Hangzhou, China

Wenzhang Fang


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Wenzhang Fang: Innovator in Graphene Technology

Introduction

Wenzhang Fang is a prominent inventor based in Hangzhou, China. He has made significant contributions to the field of graphene technology, particularly in the development of enhanced graphene structures. His innovative work has the potential to impact various applications in electronics and materials science.

Latest Patents

Wenzhang Fang holds a patent for an invention titled "Enhanced graphene structure based on weak coupling, graphene film, and photoelectric device." This patent describes a weakly coupled enhanced graphene film that includes an enhanced graphene structure based on weak coupling. The structure comprises a plurality of graphene units stacked vertically, where each unit can be a single graphene sheet or consist of multiple sheets stacked in an AB form. The weak coupling between vertically adjacent graphene units promotes hot electron transition and increases the joint density of states, thereby enhancing the number of hot electrons in high-energy states. The graphene film further enhances the accumulation of these hot electrons, showcasing the innovative nature of Fang's work.

Career Highlights

Wenzhang Fang is affiliated with Zhejiang University, where he conducts research and development in advanced materials. His work in graphene technology has positioned him as a key figure in the field, contributing to the understanding and application of graphene in various technological domains.

Collaborations

Wenzhang Fang has collaborated with notable colleagues, including Chao Gao and Li Peng. These collaborations have fostered a productive research environment, leading to advancements in graphene-related technologies.

Conclusion

Wenzhang Fang's contributions to graphene technology exemplify the innovative spirit of modern inventors. His patent on enhanced graphene structures highlights the potential for significant advancements in electronic devices and materials science. The impact of his work will likely resonate in the scientific community and beyond.

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