| 國立臺灣科技大學 |
2014 |
Low-temperature Cu-to-Cu bonding using silver nanoparticles stabilised by saturated dodecanoic acid
|
Li, W.-H.;Lin, P.-S.;Chen, C.-N.;Dong, T.-Y.;Tsai, C.-H.;Kung, W.-T.;Song, J.-M.;Chiu, Y.-T.;Yang, P.-F. |
| 國立交通大學 |
2019-12-13T01:12:49Z |
Low-temperature Cu-to-Cu direct bonding enabled by highly (111)-oriented and nanotwinned Cu
|
Chen, Chih; Juang, Jing-Ye; Chang, Shih Yang; Shie, Kai Cheng; Li, Yu Jin; Tu, K. N. |
| 國立交通大學 |
2014-12-08T15:14:37Z |
Low-temperature CVD growth of carbon nanotubes for field emission application
|
Chen, Kuang-Chung; Chen, Chia-Fu; Lee, Jen-Hao; Wu, Tai-Lin; Hwang, Chian-Liang; Tai, Nyan-Hwa; Hsiao, Ming-Chun |
| 國立交通大學 |
2019-04-02T06:01:04Z |
Low-temperature CVD growth of carbon nanotubes for field emission application
|
Chen, Kuang-Chung; Chen, Chia-Fu; Lee, Jen-Hao; Wu, Tai-Lin; Hwang, Chian-Liang; Tai, Nyan-Hwa; Hsiao, Ming-Chun |
| 元智大學 |
2009-07 |
Low-Temperature Cyclonic Plasma Created at Atmospheric Pressure
|
黃駿; Chi-Hung Liu; Shin-Yi Wu; Tai-Hung Chen; Jyh-Tong Teng; Chun-Hsien Su; Chih-Ming Chen |
| 元智大學 |
2009-07 |
Low-Temperature Cyclonic Plasma Created at Atmospheric Pressure
|
黃駿; Chi-Hung Liu; Shin-Yi Wu; Tai-Hung Chen; Jyh-Tong Teng; Chun-Hsien Su; Chih-Ming Chen |
| 中原大學 |
2009-07 |
Low-Temperature Cyclonic Plasma Created at Atmospheric Pressure
|
Chun Huang; Chi-Hung Liu; Shin-Yi Wu; Tai-Hung Chen; Jyh-Tong Teng; Chun-Hsien Su; and Chih-Ming Chen |
| 國立成功大學 |
2024-06 |
Low-Temperature Deposition of Diamond Films by MPCVD with Graphite Paste Additive
|
Guu;Stephen, Yang-En;Lin;Fu-Cheng;Chien;Yu-Sen;Jhang;Alen;Tzeng;Yon-Hua |
| 國立成功大學 |
2021 |
Low-temperature deposition of transparent conducting films applied to flexible electrochromic devices
|
Li, K.-D.;Chen, P.-W.;Chang, K.-S. |
| 國立交通大學 |
2014-12-08T15:03:46Z |
LOW-TEMPERATURE DIAMOND GROWTH AND PLASMA SPECIES ANALYSIS USING METHANE-CARBON DIOXIDE GAS-MIXTURES
|
CHEN, CF; CHEN, SH; HONG, TM; WANG, DP |
| 國立交通大學 |
2019-04-03T06:38:02Z |
Low-temperature direct copper-to-copper bonding enabled by creep on (111) surfaces of nanotwinned Cu
|
Liu, Chien-Min; Lin, Han-Wen; Huang, Yi-Sa; Chu, Yi-Cheng; Chen, Chih; Lyu, Dian-Rong; Chen, Kuan-Neng; Tu, King-Ning |
| 國立交通大學 |
2014-12-08T15:35:49Z |
Low-temperature direct copper-to-copper bonding enabled by creep on highly (111)-oriented Cu surfaces
|
Liu, Chien-Min; Lin, Han-Wen; Chu, Yi-Cheng; Chen, Chih; Lyu, Dian-Rong; Chen, Kuan-Neng; Tu, K. N. |
| 國立交通大學 |
2017-04-21T06:48:34Z |
Low-Temperature Direct Wafer Bonding for III-V Compound Semiconductors to Nanometer-scale Grating Arrays
|
Chen, Bai-Ci; Wu, Yu-Chang; Huang, Jen-Hung; Kuo, Hao-Chung; Lin, Chien-Chung |
