Sabu Thomas | Materials Science | Best Researcher Award

Prof. Sabu Thomas | Materials Science | Best Researcher Award

School of Nanoscience and Nanotechnology- India

Author Profile

Early Academic Pursuits 🌱📘

Professor Dr. Sabu Thomas’s illustrious journey in science and research began with an unwavering passion for polymer science and materials engineering. His academic foundation is marked by exceptional achievements, earning him degrees and honors that set the stage for his groundbreaking contributions. He holds prestigious titles such as PhD, FRSC (Fellow of the Royal Society of Chemistry), and multiple DSc degrees from institutions in France and Russia. These accolades underline his dedication to academic excellence and his capacity to navigate complex interdisciplinary domains.

Professional Endeavors and Leadership 🏫🔬

Dr. Sabu Thomas is a full professor of Polymer Science and Engineering at the School of Chemical Sciences, Mahatma Gandhi University, Kottayam, Kerala, India. Beyond his professorial role, he serves as the Director of the International and Interuniversity Centre for Nanoscience and Nanotechnology, where he fosters collaboration and innovation. His work bridges academia and industry, epitomized by his partnership with Apollo Tyres to develop high-performance rubber nanocomposite membranes for automotive applications. This collaboration exemplifies how academia can directly impact industrial advancements.

His research laboratory is a hub of innovation, focusing on state-of-the-art developments in polymer nanocomposites, elastomers, polymer membranes, and green nanotechnology. His initiatives have transformed Mahatma Gandhi University into a global leader in nanoscience and nanotechnology, setting benchmarks for excellence.

Contributions and Research Focus 🌐🧪

Professor Thomas’s research covers a broad spectrum of fields, including polymer nanocomposites, interpenetrating polymer networks, green composites, and nano-biomedical sciences. His innovative work in nanomedicine and green bionanotechnology has led to the creation of new materials with applications ranging from automotive and space exploration to housing and healthcare.

Some of his notable contributions include:

  • Developing barrier rubber nanocomposite membranes for inner tubes and liners in tyres, in collaboration with Apollo Tyres. 🚗
  • Pioneering advances in biomedical applications through nano-biomedical sciences. 🩺🔬
  • Promoting sustainable solutions through green nanotechnology and biodegradable composites. 🌿🌍

His scientific endeavors have had a transformative effect on industries, addressing global challenges with innovative solutions.

Accolades and Recognition 🏆🎓

Dr. Thomas’s extraordinary achievements have garnered him numerous prestigious awards and honors. These include:

  • Fellowship of the Royal Society of Chemistry, London (FRSC). 🏅
  • Nano Tech Medal and the MRSI Medal, recognizing his contributions to nanotechnology and materials research. 🧠✨
  • The Sukumar Maithy Award, celebrating him as the best polymer researcher in India. 🇮🇳
  • Honoris Causa (DSc) from the University of South Brittany, Lorient, France, a testament to his global influence. 🌍📜

His position among the top five most productive researchers in India highlights his unmatched commitment to scientific excellence. His prolific output includes over 700 peer-reviewed publications, 50 co-edited books, and 5 patents, coupled with a remarkable H-index of 75 and nearly 24,107 citations. 📚📈

Impact and Influence 🌟🌏

Professor Thomas’s influence extends far beyond academia. His 73 Ph.D. supervisees have gone on to contribute significantly to science and technology, cementing his legacy as a mentor par excellence. His research has reshaped global perspectives on polymer and nanoscience, introducing solutions that merge sustainability with high performance.

His contributions have not only advanced the scientific community but have also inspired countless young scientists to pursue innovative research. Through 300+ invited and plenary talks in over 30 countries, he continues to share his insights, inspiring collaboration and discovery on a global scale.

Legacy and Future Contributions ✨🚀

Dr. Sabu Thomas’s legacy is characterized by his ability to harmonize academic brilliance with practical applications. His work in polymer science and nanotechnology continues to pave the way for sustainable and cutting-edge advancements. Looking ahead, his focus on green nanotechnology and biomedical innovations promises a future of materials that are not only efficient but also environmentally responsible.

