Suzhou, China

Huihuang Li


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Innovations of Huihuang Li in Green Chemistry

Introduction

Huihuang Li is a notable inventor based in Suzhou, China. He has made significant contributions to the field of green chemistry, particularly through his innovative methods for synthesizing chemical compounds. His work emphasizes efficiency, cost-effectiveness, and environmental sustainability.

Latest Patents

Huihuang Li holds a patent for a method of preparing 1,2,4-triazole. This method involves using a fluoroborate aryl diazonium salt, a diazoester derivative, and an organic nitrile as reaction substrates. A transition metal salt serves as a catalyst, while an inorganic base acts as an additive in the cyclization reaction. The process is characterized by its economical nature, universal substrate applicability, ease of post-functionalization, mild reaction conditions, and the ability to perform the reaction in air. Additionally, the method requires a minimal amount of catalyst and simplifies post-treatment. The raw materials used are inexpensive and readily available, aligning with the principles of contemporary green chemistry and medicinal chemistry.

Career Highlights

Huihuang Li is affiliated with Soochow University, where he continues to advance research in chemistry. His innovative approaches have garnered attention in academic and industrial circles alike. His work not only contributes to scientific knowledge but also has practical implications for drug development.

Collaborations

Huihuang Li collaborates with esteemed colleagues such as Haiyan Li and Yaxiong Wang. Their combined expertise enhances the research output and fosters a collaborative environment that drives innovation.

Conclusion

Huihuang Li's contributions to the field of green chemistry through his patent on 1,2,4-triazole synthesis exemplify the intersection of innovation and sustainability. His work is a testament to the potential of modern chemistry to address contemporary challenges in drug development and environmental impact.

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