| 國立臺灣大學 |
2010 |
Low-temperature dynamics of water confined in a hydrophobic mesoporous material
|
Chu, Xiang-qiang; Liu, Kao-Hsiang; Tyagi, Madhu Sudan; Mou, Chung-Yuan; Chen, Sow-Hsin |
| 臺大學術典藏 |
2018-09-10T08:09:45Z |
Low-temperature dynamics of water confined in a hydrophobic mesoporous material
|
Chu, X.-Q.;Liu, K.-H.;Tyagi, M.S.;Mou, C.-Y.;Chen, S.-H.; Chu, X.-Q.; Liu, K.-H.; Tyagi, M.S.; Mou, C.-Y.; Chen, S.-H.; CHUNG-YUAN MOU |
| 中原大學 |
2002 |
Low-temperature electrical characterizations of InAs1-x-ySbyPx photodiodes fabricated by liquid-phase epitaxy
|
Wu-Yih Uen;Sen-Mao Liao;Chih-Hung Wu;Chia-Te Lin |
| 國立臺灣科技大學 |
2016 |
Low-temperature electrochemical characterization of sputtered yttria-stabilized zirconia thin film on silicon substrate
|
Hua, C.-H;Chou, Chou C.-C. |
| 臺大學術典藏 |
2018-09-10T08:42:13Z |
Low-temperature electroluminescent behaviors of InGaN/GaN-based nanorod light emitting diode arrays
|
Liang-Yi Chen; Chun-Hsiang Chang; Ying-Yuan Huang; JianJang Huang; JIAN-JANG HUANG |
| 國立交通大學 |
2014-12-08T15:05:25Z |
Low-temperature electron dephasing time in AuPd revisited
|
Lin, J. J.; Lee, T. C.; Wang, S. W. |
| 國立臺灣大學 |
2009-08 |
Low-temperature electronic structures and intramolecular interaction of oligofluorenes studied by synchrotron photoemission spectroscopy
|
Lee, Guan-Ru; Chen, Yu-Hung; Lin, Chang-Ting; Wu, Chih-I; Pi, Tun-Wen; Wu, Chung-Chih; Wong, Ken-Tsung |
| 臺大學術典藏 |
2018-09-10T07:38:17Z |
Low-temperature electronic structures and intramolecular interaction of oligofluorenes studied by synchrotron photoemission spectroscopy
|
Lee, G.-R.;Chen, Y.-H.;Lin, C.-T.;Wu, C.-I.;Pi, T.-W.;Wu, C.-C.;Wong, K.-T.Lee, Guan-Ru;Chen, Yu-Hung;Lin, Chang-Ting;Wu, Chih-I;Pi, Tun-Wen;Wu, Chung-Chih;Wong, Ken-Tsung; Lee, G.-R.; Chen, Y.-H.; Lin, C.-T.; Wu, C.-I.; Pi, T.-W.; Wu, C.-C.; Wong, K.-T.Lee, Guan-Ru; Chen, Yu-Hung; Lin, Chang-Ting; Wu, Chih-I; Pi, Tun-Wen; Wu, Chung-Chih; Wong, Ken-Tsung; Wu, Chih-I; Wu, Chung-Chih; Wong, Ken-Tsung |
| 國立臺灣大學 |
2010 |
Low-temperature embossing technique for fabrication of large-area polymeric microlens array with supercritical carbon dioxide
|
Wu, Jing-Tang; Chu, Ying-Ta; Yang, Sen-Yeu; Li, Chen-Chung |
| 臺大學術典藏 |
2021-11-22T08:09:05Z |
Low-temperature embossing technique for fabrication of large-area polymeric microlens array with supercritical carbon dioxide
|
Jing-Tang Wu; Ying-Ta Chu; Sen-Yeu Yang; Chen-Chung Li; SEN-YEU YANG |
| 國立臺灣大學 |
2007-02 |
Low-temperature epitaxial growth of vertical In2O3 nanowires on A-plane sapphire with hexagonal cross-section
|
Chen, CJ; Xu, WL; Chern, MY |
| 國立臺灣大學 |
2007 |
