Near UV LEDs made with in situ doped pn homojunction ZnO nanowire arrays MT Chen, MP Lu, YJ Wu, J Song, CY Lee, MY Lu, YC Chang, LJ Chou, ... Nano letters 10 (11), 4387-4393, 2010 | 261 | 2010 |
Microwave rapid heating for the synthesis of gold nanorods FK Liu, YC Chang, FH Ko, TC Chu Materials Letters 58 (3-4), 373-377, 2004 | 97 | 2004 |
Formation of silver nanorods by microwave heating in the presence of gold seeds FK Liu, PW Huang, YC Chang, CJ Ko, FH Ko, TC Chu Journal of crystal growth 273 (3-4), 439-445, 2005 | 89 | 2005 |
Rapid fabrication of high quality self-assembled nanometer gold particles by spin coating method FK Liu, YC Chang, FH Ko, TC Chu, BT Dai Microelectronic Engineering 67, 702-709, 2003 | 89 | 2003 |
Microwave heating for the preparation of nanometer gold particles FK Liu, CJ Ker, YC Chang, FH Ko, TC Chu, BT Dai Japanese journal of applied physics 42 (6S), 4152, 2003 | 88 | 2003 |
ZnO nanoneedles with enhanced and sharp ultraviolet cathodoluminescence peak YC Chang, LJ Chen The Journal of Physical Chemistry C 111 (3), 1268-1272, 2007 | 81 | 2007 |
Effect of oxygen plasma on the surface states of ZnO films used to produce thin-film transistors on soft plastic sheets JS Meena, MC Chu, YC Chang, HC You, R Singh, PT Liu, HPD Shieh, ... Journal of Materials Chemistry C 1 (40), 6613-6622, 2013 | 74 | 2013 |
High Response CO Sensor Based on a Polyaniline/SnO2 Nanocomposite KS Jian, CJ Chang, JJ Wu, YC Chang, CY Tsay, JH Chen, TL Horng, ... Polymers 11 (1), 184, 2019 | 70 | 2019 |
Au–Ag core–shell nanoparticles with controllable shell thicknesses for the detection of adenosine by surface enhanced Raman scattering FH Ko, MR Tai, FK Liu, YC Chang Sensors and Actuators B: Chemical 211, 283-289, 2015 | 68 | 2015 |
One-step and single source synthesis of Cu-doped ZnO nanowires on flexible brass foil for highly efficient field emission and photocatalytic applications YC Chang, PS Lin, FK Liu, JY Guo, CM Chen Journal of Alloys and Compounds 688, 242-251, 2016 | 54 | 2016 |
Controlled growth of ZnO nanopagoda arrays with varied lamination and apex angles YC Chang, WC Yang, CM Chang, PC Hsu, LJ Chen Crystal Growth and Design 9 (7), 3161-3167, 2009 | 54 | 2009 |
ZnO nanowires coated stainless steel meshes as hierarchical photocatalysts for catalytic photodegradation of four kinds of organic pollutants FH Ko, WJ Lo, YC Chang, JY Guo, CM Chen Journal of Alloys and Compounds 678, 137-146, 2016 | 52 | 2016 |
Construction of ZnIn2S4/ZnO heterostructures with enhanced photocatalytic decomposition and hydrogen evolution under blue LED irradiation YC Chang, CL Tasi, FH Ko International Journal of Hydrogen Energy 46 (17), 10281-10292, 2021 | 50 | 2021 |
Complex ZnO/ZnS nanocable and nanotube arrays with high performance photocatalytic activity YC Chang Journal of Alloys and Compounds 664, 538-546, 2016 | 49 | 2016 |
Construction of MoS2/ZnO heterostructures as highly efficient photocatalysts for enhanced visible-light decomposition of methylene blue and hydrogen evolution YC Chang, YW Lin, MY Lu Materials Chemistry and Physics 266, 124560, 2021 | 48 | 2021 |
Construction of CuO/In 2 S 3/ZnO heterostructure arrays for enhanced photocatalytic efficiency YC Chang, JY Guo, CM Chen, HW Di, CC Hsu Nanoscale 9 (35), 13235-13244, 2017 | 48 | 2017 |
Microwave-assisted synthesis of silver nanorods FK Liu, PW Huang, YC Chang, FH Ko, TC Chu Journal of materials research 19 (2), 469-473, 2004 | 47 | 2004 |
Complex SnO2 nanoparticles and nanosheets with enhanced visible-light photocatalytic activity YC Chang, JC Lin, SY Chen, LY Hung, YR Lin, CY Chen Materials Research Bulletin 100, 429-433, 2018 | 46 | 2018 |
Growth of Cu-doped ZnO nanowires or ZnO-CuO nanowires on the same brass foil with high performance photocatalytic activity and stability CM Chou, YC Chang, PS Lin, FK Liu Materials Chemistry and Physics 201, 18-25, 2017 | 43 | 2017 |
Combining optical lithography with rapid microwave heating for the selective growth of Au/Ag bimetallic core/shell structures on patterned silicon wafers FK Liu, PW Huang, YC Chang, FH Ko, TC Chu Langmuir 21 (6), 2519-2525, 2005 | 43 | 2005 |