Houston, TX, United States of America

Subashini Asokan


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2012-2015

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2 patents (USPTO):Explore Patents

Title: Subashini Asokan: Innovator in Nanoparticle Synthesis

Introduction

Subashini Asokan is a prominent inventor based in Houston, TX (US). She has made significant contributions to the field of nanoparticle synthesis, holding 2 patents that showcase her innovative approach to creating non-spherical nanoparticles. Her work is vital for various applications in materials science and nanotechnology.

Latest Patents

Asokan's latest patents focus on the synthesis of uniform nanoparticle shapes with high selectivity. The first patent describes a method that provides non-spherical nanoparticle compositions derived from a source of a Group 12, 13, 14, or 15 metal or metalloid, a source of a Group 15 or 16 element, and a source of a quaternary ammonium compound or phosphonium compound. This invention ensures that nanoparticle tetrapods comprise 75-100 percent of the nanoparticle products. The second patent outlines a similar method, emphasizing the isolation of non-spherical nanoparticles from the resulting reaction mixture, further enhancing the efficiency of nanoparticle production.

Career Highlights

Subashini Asokan is affiliated with William Marsh Rice University, where she continues to advance her research in nanoparticle synthesis. Her work has garnered attention for its potential applications in various scientific fields, including electronics, medicine, and materials engineering.

Collaborations

Asokan collaborates with Michael Sha-nang Wong, contributing to the innovative research environment at their institution. Their partnership exemplifies the collaborative spirit that drives advancements in scientific research.

Conclusion

Subashini Asokan's contributions to nanoparticle synthesis highlight her role as a leading inventor in the field. Her innovative patents and collaborative efforts continue to push the boundaries of materials science and nanotechnology.

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