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  1. National Taiwan Ocean University Research Hub
  2. 電機資訊學院
  3. 光電與材料科技學系

光電與材料科技學系 : [0/1259] 集合首頁

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培育具備未來競爭力、基本研究素養、創新及跨領域思維之尖端材料、海洋能源與光電科技產業人才
集合內的文件 (依標題由升冪排序): 從 581 到 600 筆,總共 1259 筆
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公開日期標題作者來源出版物scopusWOS全文
1994Imaging through animal tissues with cw broadband electronic holographyH.-P. Chiang ; M.-R. Li; J. Wang
1996Imaging through animal tissues with cw broadband electronic holographyHai-Pang Chiang ; Wan-Sun TseSPIE Holography Newsletter
1996Imaging through animal tissues with CW diode laser based broadband interferometryHai-Pang Chiang ; Jyhpyng WangOptics Communications3
1997Imaging through animal tissues with cw diode laser based broadband interferometryH.-P. Chiang ; J. Wang
1995Imaging through animal tissues with cw laser diode based interferometryH.-P. Chiang ; J. Wang
1993Imaging through random scattering media using cw broadband interferometryJ. Wang; H.-P. Chiang ; W.-S. Chang
1993Imaging through random scattering media by using cw broadband interferometryH P Chiang ; W S Chang; J WangOptics Letters
2021Impact of cation substitution in (AgxCu1-x)2ZnSnSe4 absorber-based solar cells towards 10% efficiency: experimental and theoretical analysesS. Quadir; M. Qorbani; Y. R. Lai; A. Sabbah; H. T. Thong; M. Hayashi; Cheng-Ying Chen ; K. H. Chen; L. C. Chen
2021Impact of Cation Substitution in (AgxCu1−x)2ZnSnSe4 Absorber–based Solar Cells Towards 10% Efficiency: Experimental and Theoretical AnalysesShaham Quadir; Mohammad Qorbani; Ying-Ren Lai; Amr Sabbah; Ho–Thi Thong; Michitoshi Hayashi; Cheng-Ying Chen ; Kuei–Hsien Chen; Li–Chyong ChenSolar RRL8
2012Imprinting of Metallic Glasses: A Simple Approach to Making Durable Terahertz High-Pass FiltersChen, Y. C.; Tsong-Ru Tsai ; Chu, J. P.; Sung, H.; Jang, J. S. C.; Kato, H.Applied Physics Express
2023Improved fatigue strength of Cr-electroplated 7075-T6 Al alloy by micro-shot peeningSu, Chih-Hang; Chen, Tai-Cheng; Tsay, Leu-Wen INTERNATIONAL JOURNAL OF FATIGUE2
2002Improved Impact Toughness of 13Cr Martenstic Stainless Steel Hardened by LaserL. W. Tsay ; Y. M. Chang; S. Torng; H. C. WuJournal of Materials Engineering and Performance
2020Improved photoelectrode performance of chemical solution-derived Bi2O3 crystals via manipulation of crystal characterizationLiang, Yuan-Chang ; Chou, Yu-HsunRSC ADVANCES12
2025Improved photovoltaic performance of un-doped FAPbI3 thin film based solar cells via de-trapping excitonsChang, Wen-Hsin; Huang, Yi-Chun; Chandel, Anjali; Chiang, Shou-En; Wu, Jia-Ren; Chang, Sheng Hsiung CHINESE JOURNAL OF PHYSICS
2021Improved Refractive Index-Sensing Performance of Multimode Fano-Resonance-Based Metal-Insulator-Metal NanostructuresChau, Yuan-Fong Chou; Chou Chao, Chung-Ting; Jumat, Siti Zubaidah Binti Haji; Kooh, Muhammad Raziq Rahimi; Thotagamuge, Roshan; Lim, Chee Ming; Chiang, Hai-Pang NANOMATERIALS21
2018Improved Voc Deficit in Kesterite Cu2ZnSn(S,Se)4 Solar Cells via Grain Boundary Passivation at the p-n Junction InterfacesCheng-Ying Chen ; N. Saidatin; C.Y. Huang; B. S. Aprillia; R.S. Chen; J.S. Hwang; K.H. Chen; L.C. Chen
2024/6/25The Improvement in Corrosion Resistance of Electroless Ni-P Coating on Micro-arc Oxidized AZ31 Alloy Prepared with Sodium Dodecyl Sulfate Additive and Post-supercritical CO<sub>2</sub> Mixed ElectrolyteLee, Chun-Ying; Chen, Kun-Lin; Yen, Ting-Jui; Lee, Hung-Bin JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE
2006Improvement in the characteristics of GaN-based light-emitting diodes by inserting AlGaN-GaN short-period superlattices in GaN underlayersWang, C. L.; Gong, J. R.; Yeh, M. F.; Wu, B. J.; Liao, W. T.; Tai-Yuan Lin ; Lin, C. K.Ieee Photonics Technology Letters6
1997Improvement of environmental degradation resistance of Fe-Al-based alloys by surface modification treatmentsPee-Yew Lee ; Chiu, L. H.; Yang, C. F.; Chen, W. D.; Kai, W.; Chu, J. P.Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing8
2019Improvement of Ethanol Gas-Sensing Responses of ZnO-WO3 Composite Nanorods through Annealing Induced Local Phase TransformationYuan-Chang Liang ; Chang, C. W.Nanomaterials
集合內的文件 (依標題由升冪排序): 從 581 到 600 筆,總共 1259 筆
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