Kyoto, Japan

Takao Ikeda


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 1985

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1 patent (USPTO):Explore Patents

Title: **Takao Ikeda: Innovator of Optically-Active Diamide Derivatives**

Introduction

Takao Ikeda is an inventive chemist based in Kyoto, Japan, renowned for his contributions to the field of asymmetric synthesis. With a unique focus on optically-active compounds, Ikeda has made significant strides through his innovative work and patent in this specialized domain.

Latest Patents

Ikeda holds a patent for "Optically-active diamide derivatives," which presents a novel optically active diamide derivative that serves as a vital starting material for the asymmetric synthesis of optically active compounds. The patent describes a general formula where R¹ signifies a divalent atomic group containing at least one carbon atom, and R² acts as a substituent that influences the regioselectivity during substitution reactions. This groundbreaking work can lead to advancements in the synthesis of optically-active compounds by employing further reactions with nucleophilic reagents.

Career Highlights

Professionally, Takao Ikeda is affiliated with Yamasa Shoyu Kabushiki Kaisha, a company recognized for its important contributions to food and fermentation technology. His role has underscored his commitment to using chemical innovations to enhance product development in practical applications, particularly within the food industry.

Collaborations

Throughout his career, Ikeda has collaborated with notable peers such as Eiichi Fujita and Yoshimitsu Nagao. These collaborations have fostered a rich environment for research and development, allowing the exchange of ideas and techniques that further enhance their collective work in chemistry and patentable inventions.

Conclusion

Takao Ikeda stands out as an innovative inventor in the realm of optically-active compounds. His patent on optically-active diamide derivatives showcases his dedication to advancing asymmetric synthesis techniques. Through his work with Yamasa Shoyu Kabushiki Kaisha and his collaborations, he continues to contribute meaningfully to the field, paving the way for future innovations in chemical applications.

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