Jiangsu, China

Yamei Mo


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Yamei Mo: Innovator in Quasi-Two-Dimensional Materials

Introduction

Yamei Mo is a notable inventor based in Jiangsu, China. She has made significant contributions to the field of material science, particularly in the development of devices for preparing quasi-two-dimensional materials. Her innovative approach has garnered attention in both academic and industrial circles.

Latest Patents

Yamei Mo holds a patent for a micro-cavity liquid-phase shearing device designed for preparing quasi-two-dimensional materials. This device features a movable plate system, a fixed plate system, a feed liquid external circulation system, a driven gear system, and a charging barrel. The movable plate system includes a movable plate unit and a driving gear, while the fixed plate system consists of a fixed plate unit and a support. The primary shear cavity within the movable plate unit allows for the initial shearing of the feed liquid, which is then subjected to secondary shearing in an annular micro-gap defined as a secondary shear micro-cavity. This innovative design enhances the efficiency of material preparation.

Career Highlights

Yamei Mo is affiliated with Nantong University, where she continues her research and development efforts. Her work has not only advanced the understanding of quasi-two-dimensional materials but has also paved the way for new applications in various fields.

Collaborations

Yamei has collaborated with esteemed colleagues, including Guoqiu Yuan and Min Cao, who have contributed to her research endeavors. Their combined expertise has fostered a productive research environment, leading to innovative solutions in material science.

Conclusion

Yamei Mo's contributions to the field of material science, particularly through her patented micro-cavity liquid-phase shearing device, highlight her role as a leading inventor in the preparation of quasi-two-dimensional materials. Her work continues to inspire advancements in this important area of research.

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