Taoyuan, Taiwan

Tzeng-Lu Yeh


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Tzeng-Lu Yeh: Innovator in Graphene Nanotechnology

Introduction

Tzeng-Lu Yeh is a prominent inventor based in Taoyuan, Taiwan. He is known for his innovative contributions to the field of nanotechnology, particularly in the production of graphene materials. His work has significant implications for various industries, including electronics and materials science.

Latest Patents

Tzeng-Lu Yeh holds a patent titled "Method for producing thin graphene nanoplatelets and precursor thereof." This patent discloses a method for producing thin graphene nanoplatelets, which involves several key steps. The process begins with providing a carbon precursor and a filling material. The carbon precursor acts as a binding agent, which is thoroughly mixed with the filling material to create a composite material. This composite undergoes a forming process, followed by heat treatment under specific atmospheric conditions and temperatures to enhance electrical conductivity and binding strength. The method ultimately leads to the production of high-quality graphene through an electrochemical process, allowing for mass production at a low cost.

Career Highlights

Tzeng-Lu Yeh is affiliated with the National Chung Shan Institute of Science and Technology, where he has made significant strides in research and development. His expertise in graphene technology positions him as a key figure in advancing materials science.

Collaborations

Tzeng-Lu Yeh has collaborated with notable colleagues, including Chuen-Ming Gee and Yi-Cheng Cheng. These collaborations have fostered a productive research environment, contributing to the advancement of innovative technologies.

Conclusion

Tzeng-Lu Yeh's work in graphene nanoplatelet production exemplifies the potential of innovative materials in modern technology. His contributions continue to influence the field and pave the way for future advancements in nanotechnology.

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