Taipei, Taiwan

Jiunn-Jye Hwang


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: Innovator Jiunn-Jye Hwang: Pioneer of Soluble Pentacene Precursors

Introduction: Jiunn-Jye Hwang is a notable inventor based in Taipei, Taiwan. He has made significant contributions to the field of materials science, focusing on the development of soluble pentacene precursors. His innovative approach marks a pivotal advancement in the application of organic thin film transistors.

Latest Patents: Jiunn-Jye Hwang holds a patent for a novel soluble pentacene precursor named 6,13-dihydro-6,13-methanopentacene-15-one. This patent encompasses not only the precursor itself but also the method for its production, along with the intermediates and pentacene films and coated surfaces it can generate. The process involves the thermolysis of the precursor at temperatures ranging from 150°C to 350°C, which induces the expulsion of carbon monoxide, resulting in high yields of pentacene. The high solubility of this precursor and the production of non-contaminated pentacene make it an excellent choice for organic thin film transistors.

Career Highlights: Jiunn-Jye Hwang is currently associated with Academia Sinica, a leading research institution in Taiwan. His work has garnered attention for its innovative nature and potential applications in various electronic devices.

Collaborations: Throughout his career, Hwang has collaborated with notable individuals such as Tahsin J Chow and Kew-Yu Chen, contributing to the advancement of materials science and organic electronics. These collaborative efforts have focused on enhancing the efficacy and application of pentacene materials.

Conclusion: Jiunn-Jye Hwang's invention of a soluble pentacene precursor represents a significant breakthrough in material science, offering new possibilities for the development of organic thin film transistors. His contributions through collaboration at Academia Sinica exemplify the impact of innovative research in advancing technology and enhancing electronic applications.

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