Laramie, WY, United States of America

Kaustubh Shriram Rane

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations of Kaustubh Shriram Rane in Quantum Dot Nanofluids

Introduction

Kaustubh Shriram Rane is an innovative inventor based in Laramie, Wyoming. He has made significant contributions to the field of nanotechnology, particularly in the development of quantum dot nanofluids. His work focuses on enhancing oil recovery methods through advanced nanofluid applications.

Latest Patents

Kaustubh Rane holds a patent for "Quantum dot nanofluids." This patent describes a method for recovering oil from a porous medium by contacting it with an aqueous nanofluid. The process involves solubilizing oil from the porous medium using nanoparticles to create a dispersion of oil and nanofluid. The aqueous nanofluid contains a combination of amphiphilic and hydrophilic quantum dots, with at least 90% of the nanoparticles having an aspect ratio ranging from 1:1 to 1:6. Additionally, the patent outlines a method that incorporates quantum dots into foaming surfactants to improve foam stability under reservoir conditions, thereby enhancing mobility control in porous media and hydraulic fractures.

Career Highlights

Kaustubh Rane is affiliated with the University of Wyoming's Office of Research & Economic Development. His work at the university emphasizes the application of nanotechnology in energy recovery and environmental sustainability. His innovative approaches have garnered attention in the scientific community.

Collaborations

Kaustubh has collaborated with notable colleagues, including Lamia Goual and Bingjun Zhang. Their combined expertise contributes to advancing research in the field of nanotechnology and its applications in oil recovery.

Conclusion

Kaustubh Shriram Rane's contributions to the field of quantum dot nanofluids represent a significant advancement in oil recovery techniques. His innovative methods and collaborative efforts continue to push the boundaries of nanotechnology applications.

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