Shaoxing, China

Yuefen Wang


Average Co-Inventor Count = 10.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Yuefen Wang

Introduction: Yuefen Wang, an accomplished inventor based in Shaoxing, China, is recognized for her significant contribution to the field of chemical synthesis. With a patented technology that enhances the efficiency of producing 2-methylallyl chloride, Wang has made substantial strides in the realm of chemical engineering.

Latest Patents: Wang's notable patent, entitled "Synthesis method for highly selective 2-methylallyl chloride and synthesis reactor thereof," details a groundbreaking synthesis method utilizing isobutylene and chlorine gas as raw materials. This innovative process incorporates a gas-phase chlorination reaction conducted in a microchannel reactor equipped with a cooling surface. The unique design enables an exceptionally rapid mixing speed and a considerable heat exchange area per unit volume, thereby ensuring stable reaction conditions at a constant temperature. This effective control minimizes side reactions caused by excessive local temperatures, achieving high selectivity without any coking phenomena.

Career Highlights: Throughout her career, Yuefen Wang has been associated with renowned institutions such as Zhejiang University and Zhejiang Huangma Technology Co., Ltd. Her work in these organizations has been pivotal in advancing research and development in chemical synthesis methodologies.

Collaborations: Wang has collaborated with esteemed colleagues in her field, including Hong Yin and Zhirong Chen. Together, they have focused on developing innovative technologies that push the boundaries of traditional chemical processes, facilitating more efficient industrial applications.

Conclusion: Yuefen Wang's contributions to the field of chemical synthesis through her innovative patent demonstrate her commitment to advancing scientific knowledge and improving industrial practices. Her work exemplifies the spirit of innovation and collaboration that drives progress within the scientific community.

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