English  |  正體中文  |  简体中文  |  Total items :0  
Visitors :  52507526    Online Users :  813
Project Commissioned by the Ministry of Education
Project Executed by National Taiwan University Library
 
臺灣學術機構典藏系統 (Taiwan Academic Institutional Repository, TAIR)
About TAIR

Browse By

News

Copyright

Related Links

Jump to: [ Chinese Items ] [ 0-9 ] [ A B C D E F G H I J K L M N O P Q R S T U V W X Y Z ]
or enter the first few letters:   

Showing items 219526-219550 of 2348570  (93943 Page(s) Totally)
<< < 8777 8778 8779 8780 8781 8782 8783 8784 8785 8786 > >>
View [10|25|50] records per page

Institution Date Title Author
國立臺灣大學 2003 Band Gap Reduction in InAsN Alloys Shih, Ding-Kang; Lin, Hao-Hsiung; Sung, Li-Wei; Chu, Tso-Yu; Yang, T.-R.
臺大學術典藏 2018-09-10T04:35:06Z Band Gap Reduction in InAsN Alloys D. K. Shih; H. H. Lin; L. W. Sung; T. Y. Chu; T. R. Yang; HAO-HSIUNG LIN
國立成功大學 2024-05-17 Band Gap Renormalization at Different Symmetry Points in Perovskites Wang;Lijie;Nughays;Razan;Yin;Jun;Shih;Chun-Hua;Guo;Tzung-Fang;Mohammed;Omar, F.;Chergui;Majed
中華大學 2009 Band gap studies of 2D photonic crystals with hybrid scatterers 楊宗哲; YANG, TZONG-JER
國立成功大學 2022 Band gap tunable quaternary PbxCd1−xS1−ySey quantum dot-sensitized solar cells with an efficiency of 9.24% under 1% sun Boon-On, P.;Rajendran, Rajendran R.;Yao, Yao Y.-T.;Lien, S.-W.;Chang, T.-R.;Lee, M.-W.
臺大學術典藏 2019-12-19T08:38:33Z Band gap tuning of graphene by adsorption of aromatic molecules Chang, C.-H.; Fan, X.; Li, L.-J.; Kuo, J.-L.; CHING-RAY CHANG
臺大學術典藏 2019-08-01T04:31:51Z Band gap tuning of narrow-polydispersity two-dimensional conductive polymers with electroactive side-chains Wang, L.; Dai, C.-A.; Ohta, Y.; Yokozawa, T.; Leung, M.-K.; Hsu, W.-C.; Hsu, F.-Y.; Chiang, C.-J.; Lee, Y.-P.; Lee, Y.-H.; Yang, Y.-L.; Yokozawa, T.;Ohta, Y.;Dai, C.-A.;Wang, L.;Leung, M.-K.;Hsu, W.-C.;Hsu, F.-Y.;Chiang, C.-J.;Lee, Y.-P.;Lee, Y.-H.;Yang, Y.-L.
臺大學術典藏 2020-01-06T03:03:59Z Band gap tuning of narrow-polydispersity two-dimensional conductive polymers with electroactive side-chains CHI-AN DAI;Yokozawa, T.;Ohta, Y.;Dai, C.-A.;Wang, L.;Leung, M.-K.;Hsu, W.-C.;Hsu, F.-Y.;Chiang, C.-J.;Lee, Y.-P.;Lee, Y.-H.;Yang, Y.-L.; Yang, Y.-L.; Lee, Y.-H.; Lee, Y.-P.; Chiang, C.-J.; Hsu, F.-Y.; Hsu, W.-C.; Leung, M.-K.; Wang, L.; Dai, C.-A.; Ohta, Y.; Yokozawa, T.; CHI-AN DAI
臺大學術典藏 2020-06-23T09:44:14Z Band gap tuning of narrow-polydispersity two-dimensional conductive polymers with electroactive side-chains Yang, Y.-L.; Lee, Y.-H.; Lee, Y.-P.; Chiang, C.-J.; Hsu, F.-Y.; Hsu, W.-C.; Leung, M.-K.; Wang, L.; Dai, C.-A.; Ohta, Y.; Yokozawa, T.; Yokozawa, T.;Ohta, Y.;Dai, C.-A.;Wang, L.;Leung, M.-K.;Hsu, W.-C.;Hsu, F.-Y.;Chiang, C.-J.;Lee, Y.-P.;Lee, Y.-H.;Yang, Y.-L.
國立交通大學 2014-12-08T15:18:51Z Band gap variation of size-controlled ZnO quantum dots synthesized by sol-gel method Lin, KF; Cheng, HM; Hsu, HC; Lin, LJ; Hsieh, WF
國立成功大學 2005-06-30 Band Gap Variation of Size-Controlled ZnO quantum dots synthesized by sol-gel method Lin, Kuo-Feng; Cheng, Hsin-Ming; Hsu, Hsu-Cheng; Lin, Li-Jiaun; Hsieh, Wen-Feng
