Adil Majeed Rather - Surface Science - Young Scientist Award
North Carolina state University - United States
AUTHOR PROFILE
SCOPUS
ADIL MAJEED RATHER ๐งช
Adil Majeed Rather is a distinguished materials scientist with over eight years of experience across various universities and institutes. Currently, he serves as a Postdoctoral Research Fellow at North Carolina State University, USA, focusing on the development of multi-functional superomniphobic surfaces. His passion for material science has led to numerous breakthroughs in advanced surface technologies and stimuli-responsive materials, contributing significantly to the field.
RESEARCH IN MATERIAL SCIENCE ๐
Adil's research focuses on innovative surface engineering, where he works on creating superomniphobic surfaces that repel both water and oil. This research holds significant potential in industries requiring self-cleaning materials and protective coatings. His earlier work at The Ohio State University on stimuli-responsive liquid crystal coatings for droplet manipulation further showcases his versatile approach to solving complex problems in materials science.
EXPERT IN ANALYTICAL TECHNIQUES ๐ฌ
Throughout his career, Adil has gained hands-on experience with a wide range of analytical techniques. From SEM, FTIR, and UV/Visible to mechanical testing and microscopy, his expertise covers all essential aspects of modern materials research. He is particularly skilled in thin film fabrication, spray coating, and contact angle goniometry, making him a leader in surface characterization and testing.
RESEARCH PUBLICATIONS AND IMPACT ๐
With over 25 research publications and 3 book chapters, Adil has established himself as a prolific contributor to scientific literature. His work spans a variety of prestigious journals, including Nature Communications, ACS Sustainable Chemistry & Engineering, and Advanced Materials. His research on color morphing surfaces and sustainable slippery surfaces has garnered international attention, highlighting his impact on sustainable materials and surface technologies.
PATENTS AND INNOVATIONS ๐ ๏ธ
Adil's innovative mindset is reflected in the 4 patents he holds, all related to materials science. His patents focus on developing functional materials with unique properties, such as superomniphobic surfaces and liquid crystal-based technologies. These inventions not only contribute to academic research but also have practical applications in industries ranging from healthcare to manufacturing.
MENTORING AND TEACHING EXCELLENCE ๐
Adil has a strong background in mentoring and teaching, having served as a Teaching Assistant during his PhD. He has also mentored undergraduate and graduate students throughout his postdoctoral research. His ability to effectively guide students and researchers has earned him a reputation as a dedicated mentor, fostering the next generation of scientists.
HONORS AND AWARDS ๐
Adil's research excellence has been recognized with numerous national and international awards. He received the prestigious Best Thesis Award in 2020 from IIT Guwahati, along with multiple awards for best oral and poster presentations in conferences. These accolades underscore his contributions to advancing materials science and his commitment to innovative research.
NOTABLE PUBLICATION
Title: Hemp-Based Sustainable Slippery Surfaces: Icephobic and Antithrombotic Properties
Authors: Sutherland, D.J., Rather, A.M., Sabino, R.M., Popat, K.C., Kota, A.K.
Year: 2023
Journal: ACS Sustainable Chemistry and Engineering
Title: Wettability-based ultrasensitive detection of amphiphiles through directed concentration at disordered regions in self-assembled monolayers
Authors: Yao, Y., Bennett, R.K.A., Xu, Y., Aizenberg, J., Wang, X.
Year: 2022
Journal: Proceedings of the National Academy of Sciences of the United States of America
Title: Modularizable Liquid-Crystal-Based Open Surfaces Enable Programmable Chemical Transport and Feeding using Liquid Droplets
Authors: Xu, Y., Chang, Y., Yao, Y., Bao, X., Wang, X.
Year: 2022
Journal: Advanced Materials
Title: Stimuli-Responsive Liquid-Crystal-Infused Porous Surfaces for Manipulation of Underwater Gas Bubble Transport and Adhesion
Authors: Rather, A.M., Xu, Y., Chang, Y., Manna, U., Wang, X.
Year: 2022
Journal: Advanced Materials
Title: Polymeric Membranes in Wastewater Treatment
Authors: Rather, A.M., Xu, Y., Dupont, R.L., Wang, X.
Year: 2022