Low-temperature epitaxial growth of vertical In2O3 nanowires on A-plane sapphire with hexagonal cross-section
|
Chen, C. J.; Xu, W. L.; Chern, M. Y |
| 臺大學術典藏 |
2018-09-10T06:23:58Z |
Low-temperature epitaxial growth of vertical in2O3 nanowires on a-plane sapphire with hexagonal cross-section
|
Chen, C.-J.; Xu, W.-L.; Chern, M.-Y.; MING-YAU CHERN |
| 國立交通大學 |
2014-12-08T15:04:11Z |
LOW-TEMPERATURE EPITAXIAL-GROWTH OF SILICON AND SILICON-GERMANIUM ALLOY BY ULTRAHIGH-VACUUM CHEMICAL-VAPOR-DEPOSITION
|
JUNG, TG; CHANG, CY; CHANG, TC; LIN, HC; WANG, T; TSAI, WC; HUANG, GW; WANG, PJ |
| 國立交通大學 |
2014-12-08T15:03:52Z |
LOW-TEMPERATURE EPITAXY OF GAAS BY METALORGANIC CHEMICAL-VAPOR-DEPOSITION
|
CHEN, WK; CHANG, CS; CHEN, WC |
| 國立東華大學 |
2006 |
Low-Temperature Fabrication and characterization of Ge-on-Insulator structures
|
林楚軒; C.-Y. Yu; C.-Y. Lee;C.-H. Lin; C. W. Liu |
| 國立臺灣大學 |
2006 |
Low-Temperature Fabrication and characterization of Ge-on-Insulator structures
|
Yu, C.-Y.; Lee, C.-Y.; Lin, C.-H.; Liu, C. W. |
| 臺大學術典藏 |
2018-09-10T05:58:49Z |
Low-temperature fabrication and characterization of Ge-on-insulator structures
|
Yu, C.-Y.; Lee, C.-Y.; Lin, C.-H.; Liu, C.W.; CHEE-WEE LIU |
| 國立交通大學 |
2014-12-08T15:39:20Z |
Low-temperature fabrication of carbon nanofibers by self-assembling of polycyclic aromatic hydrocarbon molecules
|
Suen, SC; Whang, WT; Wu, BW; Lai, YF |
| 國立臺灣海洋大學 |
2011-05-14 |
Low-temperature fabrication of nanocrystalline silicon thin films on mechanically flexible substrates by vacuum arc discharge
|
Jeff T.H. Tsai;Tsung-Ying Lin;Daniel H.C. Chua |
| 元智大學 |
Oct-21 |
Low-temperature flexible micro hydrogen sensor embedded in a proton battery for real-time microscopic diagnosis
|
Chi-Yuan Lee; Chia-Hung Chen; Chin-Yuan Yang; John-Shong Cheong; Yun-Hsiu Chien; Yi-Chuan Lin |
| 臺大學術典藏 |
2018-09-10T08:09:59Z |
Low-temperature flexible photoanode and net-like Pt counter electrode for improving the performance of dye-sensitized solar cells
|
Lin, L.-Y.; Nien, P.-C.; Lee, C.-P.; Tsai, K.-W.; Yeh, M.-H.; Vittal, R.; Ho, K.-C.; KUO-CHUAN HO |
| 臺大學術典藏 |
2018-09-10T09:18:19Z |
Low-temperature flexible Ti/TiO 2 photoanode for dye-sensitized solar cells with binder-free TiO 2 paste
|
Lin, L.-Y.; Lee, C.-P.; Tsai, K.-W.; Yeh, M.-H.; Chen, C.-Y.; Vittal, R.; Wu, C.-G.; Ho, K.-C.; KUO-CHUAN HO |
| 國立成功大學 |
2011-10 |
Low-temperature formation of nanocrystalline SiC particles and composite from three-layer Si/C/Si film for the novel enhanced white photoluminescence
|
Chung, C. K.; Chen, T. Y.; Lai, C. W. |
| 國立交通大學 |
2014-12-08T15:03:57Z |
LOW-TEMPERATURE FORMATION OF PALLADIUM SILICIDED SHALLOW P(+)N JUNCTIONS USING IMPLANT THROUGH METAL TECHNOLOGY
|