中國醫藥大學 2014-07 Band Gap-Tunable Molybdenum Sulfi de Selenide Monolayer Alloy (Sheng-Han Su);(Yu-Te Hsu);(Yung-Huang Chang);(Ming-Hui Chiu);(Chang-Lung Hsu);(Wei-Ting Hsu);(Wen-Hao Chang);(Jr-Hau He)*;李連忠(Lain-Jomg Li)*
國立交通大學 2014-12-08T15:36:33Z Band Gap-Tunable Molybdenum Sulfide Selenide Monolayer Alloy Su, Sheng-Han; Hsu, Yu-Te; Chang, Yung-Huang; Chiu, Ming-Hui; Hsu, Chang-Lung; Hsu, Wei-Ting; Chang, Wen-Hao; He, Jr-Hau; Li, Lain-Jong
國立彰化師範大學 2002 Band Gaps and Bowing Parameters of the Strained III-nitride Semiconductor Materials Lin, Wen-Wei; Kuo, Yen-Kuang
臺大學術典藏 2005 Band gaps and the electromechanical coupling coefficient of a surface acoustic wave in a two-dimensional piezoelectric phononic crystal Wu, Tsung-Tsong; Hsu, Zin-Chen; Huang, Zi-Gui; Wu, Tsung-Tsong; Hsu, Zin-Chen; Huang, Zi-Gui
國立臺灣大學 2005 Band gaps and the electromechanical coupling coefficient of a surface acoustic wave in a two-dimensional piezoelectric phononic crystal Wu, Tsung-Tsong; Hsu, Zin-Chen; Huang, Zi-Gui
國立臺灣大學 1996-01 Band offset determination of ZnTe/Zn1-xMnxTe superlattices by using spectroscopic technique Cheng, H. H.; Nicholas, R. J.; Lawless, M. J.; Ashenford, D. E.; Lunn, B.
國立成功大學 2016-08 Band offset of vanadium-doped molybdenum oxide hole transport layer in organic photovoltaics Chang, Feng-Kuei; Huang, Yi-Chi; Jeng, Jiann-Shing; Chen, Jen-Sue
國立臺灣大學 2007 Band offsets and charge storage characteristics of atomic layer deposited high-k HfO2/TiO2 multilayers Maikap, S.; Wang, T.Y.; Tzeng, P.J.; Lin, C.H.; Tien, T. C.; Lee, L. S.; Yang, J. R.; Tsai, M.J.
臺大學術典藏 2008-01 Band Overlap via Chemical Pressure Control in Double Perovskite (Sr2-xCax)FeMoO6 (0 T x T 2.0) with TMR Effect Liu, R. S.; Chan, T. S.; Mylswamy, S.; Guo, G. Y.; Attfied, J. M.; Chen, J. P.; Liu, R. S.; Chan, T. S.; Mylswamy, S.; Guo, G. Y.; Attfied, J. M.; Chen, J. P.; LiuRS
國立臺灣大學 2008-01 Band Overlap via Chemical Pressure Control in Double Perovskite (Sr2-xCax)FeMoO6 (0 T x T 2.0) with TMR Effect Liu, R. S.; Chan, T. S.; Mylswamy, S.; Guo, G. Y.; Attfied, J. M.; Chen, J. P.
國立臺灣大學 2008 Band overlap via chemical pressure control in double perovskite (Sr2-xCax)FeMoO6 (0 ≦ x ≦ 2.0) with TMR effect Liu, R.S.; Chan, T.S.; Mylswamy, S.; Guo, G.Y.; Chen, J.M.; Attfield, J.P.
臺大學術典藏 2018-09-10T07:02:05Z Band overlap via chemical pressure control in double perovskite (Sr2-xCax)FeMoO6 (0 ≤ x ≤ 2.0) with TMR effect Liu, R.S.; Chan, T.S.; Mylswamy, S.; Guo, G.Y.; Chen, J.M.; Attfield, J.P.; Liu, R.S.; Chan, T.S.; Mylswamy, S.; Guo, G.Y.; Chen, J.M.; Attfield, J.P.; GUANG-YU GUO; RU-SHI LIU
國立成功大學 2024 Band Sampling of Hyperspectral Anomaly Detection in Effective Anomaly Space Chang;Chein-I;Lin;Chien-Yu;Hu;Fuming, Peter
國立臺灣海洋大學 2009-07-12 Band selection for hyperspectral images based on parallel particle swarm optimization schemes Yang-Lang Chang;Jyh-Perng Fang;Lena Chang;Jon Atli Benediktsson;Hsuan Ren;Kun-Shan Chen

Showing items 219526-219550 of 2348570  (93943 Page(s) Totally)
<< < 8777 8778 8779 8780 8781 8782 8783 8784 8785 8786 > >>
View [10|25|50] records per page