As a visionary leader, he remains committed to fostering a new generation of scientists equipped to address pressing global challenges. His establishment of a world-class research lab at Mahatma Gandhi University ensures that his legacy will endure, driving innovation for decades to come. 🌈🔬

Citations

A total of 74,923 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations        74,923
  • h-index          1,878
  • i10-index       121

Notable Publications 

  • Title: Aggregation Induced Emission “Turn on” Ultra-Low Detection of Anti-Inflammatory Drug Flufenamic Acid in Human Urine Samples by Carbon Dots Derived from Bamboo Stem Waste
    Authors: Adaikalapandi, S., Thangadurai, T.D., Sivakumar, S., Kalarikkal, N., Thomas, S.
    Journal: Spectrochimica Acta – Part A: Molecular and Biomolecular Spectroscopy
    Year: 2025.
  • Title: Preparation and Characterization of Coarse Wool Reinforced Natural Rubber Green Composite
    Authors: Jose, S., Shanumon, P.S., Adithyan, S., Bera, S., Francis, N.
    Journal: Industrial Crops and Products
    Year: 2024.
  • Title: Nano Biosensors: Classification, Electrochemistry, Nanostructures, and Optical Properties
    Authors: Rheima, A.M., Al-Sharify, Z.T., Mohaimeed, A.A., Thomas, S., Kianfar, E.
    Journal: Results in Engineering
    Year: 2024.
  • Title: A Review on Green Materials: Exploring the Potential of Poly(Vinyl Alcohol) (PVA) and Nanocellulose Composites
    Authors: Sobhiga, G., Maria, H.J., Mozetič, M., Thomas, S.
    Journal: International Journal of Biological Macromolecules
    Year: 2024.
  • Title: Ultrasound-Alkali-Assisted Isolation of Cellulose from Coconut Shells
    Authors: Mohan, P., Yusof, N.S.M., Thomas, S., Rahman, N.M.M.A.
    Journal: BioResources
    Year: 2024.

Shalini Sharma | Wastewater treatment | Best Researcher Award

Ms. Shalini Sharma - Queueing modelling - Best Researcher Award 🏆 

Central University of Jammu - India

Professional Profiles

Early Academic Pursuits

She embarked on her academic journey with a strong foundation laid during her schooling years. Completing her Class 10th and 12th from CBSE, she exhibited a keen interest in mathematics and its applications. This interest led her to pursue her undergraduate studies at DAV (PG) College, where she obtained her Bachelor's degree in 2012. Building upon this, she furthered her academic pursuits and earned her Master's degree from the same institution in 2014.

Professional Endeavors

Her academic prowess and dedication led her to qualify for the prestigious National Eligibility Test (NET). Her exceptional performance also earned her the Junior Research Fellowship (JRF) and subsequently the Senior Research Fellowship (SRF) under the CSIR-UGC joint venture program. These accomplishments underscore her commitment to academic excellence and research endeavors. Queueing modeling finds applications in a wide range of fields, including telecommunications, healthcare, transportation, and manufacturing.

Contributions and Research Focus in Wastewater treatment

Currently enrolled in a Ph.D. program at the Central University of Jammu since 2019, Her research is centered on queueing modeling of machine repair problems. Her work delves into maintenance scheduling and service systems, addressing critical challenges in optimizing machine repair processes. By employing queueing models, she seeks to enhance the efficiency and effectiveness of maintenance operations, contributing significantly to the field of operations research and industrial engineering.

Queueing modelling of machine repair problems involves the application of mathematical and computational techniques to analyze and optimize the repair processes of industrial machinery. This interdisciplinary field combines concepts from operations research, industrial engineering, and stochastic processes to improve maintenance scheduling and service efficiency. In queueing modeling, systems are represented using mathematical models that capture the behavior of entities as they move through the system. These models typically include parameters such as arrival rates, service rates, and the number of servers or resources available. By manipulating these parameters and applying various analytical techniques, researchers can gain insights into the behavior of the system and identify opportunities for improvement.

Accolades and Recognition

Her contributions to the field have not gone unnoticed. Her exceptional research work has garnered acclaim, evident from her selection for the Best Researcher Award in Queueing Modeling. This recognition underscores her proficiency and expertise in tackling complex problems related to machine repair and maintenance scheduling.

Queueing theory serves as a fundamental framework for understanding the flow of tasks and resources within repair systems, enabling the identification of bottlenecks and the design of effective maintenance strategies. Through simulation modeling and performance evaluation, queueing models help organizations streamline their repair operations, reduce costs, and enhance overall equipment reliability.

Impact and Influence

Through her research endeavors, She aims to make a meaningful impact on real-world applications, particularly in the realm of industrial operations and service systems. By developing robust queueing models, she envisions optimizing maintenance processes, reducing downtime, and enhancing overall productivity in various industrial settings. Her work has the potential to revolutionize maintenance practices, leading to cost savings and improved operational efficiency.

Legacy and Future Contributions

Her dedication to advancing the field of queueing modeling sets a precedent for future researchers. Her innovative approach and commitment to excellence serve as inspiration for aspiring scholars in the field of operations research and industrial engineering. As she continues her academic journey, She endeavors to push the boundaries of knowledge in queueing modeling and machine repair optimization, leaving a lasting legacy in the realm of service systems and maintenance scheduling.

Notable Publications