Goleta, CA, United States of America

Daniil Kitchaev


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Daniil Kitchaev: Innovator in Lithium Metal Oxides

Introduction

Daniil Kitchaev is a prominent inventor based in Goleta, California. He has made significant contributions to the field of materials science, particularly in the development of lithium metal oxides and oxyfluorides. His work is crucial for advancing battery technology, which is essential for modern electronic devices and electric vehicles.

Latest Patents

Kitchaev holds a patent for "Cation-disordered rocksalt lithium metal oxides and oxyfluorides and methods of making same." This invention focuses on a disordered rocksalt lithium metal oxide and oxyfluoride, specifically manganese-vanadium oxides and oxyfluorides. These materials are well-suited for use in high-capacity lithium-ion battery electrodes. The general formula for the lithium metal oxide or oxyfluoride is LiM'M''OF, where M' is a low valent transition metal and M'' is a high-valent transition metal. The oxides or oxyfluorides balance accessible lithium capacity and transition metal capacity, making them ideal for high energy density lithium-cathode battery materials.

Career Highlights

Kitchaev has worked at prestigious institutions such as the University of California and the Massachusetts Institute of Technology. His research has focused on optimizing materials for battery applications, which are critical for enhancing the performance of lithium-ion batteries.

Collaborations

Throughout his career, Kitchaev has collaborated with notable researchers, including Gerbrand Ceder and HuiWen Ji. These collaborations have furthered the understanding and development of advanced materials for energy storage.

Conclusion

Daniil Kitchaev's innovative work in lithium metal oxides and oxyfluorides represents a significant advancement in battery technology. His contributions are vital for the future of energy storage solutions.

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