Bengaluru, India

Prashant Shinge


Average Co-Inventor Count = 7.6

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2017-2019

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3 patents (USPTO):Explore Patents

Title: **Inventor Prashant Shinge: Innovating in Olefin Polymerization**

Introduction

Prashant Shinge is a prominent inventor based in Bengaluru, India, known for his remarkable contributions to the field of polymer science. With a total of three patents to his name, he has made significant strides in developing metallocene complexes aimed at enhancing olefin polymerization processes.

Latest Patents

Among his latest inventions is a breakthrough titled "Bridged Metallocene Complex for Olefin Polymerization." This invention features a metallocene complex represented by a specific formula wherein M is chosen from lanthanides or transition metals in groups 3, 4, 5, or 6 of the Periodic Table. The innovation emphasizes anionic ligands associated with M and the unique structure of hydrogen or hydrocarbon radicals, which can significantly optimize polymerization methods.

Career Highlights

Prashant Shinge has worked with leading organizations such as Saudi Basic Industries Corporation and Sabic Global Technologies B.V. These experiences have bolstered his expertise in chemical and materials engineering, enabling him to push the boundaries of polymer research and development.

Collaborations

Throughout his career, Prashant has collaborated with notable professionals, including Nedumbamana Sankaran and Sharankumar G. Shetty. These partnerships have not only facilitated the sharing of innovative ideas but have also led to the successful development of impactful patents in the realm of olefin polymerization.

Conclusion

Prashant Shinge continues to make a name for himself as a leading inventor in the polymer industry. His innovative metallocene complexes pave the way for enhanced efficiency in olefin polymerization, showcasing the importance of creativity and collaboration in science and technology. As his work progresses, it will undoubtedly contribute to the advancement of polymer applications in various industries.

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