LIN, CT; CHOU, PF; CHENG, HC |
| 國立交通大學 |
2014-12-08T15:11:52Z |
Low-temperature formation of self-assembled 1,5-diaminoanthraquinone nanofibers: Substrate effects and field emission characteristics
|
Huang, Kuo-Jung; Hsiao, Yu-Sheng; Whang, Wha-Tzong |
| 國立交通大學 |
2014-12-08T15:03:24Z |
LOW-TEMPERATURE FORMATION OF SHALLOW P(+)N JUNCTIONS BY BF2+ IMPLANTATION INTO THIN PD2SI FILMS ON SI SUBSTRATES
|
LIN, CT; MA, KP; CHOU, PF; CHENG, HC |
| 國立成功大學 |
2005-09 |
Low-temperature formation of well-aligned nanocrystalline Si/SiOx composite nanowires
|
Wong, Te-Chi; Yu, Chi-Chung; Wu, Jih-Jen |
| 國立交通大學 |
2014-12-08T15:28:53Z |
Low-temperature grown graphene films by using molecular beam epitaxy
|
Lin, Meng-Yu; Guo, Wei-Ching; Wu, Meng-Hsun; Wang, Pro-Yao; Liu, Te-Huan; Pao, Chun-Wei; Chang, Chien-Cheng; Lee, Si-Chen; Lin, Shih-Yen |
| 臺大學術典藏 |
2018-09-10T09:22:37Z |
Low-temperature grown graphene films by using molecular beam epitaxy
|
Lin, M.-Y.; Guo, W.-C.; Wu, M.-H.; Wang, P.-Y.; Liu, T.-H.; Pao, C.-W.; Chang, C.-C.; Lee, S.-C.; Lin, S.-Y.; SI-CHEN LEE |
| 臺大學術典藏 |
2020-04-28T07:11:30Z |
Low-temperature grown graphene films by using molecular beam epitaxy
|
Lin, M.-Y.; Guo, W.-C.; Wu, M.-H.; Wang, P.-Y.; Liu, T.-H.; Pao, C.-W.; Chang, C.-C.; Lee, S.-C.; Lin, S.-Y.; CHIEN-CHENG CHANG |
| 臺大學術典藏 |
2021-06-22T02:00:30Z |
Low-temperature grown single-crystal Si on epi Ge(001)-2 × 1 and its oxidation: Electronic structure study via synchrotron radiation photoemission
|
Cheng, Y.-T.;Wan, H.-W.;Cheng, C.-K.;Cheng, C.-P.;Kwo, J.R.;Hong, M.;Pi, T.-W.; Cheng, Y.-T.; Wan, H.-W.; Cheng, C.-K.; Cheng, C.-P.; Kwo, J.R.; Hong, M.; Pi, T.-W.; CHIA-KUEN CHENG |
| 國立成功大學 |
2001-11-01 |
Low-temperature growth and field emission of aligned carbon nanotubes by chemical vapor deposition
|
Shyu, Yih-Ming; Hong, Franklin Chau-Nan |
| 國立交通大學 |
2014-12-08T15:17:02Z |
Low-temperature growth mechanism of SW-NTs networks by buffer layer-assisted MPCVD
|
Wang, W. H.; Peng, Y. R.; Chuang, P. K.; Kuo, C. T. |
| 國立交通大學 |
2014-12-08T15:04:03Z |
LOW-TEMPERATURE GROWTH OF DIAMOND FILMS BY MICROWAVE PLASMA CHEMICAL-VAPOR-DEPOSITION USING CH4+CO2 GAS-MIXTURES
|
CHEN, CF; CHEN, SH; KO, HW; HSU, SE |
| 國立成功大學 |
2014-05 |
Low-temperature growth of gallium nitride films by inductively coupled-plasma-enhanced reactive magnetron sputtering
|
Ni, Chih-Jui; Hong, Franklin Chau-Nan |
| 國立交通大學 |
2019-04-03T06:42:03Z |
Low-Temperature Growth of Hydrogenated Amorphous Silicon Carbide Solar Cell by Inductively Coupled Plasma Deposition Toward High Conversion Efficiency in Indoor Lighting
|
Kao, Ming-Hsuan; Shen, Chang-Hong; Yu, Pei-chen; Huang, Wen-Hsien; Chueh, Yu-Lun; Shieh, Jia-Min |