Dayton, OH, United States of America

Rahul Bhowmik


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:

goldMedal1 out of 832,966 
Other
 patents

Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: **Innovator Spotlight: Rahul Bhowmik**

Introduction

Rahul Bhowmik, based in Dayton, Ohio, is an accomplished inventor known for his significant contributions to the field of materials science, particularly in the development of lithium-ion conductors. His innovation showcases a blend of advanced research and practical application, aiming to enhance the efficiency of lithium-ion technologies.

Latest Patents

Rahul holds a patent for a novel process of synthesizing a solid-state lithium-ion conductor. This innovative method involves mechanically milling at least two precursors to form crystalline LiMgBr, leveraging techniques such as planetary milling. In practical terms, the precursors utilized in this process include lithium bromide (LiBr) and magnesium bromide (MgBr). This patent reflects his dedication to improving energy storage solutions through advanced material synthesis.

Career Highlights

Throughout his career, Rahul has made substantial strides in his field, dedicating his research to optimizing materials for better performance in lithium-ion batteries. His work not only showcases his technical expertise but also emphasizes the critical role of innovation in driving progress in energy solutions.

Collaborations

Rahul collaborates with talented colleagues such as Jitendra Kumar and Yuxing Wang, fostering a productive environment for innovation and exploration. Their combined expertise and teamwork play a pivotal role in advancing research and bringing new ideas to fruition.

Conclusion

In conclusion, Rahul Bhowmik stands out as a notable figure in the realm of material science innovation. His patented process for synthesizing lithium-ion conductors exemplifies the impact that dedicated inventors can have on technology and energy solutions. As he continues to collaborate with fellow researchers, the potential for groundbreaking advancements in this field remains promising.

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