      • Year: 2024
      • Citations: 0
      • Summary: This study investigates the anticorrosive properties of polyaniline (PANI) composites incorporating nanocrystalline cellulose (NCC) derived from waste tea bags. The material demonstrates significant potential for protecting mild steel in saline conditions.
    • Extraction and Analysis of Back-Sheet Layer from Waste Silicon Solar Modules
      • Journal: Chemical Reports
      • Year: 2022
      • Citations: 1
      • Summary: This paper focuses on the extraction and analysis of back-sheet layers from waste silicon solar modules, addressing waste management and material recovery in photovoltaic industries.
    • Fe3O4/Graphene-Oxide/Chitosan Hybrid Aerogel Based High-Performance Supercapacitor: Effect of Aqueous Electrolytes on Storage Capacity & Cell Stability
      • Journal: Journal of Energy Storage
      • Year: 2022
      • Citations: 28
      • Summary: This research explores a Fe3O4/graphene oxide/chitosan hybrid aerogel for use in supercapacitors, emphasizing how aqueous electrolytes impact storage capacity and cell stability.
    • Historical Review of Advanced Materials for Electromagnetic Interference (EMI) Shielding: Conjugated Polymers, Carbon Nanotubes, Graphene-Based Composites
      • Journal: Indian Journal of Pure and Applied Physics
      • Year: 2019
      • Citations: 19
      • Summary: A comprehensive review of materials used in electromagnetic interference (EMI) shielding, particularly focusing on conjugated polymers, carbon nanotubes, and graphene composites.
    • Excellent Electromagnetic Interference Shielding and Mechanical Properties of High-Loading Carbon-Nanotubes/Polymer Composites Designed Using Melt Recirculation Equipped Twin-Screw Extruder
      • Journal: Carbon
      • Year: 2015
      • Citations: 192
      • Summary: This study presents a high-performance EMI shielding material developed using carbon nanotube/polymer composites. The twin-screw extruder technique enhances both mechanical properties and shielding effectiveness.

Conclusion

Dr. Parveen Saini is a highly accomplished scientist with substantial contributions in materials science and engineering, particularly in the fields of conjugated polymers, graphene, and waste management technologies. His portfolio of publications, patents, and professional achievements makes him an excellent candidate for the Best Researcher Award. His innovative work and societal impact through SSR initiatives reflect his commitment not only to scientific excellence but also to addressing critical societal needs. Expanding international collaborations and exploring further sustainable materials applications could enhance his already impressive career trajectory.

 

Nesrine Guesmi | Biomaterials | Best Scholar Award

Mrs. Nesrine Guesmi | Biomaterials | Best Scholar Award

Sfax, Tunis at Faculty of Science of Sfax, Tunisia

Nesrine Guesmi is a dedicated and highly motivated doctoral candidate specializing in physics, currently pursuing her Ph.D. with the Stepstone team in Chemnitz. Born on June 26, 1994, in Sfax, Tunisia, Nesrine has consistently demonstrated a strong commitment to academic excellence and research innovation. With a solid foundation in fundamental and applied physics, she has developed a keen interest in sustainable materials and advanced spectroscopic techniques. Nesrine’s proactive approach is evident through her active participation in international conferences and workshops, where she has presented her research findings on topics such as the microstructural influences on ultrasonic parameters and the electrical and mechanical properties of hydroxyapatite/polymer composites. Her multilingual abilities in Arabic, French, and English, combined with her technical proficiency in MATLAB and OriginPro, enable her to collaborate effectively in diverse and interdisciplinary research environments. Beyond her academic pursuits, Nesrine is passionate about sports, music, and camping, which contribute to her well-rounded personality and resilience. Her dedication to continuous learning and professional development, coupled with her achievements and recognitions, position her as a promising researcher poised to make significant contributions to the field of physics and sustainable materials science.

Professional Profile

Education

Nesrine Guesmi has built a robust academic foundation through her progressive studies in physics at the Faculty of Science of Sfax, Tunisia. She began her higher education journey by obtaining a Baccalaureate in Mathematics from the Technical School 9 April 1938 in Sfax in 2013, which provided her with a strong analytical and quantitative background essential for her future studies in physics. She continued her education by earning a Fundamental Physics Degree from the same institution in 2016, where she delved into core physical principles and methodologies, laying the groundwork for her specialized research interests. Demonstrating her commitment to academic excellence, Nesrine pursued a Master’s Degree in Physics from 2016 to 2019 at the Faculty of Science of Sfax. During her master’s program, she engaged in advanced coursework and research projects that honed her expertise in various areas of physics, including material science and spectroscopy. Currently, Nesrine is advancing her academic career as a Ph.D. student with the Stepstone team in Chemnitz, a position she began in October 2024. Her doctoral studies focus on innovative research in sustainable biomaterials and impedance spectroscopy, reflecting her dedication to addressing contemporary scientific challenges and contributing to the advancement of her field.

