Results 1-14 of 14 (Search time: 0.018 seconds).
Issue Date | Title | Author(s) | Source | scopus | WOS | Fulltext/Archive link | |
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1 | 2017 | Environment-insensitive and gate-controllable photocurrent enabled by bandgap engineering of MoS 2 junctions | Shih F.-Y.; Wu Y.-C.; Shih Y.-S.; Shih M.-C.; Wu T.-S.; Ho P.-H.; Chen C.-W.; Chen Y.-F.; Chiu Y.-P.; CHUN-WEI CHEN ; YANG-FANG CHEN ; YA-PING CHIU | Scientific Reports | 10 | 15 | |
2 | 2014 | Residue-free fabrication of high-performance graphene devices by patterned PMMA stencil mask | Shih F.-Y.; Chen S.-Y.; Liu C.-H.; Ho P.-H.; Wu T.-S.; Chen C.-W.; Chen Y.-F.; YANG-FANG CHEN ; CHUN-WEI CHEN | AIP Advances | 8 | 11 | |
3 | 2013 | Biologically inspired graphene-chlorophyll phototransistors with high gain | Chen S.-Y.; Lu Y.-Y.; Shih F.-Y.; Ho P.-H.; YANG-FANG CHEN ; CHUN-WEI CHEN ; YIT-TSONG CHEN ; Wang, Wei-Hua | Carbon | 91 | 87 | |
4 | 2012 | Enhancement of laser action in ZnO nanorods assisted by surface plasmon resonance of reduced graphene oxide nanoflakes | Cheng S.-H.; Yeh Y.-C.; Lu M.-L.; Chen C.-W.; CHUN-WEI CHEN ; YANG-FANG CHEN | Optics Express | 23 | 21 | |
5 | 2011 | Effects of bifunctional linker on the optical properties of ZnO nanocolumn-linker-CdSe quantum dots heterostructure | Zeng T.-W.; Liu I.-S.; Huang K.-T.; Liao H.-C.; Chien C.-T.; Wong D.K.P.; Chen C.-W. ; Wu J.-J.; Chen Y.-F. ; WEI-FANG SU ; CHUN-WEI CHEN | Journal of Colloid and Interface Science | |||
6 | 2010 | Manipulation of nanoscale phase separation and optical properties of P3HT/PMMA polymer blends for photoluminescent electron beam resist | Wu M.-C.; Liao H.-C.; Chou Y.; Hsu C.-P.; Yen W.-C.; Chuang C.-M.; Lin Y.-Y.; Chen C.-W.; Chen Y.-F.; YANG-FANG CHEN ; WEI-FANG SU ; CHUN-WEI CHEN | Journal of Physical Chemistry B | 26 | 26 | |
7 | 2009 | Using scanning probe microscopy to study the effect of molecular weight of poly(3-hexylthiophene) on the performance of poly(3-hexylthiophene):TiO2 nanorod photovoltaic devices | Wu M.-C.; Lo H.-H.; Liao H.-C.; Chen S.; Lin Y.-Y.; Yen W.-C.; Zeng T.-W.; Chen Y.-F.; Chen C.-W.; YANG-FANG CHEN ; WEI-FANG SU ; CHUN-WEI CHEN | Solar Energy Materials and Solar Cells | 18 | 17 | |
8 | 2009 | Nanostructured polymer blends (P3HT/PMMA): Inorganic titania hybrid photovoltaic devices | Wu M.-C.; Liao H.-C.; Lo H.-H.; Chen S.; Lin Y.-Y.; Yen W.-C.; Zeng T.-W.; Chen C.-W.; Chen Y.-F.; YANG-FANG CHEN ; WEI-FANG SU ; CHUN-WEI CHEN | Solar Energy Materials and Solar Cells | 31 | 29 | |
9 | 2009 | Enhancing light absorption and carrier transport of P3HT by doping multi-wall carbon nanotubes | Wu M.-C.; Lin Y.-Y.; Chen S.; Liao H.-C.; Wu Y.-J.; Chen C.-W. ; YANG-FANG CHEN ; WEI-FANG SU | Chemical Physics Letters | 96 | 91 | |
10 | 2008 | Polarization-dependent confocal Raman microscopy of an individual ZnO nanorod | Chien, C.-T.; Wu, M.-C.; Chen, C.-W.; Yang, H.-H.; Wu, J.-J.; Su, W.-F.; Lin, C.-S.; Chen, Y.-F.; YANG-FANG CHEN ; WEI-FANG SU ; CHUN-WEI CHEN | Applied Physics Letters | |||
11 | 2008 | Enhancing photoluminescence quenching and photoelectric properties of CdSe quantum dots with hole accepting ligands | Liu, I-Shuo; YANG-FANG CHEN ; WEI-FANG SU ; CHUN-WEI CHEN | Journal of Materials Chemistry | 224 | ||
12 | 2008 | Nanoscaled morphology and performance of molecular-weight dependent poly(3-hexylthiophene)/TiO2 nanorod hybrid solar cells | Wu, Ming-Chung; Lo, Hsi-Hsing; Lin, Yi-Shen; Chen, Chun-Wei ; Yen, Wei-Che; Lin, Yun-Yue; Chen, Yang-Fang ; Su, Wei-Fang | Journal of Materials Chemistry | |||
13 | 2008 | Nanoscale morphology and performance of molecular-weight-dependent poly(3-hexylthiophene)/TiO2 nanorod hybrid solar cells | Wu M.-C.; Chang C.-H.; Lo H.-H.; Lin Y.-S.; Lin Y.-Y.; Yen W.-C.; Su W.-F.; Chen Y.-F.; YANG-FANG CHEN ; WEI-FANG SU ; CHUN-WEI CHEN | Journal of Materials Chemistry | 33 | 33 | |
14 | 2006 | Sharp infrared emission from single-crystalline indium nitride nanobelts prepared using guided-stream thermal chemical vapor deposition | Hu, M.-S.; Wang, W.-M.; Chen, T.T.; Hong, L.-S.; Chen, C.-W.; Chen, C.-C.; Chen, Y.-F.; Chen, K.-H.; YANG-FANG CHEN ; CHUN-WEI CHEN | Advanced Functional Materials | 63 | 55 |