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Dive into the research topics where Po-Feng Wu is active.

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Featured researches published by Po-Feng Wu.


Nanoscale Research Letters | 2009

Synthesis and Characterization of Tin Disulfide (SnS2) Nanowires

Ya-Ting Lin; Jen-Bin Shi; Yu-Cheng Chen; Chih-Jung Chen; Po-Feng Wu

The ordered tin disulfide (SnS2) nanowire arrays were first fabricated by sulfurizing the Sn nanowires, which are embedded in the nanochannels of anodic aluminum oxide (AAO) template. SnS2nanowire arrays are highly ordered and highly dense. X-ray diffraction (XRD) and corresponding selected area electron diffraction (SAED) patterns demonstrate the SnS2nanowire is hexagonal polycrystalline. The study of UV/Visible/NIR absorption shows the SnS2nanowire is a wide-band semiconductor with three band gap energies (3.3, 4.4, and 5.8 eV).


Nanoscale Research Letters | 2009

Anodic Aluminum Oxide Membrane-Assisted Fabrication of β-In2S3Nanowires

Jen-Bin Shi; Chih-Jung Chen; Ya-Ting Lin; Wen-Chia Hsu; Yu-Cheng Chen; Po-Feng Wu

In this study, β-In2S3nanowires were first synthesized by sulfurizing the pure Indium (In) nanowires in an AAO membrane. As FE-SEM results, β-In2S3nanowires are highly ordered, arranged tightly corresponding to the high porosity of the AAO membrane used. The diameter of the β-In2S3nanowires is about 60 nm with the length of about 6–8 μm. Moreover, the aspect ratio of β-In2S3nanowires is up to 117. An EDS analysis revealed the β-In2S3nanowires with an atomic ratio of nearly S/In = 1.5. X-ray diffraction and corresponding selected area electron diffraction patterns demonstrated that the β-In2S3nanowire is tetragonal polycrystalline. The direct band gap energy (Eg) is 2.40 eV from the optical measurement, and it is reasonable with literature.


Materials Letters | 2008

Synthesis and optical properties of CuS nanowires fabricated by electrodeposition with anodic alumina membrane

Jen-Bin Shi; Chih-Jung Chen; Yu-Cheng Chen; Ya-Ting Lin; Po-Feng Wu; Sung-Yen Wei


Crystal Research and Technology | 2015

Influence of selenization temperature on synthesis, morphology, and properties of nanostructured CoSe2 films

Jen-Bin Shi; Po-Feng Wu; Chia-Tze Kao; Ming-Way Lee; Chih-Chieh Chan; Ping-Chang Yang; C. C. Lin; Rui-Yo Huang; Yu-Jyun Huang; Shih-Kai Lin; Fu-Chou Cheng; Hsien-Sheng Lin; Hsuan-Wei Lee


Vacuum | 2015

Synthesis and optical properties of single-crystalline indium zinc oxide (IZO) nanowires via co-deposition and oxidation methods

Jen-Bin Shi; Po-Feng Wu; Ya-Ting Lin; Chia-Tze Kao; Chih-Jung Chen; Fu-Chou Cheng; Hung-Hsin Liu; Yu-Cheng Chen; Hsien-Sheng Lin; Hsuan-Wei Lee


Nanoscale Research Letters | 2014

Synthesis and characterization of single-crystalline zinc tin oxide nanowires

Jen-Bin Shi; Po-Feng Wu; Hsien-Sheng Lin; Ya-Ting Lin; Hsuan-Wei Lee; Chia-Tze Kao; Wei-Hsiang Liao; San-Lin Young


Crystal Research and Technology | 2013

Effect of Cu/In ratio on properties of CuInSe2 thin films prepared by selenization of Cu-In layers

Jen-Bin Shi; Yu-Cheng Chen; Po-Feng Wu; Shui-Yuang Yang; Tsung-Kuei Kang; Ping-Chang Yang; Cheng-Li Lin; San-Lin Young; Ming-Cheng Kao


Crystal Research and Technology | 2012

Optical properties and synthesis of CuInSe2 thin films by selenization of Cu/In layers

Jen-Bin Shi; Yu-Cheng Chen; Chih-Jung Chen; Po-Feng Wu


Crystal Research and Technology | 2012

Synthesis and optical properties of CuInS2 thin films prepared by sulfurization of electrodeposited Cu‐In layers

Yu-Cheng Chen; Jen-Bin Shi; Po-Feng Wu; Chih-Jung Chen; Shui-Yuang Yang


Journal of Thermal Spray Technology | 2016

Temperature-Dependent Effects of FeS2 Thin Film Synthesized by Thermochemical Spraying: An Optical and Physicochemical Investigation

Chia-Tze Kao; Jen-Bin Shi; Hsuan-Wei Lee; Fu-Chou Cheng; Hung-Hsin Liu; Ming-Way Lee; Chih-Chieh Chan; Chien-Wei Huang; Hsien-Sheng Lin; Po-Feng Wu; Chin Yi Chen; Ming-Cheng Kao; San-Lin Young; C. C. Lin

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Chia-Tze Kao

Chung Shan Medical University

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Ming-Way Lee

National Chung Hsing University

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San-Lin Young

Hsiuping University of Science and Technology

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Hung-Hsin Liu

Chung Shan Medical University

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