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Yi Fan Huang
Researcher at National Yang-Ming University
Publications - 18
Citations - 1289
Yi Fan Huang is an academic researcher from National Yang-Ming University. The author has contributed to research in topics: Silicon & Surface plasmon resonance. The author has an hindex of 8, co-authored 18 publications receiving 1179 citations. Previous affiliations of Yi Fan Huang include National Taiwan University & Academia Sinica.
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Journal ArticleDOI
Improved broadband and quasi-omnidirectional anti-reflection properties with biomimetic silicon nanostructures
Yi Fan Huang,Yi Fan Huang,Surojit Chattopadhyay,Yi-Jun Jen,Cheng Yu Peng,Tze An Liu,Yu-Kuei Hsu,Ci-Ling Pan,Hung Chun Lo,Chih Hsun Hsu,Yuan Huei Chang,Chih Shan Lee,Kuei-Hsien Chen,Li-Chyong Chen +13 more
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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Design for approaching Cicada-wing reflectance in low- and high-index biomimetic nanostructures.
Yi Fan Huang,Yi-Jun Jen,Li-Chyong Chen,Kuei-Hsien Chen,Kuei-Hsien Chen,Surojit Chattopadhyay +5 more
TL;DR: Design parameters of spacing/wavelength and length/spacing fitted into a finite difference time domain model could simulate the experimental reflectance values observed in real silicon and germanium or in model silica and indium tin oxide nanotip arrays.
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Nanostructure surface design for broadband and angle-independent antireflection
TL;DR: In this article, three different antireflecting structures (ARS) were compared to each other analytically for their reflectivities, using finite difference time domain calculations, in the visible and near-infrared wavelength zone and over a wider angle of incidence.
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High k nanophase zinc oxide on biomimetic silicon nanotip array as supercapacitors.
Hsieh Cheng Han,Cheong Wei Chong,S. B. Wang,S. B. Wang,Dawei Heh,Chi-Ang Tseng,Yi Fan Huang,Surojit Chattopadhyay,Kuei-Hsien Chen,Kuei-Hsien Chen,Chi-Feng Lin,Jiun-Haw Lee,Li-Chyong Chen +12 more
TL;DR: A 3D trenched-structure metal-insulator-metal (MIM) nanocapacitor array with an ultrahigh equivalent planar capacitance (EPC) of ~300 μF cm(-2) is demonstrated.
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Detection of melamine on fractals of unmodified gold nanoparticles by surface-enhanced Raman scattering
TL;DR: The agglomeration results in a strong plasmon field, shown by FDTD, over the interparticle sites that enhances the Raman scattering cross-section of melamine and ensures unambiguous detection.