Company Filing History:
Years Active: 2021
Title: Innovations of Parwani Rewatkar in Aerogel Technology
Introduction
Parwani Rewatkar is an innovative inventor based in Rolla, Montana, known for his contributions to the field of aerogel technology. His work focuses on the development of highly porous ceramic and metal aerogels, which have significant applications across various industries. With a single patent to his name, Rewatkar's inventions demonstrate a blend of creativity and scientific rigor.
Latest Patents
Rewatkar holds a patent for "Highly porous ceramic and metal aerogels from xerogel powder precursors, and methods for their production and use." This invention outlines novel methods for producing robust and temperature-resistant aerogel monolithic objects. The process involves preparing nanoparticulate oxides of metals and/or metalloids, creating polymer-modified xerogel powder compositions, and utilizing carbothermal conversion to achieve the final aerogel products. The resulting materials have diverse applications, including use in abrasives, cutting tools, catalyst support materials, and biomedical tissue engineering.
Career Highlights
Throughout his career, Rewatkar has focused on advancing the science of aerogels, contributing to the development of materials that are not only lightweight but also exceptionally strong. His innovative approach has positioned him as a notable figure in materials science, particularly in the production of aerogels that can withstand extreme conditions.
Collaborations
Rewatkar has collaborated with esteemed colleagues such as Nicholas Leventis and Chariklia Sotiriou-Leventis. These partnerships have fostered a collaborative environment that enhances the research and development of advanced materials.
Conclusion
Parwani Rewatkar's work in aerogel technology exemplifies the intersection of innovation and practical application. His patented methods for creating highly porous ceramic and metal aerogels are paving the way for advancements in various fields, showcasing the potential of these materials in real-world applications.