Hsinchu, Taiwan

Tsai-Ming Chung


Average Co-Inventor Count = 8.0

ph-index = 1

Forward Citations = 65(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):

Title: **Inventor Tsai-Ming Chung: Innovating Nanoscale Microstructures in Hsinchu, Taiwan**

Introduction

Tsai-Ming Chung is a prominent inventor based in Hsinchu, Taiwan, known for his groundbreaking research in the field of nanoscale microstructures. He has made significant strides in developing a method for creating helical microstructures, which hold immense potential for various applications in materials science and engineering.

Latest Patents

The hallmark of Tsai-Ming Chung's inventive work is his patent titled "Nanoscale helical microstructures and channels from chiral poly(L-lactide) block containing block copolymers". This patent outlines a novel method for producing a series of nanoscale microstructures, which includes both helical and cylindrical shapes. The process involves forming a chiral block copolymer composed of multiple chiral first polymer blocks and a second type of polymer block. Specifically, the chiral first polymer blocks must have a volume fraction of 20% to 49%. The method further entails a phase separation within the chiral block copolymer. A notable example involves using a poly(styrene)-poly(L-lactide) chiral block copolymer synthesized through a living copolymerization process.

Career Highlights

Tsai-Ming Chung is associated with the Industrial Technology Research Institute, where he dedicated his efforts to advancing research in polymer science and nanotechnology. His unique approach to creating complex nanoscale structures has positioned him as a significant contributor to his field. Tsai-Ming's expertise also extends to employing advanced techniques such as Transmission Electron Microscopy (TEM) and Small Angle X-ray Scattering (SAXS) to analyze the properties of the microstructures he develops.

Collaborations

Throughout his career, Tsai-Ming Chung has collaborated with distinguished colleagues, including Rong-Ming Ho and Yeo-Wan Chiang. These partnerships have enriched his research endeavors, fostering a collaborative environment that promotes innovation in the development of sophisticated nanostructures.

Conclusion

Tsai-Ming Chung exemplifies the spirit of innovation in the realm of nanoscale microstructures. With a patent to his name and a strong foundation of collaborative efforts, he continues to influence the future of materials science and contribute valuable insights into the properties and applications of advanced polymers. His work not only sheds light on the complexities of nanoscale engineering but also opens new avenues for technological advancements in various industries.

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