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Li-Chyong Chen

Researcher at National Taiwan University

Publications -  507
Citations -  21371

Li-Chyong Chen is an academic researcher from National Taiwan University. The author has contributed to research in topics: Thin film & Carbon nanotube. The author has an hindex of 66, co-authored 506 publications receiving 18926 citations. Previous affiliations of Li-Chyong Chen include Massachusetts Institute of Technology & Harvard University.

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Improved broadband and quasi-omnidirectional anti-reflection properties with biomimetic silicon nanostructures

TL;DR: A simple aperiodic array of silicon nanotips on a 6-inch wafer with a sub-wavelength structure that can suppress the reflection of light at a range of wavelengths from the ultraviolet, through the visible part of the spectrum, to the terahertz region is reported.
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Tunable photoluminescence from graphene oxide.

TL;DR: The systematic evolution of the electronic structure and comprehensive analysis of steady-state and transient PL along with photoluminescence excitation (PLE) spectroscopy measurements indicate that two different types of electronically excited states are responsible for the observed emission characteristics.
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Anti-reflecting and photonic nanostructures

TL;DR: In this article, a review of state-of-the-art anti-reflecting (AR) techniques, reported over the last half a century, and their guiding principles to predict a logical trend for future research in this field are presented.
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Catalytic growth and characterization of gallium nitride nanowires.

TL;DR: Temperature dependence of photoluminescence spectra of the nanowires revealed that the emission mainly comes from wurtzite GaN with little contribution from the cubic phase, which suggests potential of the GaN Nanowires in field emission applications.
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Conducting polymer-based flexible supercapacitor

TL;DR: In this article, a review of flexible supercapacitors based on conducting polymers (CPs) is presented, which describes recent developments and remaining challenges in this field, and its impact on the future direction and relevant device fabrications.