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Zhong Chen

Researcher at Nanyang Technological University

Publications -  1114
Citations -  37928

Zhong Chen is an academic researcher from Nanyang Technological University. The author has contributed to research in topics: Chemistry & Catalysis. The author has an hindex of 80, co-authored 1000 publications receiving 28171 citations. Previous affiliations of Zhong Chen include Institute of High Performance Computing Singapore & National Institute of Education.

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A Novel Liquid Packaging Structure of Deep-Ultraviolet Light-Emitting Diodes to Enhance the Light-Extraction Efficiency

TL;DR: In this paper, the authors proposed a liquid packaging structure that could enhance optical power by 27.2% and 70.7% for flat type and lens type 281-nm DUV-LEDs, respectively.
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Two-dimensional temperature distribution measurement of light-emitting diodes by micro-hyperspectral imaging-based reflected light method.

TL;DR: A non-contact measurement method for determining two-dimensional (2D) temperature distribution of light-emitting diodes (LEDs) based on both micro-hyperspectral imaging technology and reflected light method, owning merits of both high efficiency and high spatial resolution.
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Versatile, Robust, and Facile Approach for in Situ Monitoring Electrocatalytic Processes through Liquid Electrochemical NMR Spectroscopy

TL;DR: This work demonstrates the universality and effectivity of the proposed platform to develop the liquid in situ EC-NMR technique as a useful tool for the dynamic analysis of electrochemical processes at a molecular level.
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Ultra-fine pitch palladium-coated copper wire bonding: Effect of bonding parameters

TL;DR: It was observed that Electronic Flame Off (EFO) current and the cover gas type have a significant effect on palladium distribution in the FAB, and the impact of palladium on wire bondability and wire bond intermetallic using a high temperature storage test was studied.
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A General Strategy towards Superhydrophobic Self-Cleaning and Anti-Corrosion Metallic Surfaces: An Example with Aluminum Alloy

TL;DR: In this article, a super-hydrophobic self-cleaning and anti-corrosion surfaces for metallic structures was described, which showed low adhesion to dry contaminants and a series of liquids.