Cambridge, MA, United States of America

Chia-Hao Marcus Chuang


Average Co-Inventor Count = 5.1

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2015-2018

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2 patents (USPTO):Explore Patents

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Title: Exploring the Innovations of Inventor Chia-Hao Marcus Chuang

Introduction: Inventor Chia-Hao Marcus Chuang, based in Cambridge, MA, is a pioneering figure in the field of nanocrystals and quantum dot solar cells. With a wealth of knowledge and experience, Chuang has made significant contributions to the world of optoelectronic applications.

Latest Patents:

1. **Eliminating Emissive Sub-Bandgap States in Nanocrystals:** Chuang's patent focuses on the band-gap tunability and solution processability of nanocrystals. By addressing sub-bandgap states through surface treatment, the performance of nanocrystal thin films can be significantly enhanced.

2. **Quantum Dot Solar Cells with Band Alignment Engineering:** This patent introduces a novel approach to solar cell design, involving different quantum dot ligands for the acceptor and blocking layers. By strategically aligning valence and conduction bands, this innovative solar cell design aims to maximize efficiency.

Career Highlights: Currently affiliated with the renowned Massachusetts Institute of Technology (MIT), Chuang continues to push boundaries in research and technological advancements. His expertise and dedication have placed him at the forefront of cutting-edge developments in the field.

Collaborations: Working alongside esteemed colleagues such as Moungi G Bawendi and Vladimir Bulovic, Chuang has been part of collaborative efforts that have further enriched his research endeavors. These collaborations have fostered a dynamic environment for innovative exploration and discovery.

Conclusion: Inventor Chia-Hao Marcus Chuang's work exemplifies a commitment to innovation and excellence in the realm of nanocrystals and solar cell technology. Through his patents and collaborations, he has left a lasting impact on the field, shaping the future of optoelectronics.

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