Funabashi, Japan

Haruka Koga

This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignee: Nissan Chemical Industries Limited. Active years: 2018.


 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: Haruka Koga: Innovator in Charge-Transporting Varnish Technology

Introduction

Haruka Koga is a prominent inventor based in Funabashi, Japan. She has made significant contributions to the field of organic electronics, particularly through her innovative work on charge-transporting varnishes. Her inventions have the potential to enhance the performance of organic electroluminescent (EL) elements.

Latest Patents

Koga holds a patent for a charge-transporting varnish that exhibits high flatness and excellent charge transport properties. This varnish enables organic EL elements to achieve superior luminance characteristics. The patent describes a thin film obtained by using a charge-transporting varnish that contains a charge-transporting substance, an organosilane compound, and an organic solvent. The organosilane compound is prepared through hydrolysis-condensation and has a weight average molecular weight ranging from 500 to 10,000. The alkoxysilane compound used in the varnish includes specific compounds that enhance its performance.

Career Highlights

Throughout her career, Haruka Koga has worked with notable companies, including Nissan Chemical Industries Limited and Nissan Chemical Corporation. Her experience in these organizations has allowed her to develop and refine her innovative ideas in the field of materials science.

Collaborations

Koga has collaborated with esteemed colleagues such as Naoki Nakaie and Jun Hashimoto. These partnerships have contributed to her success and the advancement of her research in charge-transporting materials.

Conclusion

Haruka Koga is a trailblazer in the development of charge-transporting varnishes, with her patent showcasing her innovative spirit. Her work has the potential to significantly impact the field of organic electronics and improve the performance of various electronic devices.

Profile summary based on public USPTO records.
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