Ames, IA, United States of America

Kshama Parate

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Kshama Parate: Innovator in Electrochemical Sensing Technologies

Introduction

Kshama Parate is a prominent inventor based in Ames, Iowa. She has made significant contributions to the field of electrochemical sensing through her innovative work on flexible graphene circuits. Her research focuses on developing high-resolution, high-throughput methods for fabricating electrochemical sensing circuits.

Latest Patents

Kshama Parate holds a patent for "Aerosol jet printed flexible graphene circuits for electrochemical sensing and biosensing." This patent outlines methods and systems for the fabrication of high-resolution electrochemical sensing circuits on a substrate. The technology involves printing circuits using an effective additive technique, with options for post-print annealing to enhance the electrochemical activity of the printed graphene. The printing methods can include aerosol jet printing or inkjet printing, with adjustments made to the ink formulation for optimal effectiveness. Additionally, biorecognition agents can be covalently bonded to the printed graphene to facilitate electrochemical biosensing.

Career Highlights

Throughout her career, Kshama Parate has worked with notable institutions, including the Iowa State University Research Foundation and Northwestern University. Her work has been instrumental in advancing the capabilities of electrochemical sensors, particularly in the context of biosensing applications.

Collaborations

Kshama has collaborated with esteemed colleagues such as Jonathan Claussen and Mark C Hersam, contributing to the development of innovative technologies in her field.

Conclusion

Kshama Parate is a trailblazer in the realm of electrochemical sensing, with her patented technologies paving the way for advancements in flexible graphene circuits. Her contributions continue to influence the landscape of biosensing and electrochemical applications.

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