This inventor holds 1 USPTO granted patent. Top assignees: Yeda Research and Development Co. Ltd, Other. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Debkumar Bhowmick: Innovator in Enantio-Specific Crystallization
Introduction
Debkumar Bhowmick is a notable inventor based in Rehovot, Israel. He has made significant contributions to the field of crystallization technology, particularly through his innovative patent that addresses enantio-specific crystallization methods. His work has implications for various applications in chemistry and materials science.
Latest Patents
Bhowmick holds a patent for an "Enantio-specific crystallization system and method thereof." This invention relates to a technique for flow crystallization. The system comprises a container with a bottom surface defining a first plane, which includes at least two planar magnetic surfaces arranged in a spaced-apart manner along the first plane. These surfaces are substantially parallel to a second plane, with each magnetic surface's magnetization vector being perpendicular to the surface. The container is designed so that the first plane is substantially perpendicular to the second plane. A cavity formed between the planar magnetic surfaces accommodates a racemic mixture containing different enantiomers. Each magnetic surface interacts differently with the enantiomers, enabling enantio-selective crystallization. This innovative system is based on the enantio-separation of crystals using magnetic surfaces.
Career Highlights
Throughout his career, Debkumar Bhowmick has worked with Yeda Research and Development Company, where he has contributed to various research projects. His expertise in crystallization techniques has positioned him as a valuable asset in the field of chemical research and development.
Collaborations
Bhowmick has collaborated with notable colleagues, including Ron Naaman and Francesco Tassinari. These collaborations have further enriched his research and innovation efforts.
Conclusion
Debkumar Bhowmick's contributions to enantio-specific crystallization represent a significant advancement in the field. His innovative patent showcases the potential for improved techniques in crystallization, which can have far-reaching applications in various scientific domains.