화학공학소재연구정보센터
검색결과 : 21건
No. Article
1 "Nonstick" Membranes Prepared by Facile Surface Fluorination for Water Purification
Tran T, Tu YC, Hall-Laureano S, Lin C, Kawy M, Lin HQ
Industrial & Engineering Chemistry Research, 59(12), 5307, 2020
2 Facile synthesis of hierarchical porous carbon nanorods for supercapacitors application
Fang L, Xie YP, Wang YY, Zhang ZW, Liu PF, Cheng NA, Liu JF, Tu YC, Zhao HB, Zhang JJ
Applied Surface Science, 464, 479, 2019
3 Improving discharge uniformity of industrial-scale very high frequency plasma sources by launching a traveling wave
Chen HL, Tu YC, Hsieh CC, Lin DL, Chang CJ, Leou KC
Current Applied Physics, 16(7), 700, 2016
4 Enhancing performance of P3HT:TiO2 solar cells using doped and surface modified TiO2 nanorods
Tu YC, Lim H, Chang CY, Shyue JJ, Su WF
Journal of Colloid and Interface Science, 448, 315, 2015
5 Enhanced light emission in vertical-structured GaN-based light-emitting diodes with trench etching and arrayed p-electrodes
Lin TH, Wang SJ, Tu YC, Hung CH, Lin CA, Lin YC, You ZS
Solid-State Electronics, 107, 30, 2015
6 Structural changes induced by thermal annealing in Cr/C multilayers
Tu YC, Zhu JT, Li HC, Jonnard P, Le Guen K, Andre JM, Chen H, Wang ZS
Applied Surface Science, 313, 341, 2014
7 Correlation between palladium chemical state and photocatalytic performance of TiO2-Pd based nanoparticles
Wu MC, Chang IC, Huang WK, Tu YC, Hsu CP, Su WF
Thin Solid Films, 570, 371, 2014
8 Effects of selenization parameters on growth characteristics of the Cu(In,Ga)Se-2 films deposited by sputtering with a Cu-In-Ga, Cu-In-Ga2Se3, or Cu-Ga-In2Se3 target and a subsequent selenization procedure at 550-700 degrees C
Kuo DH, Tu YC, Monsefi M
Applied Surface Science, 268, 22, 2013
9 Effective Sugar Nucleotide Regeneration for the Large-Scale Enzymatic Synthesis of Globo H and SSEA4
Tsai TI, Lee HY, Chang SH, Wang CH, Tu YC, Lin YC, Hwang DR, Wu CY, Wong CH
Journal of the American Chemical Society, 135(39), 14831, 2013
10 Correlating Interface Heterostructure, Charge Recombination, and Device Efficiency of Poly(3-hexyl thiophene)/TiO2 Nanorod Solar Cell
Zeng TW, Ho CC, Tu YC, Tu GY, Wang LY, Su WF
Langmuir, 27(24), 15255, 2011