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Showing items 11-20 of 41  (5 Page(s) Totally)
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Institution Date Title Author
國立交通大學 2014-12-08T15:25:29Z High performance organic light-emitting devices with doped indium-tin-oxide anodes Chen, T. -H.; Wu, T. J.; Chen, J. Y.; Liou, Y.
國立交通大學 2014-12-08T15:19:08Z Current-assisted magnetization switching in submicron permalloy S-shape wires with narrow junctions Chen, YC; Lin, YA; Chen, DC; Yao, YD; Lee, SF; Liou, Y
國立交通大學 2014-12-08T15:17:52Z Vanadium-doped indium tin oxide as hole-injection layer in organic light-emitting devices Chen, TH; Liou, Y; Wu, TJ; Chen, JY
國立交通大學 2014-12-08T15:16:49Z Current detection of vortex motion in patterned S-shape wires with constrictions Chen, YC; Yao, YD; Lee, SF; Lin, YA; Chen, DC; Liou, Y
國立交通大學 2014-12-08T15:16:49Z Vortex domain wall depinning by polarized current in submicron half-ring wires Chen, YS; Cheng, KW; Yu, C; Lee, SF; Chen, DC; Wu, SH; Lin, MT; Liou, Y; Wu, KT; Yao, YD
國立交通大學 2014-12-08T15:16:26Z Effects of metal-doped indium-tin-oxide buffer layers in organic light-emitting devices Chen, TH; Wu, TJ; Chen, JY; Liou, Y
國立臺灣科技大學 2014 Photoluminescence mechanisms of metallic Zn nanospheres, semiconducting ZnO nanoballoons, and metal-semiconductor Zn/ZnO nanospheres Lin, J.-H.;Patil, R.A.;Devan, R.S.;Liu, Z.-A.;Wang, Y.-P.;Ho, C.-H.;Liou, Y.;Ma, Y.-R.
國立臺灣科技大學 2014 Photoluminescence mechanisms of metallic Zn nanospheres, semiconducting ZnO nanoballoons, and metal-semiconductor Zn/ZnO nanospheres Lin, J.-H.;Patil, R.A.;Devan, R.S.;Liu, Z.-A.;Wang, Y.-P.;Ho, C.-H.;Liou, Y.;Ma, Y.-R.
國立臺灣科技大學 2012 Room-temperature wide-range photoluminescence and semiconducting characteristics of two-dimensional pure metallic Zn nanoplates Lin, J.-H.;Huang, Y.-J.;Su, Y.-P.;Liu, C.-A.;Devan, R.S.;Ho, C.-H.;Wang, Y.-P.;Lee, H.-W.;Chang, C.-M.;Liou, Y.;Ma, Y.-R.
國立政治大學 2010 Compensation between magnetoresistance and switching current in Co/Cu/Co spin valve pillar structure 李尚凡; Cheng,K. W. ; Yu,C. ; Lin,L. K. ; Yao,Y. D. ; Liou,Y. ; Huang,J. H. ; Lee,S. F.

Showing items 11-20 of 41  (5 Page(s) Totally)
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