Hamilton Square, NJ, United States of America

Shek-Chung Gau


Average Co-Inventor Count = 2.4

ph-index = 2

Forward Citations = 70(Granted Patents)


Location History:

  • Hamilton Square, NJ (US) (1984)
  • Hamilton Township, Mercer County, NJ (US) (1984)

Company Filing History:


Years Active: 1984

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2 patents (USPTO):Explore Patents

Title: Innovative Contributions of Inventor Shek-Chung Gau

Introduction

Shek-Chung Gau is a distinguished inventor based in Hamilton Square, NJ, USA. His innovative work in the field of semiconductor technology has led to the filing of two notable patents, contributing significantly to advancements in amorphous semiconductors.

Latest Patents

Gau's latest patents include a groundbreaking method for bandgap control in amorphous semiconductors. This innovation outlines a method of producing hydrogenated amorphous semiconductors with specified bandgaps by controlling temperature and the partial pressure of higher-order semiconductanes, which are created pyrolytically. This method is particularly effective when utilizing a hot-wall epitaxial reactor.

Additionally, Gau has developed a preparation technique for amorphous semiconductor carbides. This method involves the pyrolytic decomposition of a mixture of semiconductanes and carbanes, resulting in materials that are suitable for a wide variety of electronic devices.

Career Highlights

Currently, Shek-Chung Gau is affiliated with Chronar Corporation, where he leverages his expertise in semiconductor technologies. His career is marked by a commitment to advancing the field and ensuring the practical application of his research.

Collaborations

Gau has collaborated with notable colleagues, including Vikram L. Dalal and M. Akhtar, enhancing the breadth of his research and contributing to the development of innovative solutions in semiconductor applications.

Conclusion

Shek-Chung Gau's contributions to semiconductor technology through his inventive patents demonstrate his significant role in the industry. His innovative methods for controlling bandgaps and preparing amorphous semiconductors continue to pave the way for advancements in electronic devices, showcasing the impact of his work in the field.

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