Professional Experience

Nesrine Guesmi’s professional experience, though currently concentrated on her doctoral studies, reflects a focused and strategic approach to her career in research. In October 2024, she embarked on her Ph.D. journey with the Stepstone team in Chemnitz, where she engages in cutting-edge research in sustainable biomaterials and impedance spectroscopy. This role involves conducting experimental studies, analyzing complex data sets, and collaborating with a multidisciplinary team of scientists and engineers. Her responsibilities include designing and executing experiments, presenting findings at international conferences, and contributing to scholarly publications. Prior to her doctoral studies, Nesrine completed her Master’s and Fundamental Physics degrees at the Faculty of Science of Sfax, where she gained valuable hands-on experience in laboratory settings, project management, and scientific communication. She actively participated in organizing the International School on Smart Biomaterials for a Green and Sustainable Environment (BioMAT 2023), earning certificates of appreciation for her outstanding support. Additionally, her involvement in various training programs, such as X-ray diffraction and impedance spectroscopy, has equipped her with specialized skills that enhance her research capabilities. Nesrine’s professional journey is marked by a continuous pursuit of knowledge, practical application of her skills, and a commitment to contributing meaningfully to the scientific community.

Research Interests

Nesrine Guesmi’s research interests lie at the intersection of material science and advanced spectroscopic techniques, with a particular focus on sustainable biomaterials and their applications. She is deeply engaged in exploring the microstructural properties of polycrystalline materials and their influence on ultrasonic parameters, aiming to develop materials with enhanced mechanical and electrical characteristics. Her doctoral research involves the study of hydroxyapatite/polymer composites, where she investigates the electrical and mechanical properties of these materials to advance their use in sustainable energy solutions, such as nanoflexible polymer composite canogenerators. Nesrine is also interested in impedance spectroscopy, a technique she utilizes to analyze the electrical properties of materials, providing insights into their behavior under various conditions. Her participation in international workshops and training programs, including the International Workshop on Impedance Spectroscopy and Advanced School on Impedance Spectroscopy, underscores her commitment to mastering sophisticated analytical methods. Additionally, Nesrine is passionate about the development of smart biomaterials that contribute to green and sustainable environments, reflecting her dedication to addressing global challenges through innovative research. Her multifaceted research interests not only contribute to scientific advancements but also align with the growing emphasis on sustainability and environmental responsibility in modern research.

Research Skills

Nesrine Guesmi possesses a comprehensive set of research skills that enable her to excel in her field of physics and material science. She is proficient in using MATLAB and OriginPro, essential tools for data analysis, simulation, and visualization, which she employs to interpret complex experimental results and model physical phenomena. Her technical expertise extends to specialized techniques such as X-ray diffraction and impedance spectroscopy, acquired through dedicated training programs and hands-on research projects. These skills allow her to investigate the structural and electrical properties of materials with precision and accuracy. Nesrine is also adept at conducting oral presentations, having effectively communicated her research on the influence of microstructures on ultrasonic parameters and the electrical and mechanical study of hydroxyapatite/polymer composites at international conferences. Her ability to organize and support academic events, as demonstrated by her role in the International School on Smart Biomaterials for Green and Sustainable Environment (BioMAT 2023), highlights her project management and teamwork capabilities. Additionally, Nesrine’s multilingual proficiency in Arabic, French, and English facilitates her collaboration with diverse research teams and access to a broader range of scientific literature. Her strong foundation in fundamental and applied physics, combined with her analytical mindset and problem-solving abilities, make her a valuable asset in any research setting.

Awards and Honors

Nesrine Guesmi has been recognized for her contributions and dedication to the scientific community through various awards and honors. Notably, she received certificates of appreciation for her outstanding support in organizing the International School on Smart Biomaterials for a Green and Sustainable Environment (BioMAT 2023), highlighting her commitment to fostering collaborative and educational initiatives within her field. Additionally, Nesrine has been acknowledged for her active participation in prestigious events such as the 16th International Workshop on Impedance Spectroscopy and the Advanced School on Impedance Spectroscopy, where she earned certificates of participation, reflecting her dedication to continuous learning and professional development. Her ability to present original research findings through oral presentations at international conferences demonstrates her recognition as a capable and emerging researcher. These honors not only validate her hard work and contributions but also enhance her professional reputation, positioning her as a promising candidate for future awards and recognitions. Nesrine’s accolades underscore her proactive engagement in the scientific community, her leadership in organizing significant research events, and her excellence in presenting and disseminating research knowledge. As she continues to advance in her academic and research career, these honors serve as a testament to her potential and achievements in the field of physics and sustainable materials science.

Conclusion

Nesrine Guesmi demonstrates potential through her academic background, technical skills, and early research experiences. While her research output is still developing, her involvement in sustainable research initiatives and commitment to continuous learning are valuable attributes for a Best Researcher Award. If she continues to build her profile through publications and broadens her research experience, she could make a strong candidate for future awards.

Publications Top Note

A Comprehensive Review of Strategies toward Efficient Flexible Piezoelectric Polymer Composites Based on BaTiO₃ for Next-Generation Energy Harvesting

  • Journal: Energies
  • Year: 2024 (August)
  • Publication Type: Journal Article
  • DOI: 10.3390/en17164066
  • Contributors: Ayda Bouhamed, Sarra Missaoui, Amina Ben Ayed, Ahmed Attaoui, Dalel Missaoui, Khawla Jeder, Nesrine Guesmi, Anouar Njeh, Hamadi Khemakhem, Olfa Kanoun