Shanghai, China

Lingjun Ye


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):

Title: Innovations in Catalytic Oxidation: The Contributions of Lingjun Ye

Introduction

Lingjun Ye, an accomplished inventor based in Shanghai, China, has made significant strides in the field of chemical processes. With a singular patent to his name, Ye's innovative approach to catalytic oxidation of alcohols reflects his commitment to environmentally sustainable practices in chemical manufacturing.

Latest Patents

Lingjun Ye holds a patent entitled "Process for preparing ketone or carboxylic acid by catalytic oxidation of secondary or primary alcohol." This patent describes a novel process wherein secondary or primary alcohols are combined with N-hydroxyphthalimide (NHPI) and phthalocyanine, functioning as a catalytic system. The use of oxygen gas as an oxidant during the oxidation reaction, which can occur under mild conditions of 60 to 120°C for 9 to 36 hours, enables the efficient conversion of alcohols into ketones or carboxylic acids. Notably, this process yields high quantities while favoring greener methodologies, advanced catalysts, and improved separation techniques.

Career Highlights

Lingjun Ye is affiliated with the Shanghai Institute of Technology, where he engages in a dynamic research environment that fosters innovation and technological advancement. His work in developing this catalytic oxidation process underscores a significant contribution to the chemical engineering sector, combining efficiency with ecological mindfulness.

Collaborations

Working alongside notable colleagues, including Xiaoling Sun and Ying Liu, Lingjun Ye has fostered a collaborative atmosphere that promotes research and development within the institute. These partnerships are instrumental in refining processes and expanding their applications in various industrial fields.

Conclusion

Lingjun Ye exemplifies the pioneering spirit of modern inventors dedicated to advancing sustainable chemical processes. His work in catalytic oxidation not only alleviates the environmental impact of chemical reactions but also streamlines production methods, marking a significant leap forward in chemical innovation. As researchers and industries increasingly prioritize eco-friendly technologies, Ye's contributions will likely resonate in both academic and industrial settings for years to come.

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