1 |
Hydrothermally fabricated TiO2 heterostructure boosts efficiency of MAPbI3 perovskite solar cells Nguyen MH, Yoon SH, Kim KS Journal of Industrial and Engineering Chemistry, 106, 382, 2022 |
2 |
Synergistic effect of Ag/MoS2/TiO2 heterostructure arrays on enhancement of photoelectrochemical and photocatalytic performance Liu Z, Xu K, Yu H, Sun ZQ International Journal of Energy Research, 45(5), 6850, 2021 |
3 |
Analysis on growth mechanism of TiO2 nanorod structures on FTO glass in hydrothermal process Nguyen MH, Kim KS Journal of Industrial and Engineering Chemistry, 104, 445, 2021 |
4 |
Effects of surface lithiated TiO2 nanorods on room-temperature properties of polymer solid electrolytes Hua S, Li JL, Jing MX, Chen F, Ju BW, Tu FY, Shen XQ, Qin SB International Journal of Energy Research, 44(8), 6452, 2020 |
5 |
NH2-MIL-125(Ti)/TiO2 nanorod heterojunction photoanodes for efficient photoelectrochemical water splitting Yoon JW, Kim DH, Kim JH, Jang HW, Lee JH Applied Catalysis B: Environmental, 244, 511, 2019 |
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Controllable TiO2 core-shell phase heterojunction for efficient photoelectrochemical water splitting under solar light Wei N, Liu Y, Feng M, Li ZX, Chen SG, Zheng YB, Wang DA Applied Catalysis B: Environmental, 244, 519, 2019 |
7 |
Synthesis of SPR Au/BiVO4 quantum dot/rutile-TiO2 nanorod array composites as efficient visible-light photocatalysts to convert CO2 and mechanism insight Shi QJ, Li ZJ, Chen L, Zhang XL, Han WH, Xie MZ, Yang JL, Jing LQ Applied Catalysis B: Environmental, 244, 641, 2019 |
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Solar hydrogen peroxide production on carbon nanotubes wired to titania nanorod arrays catalyzing As(III) oxidation Choi SY, Kim S, Lee KJ, Kim JY, Han DS, Park H Applied Catalysis B: Environmental, 252, 55, 2019 |
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High sub-band gap response of TiO2 nanorod arrays for visible photoelectrochemical water oxidation Liu BS, Yang JJ, Wang JY, Zhao XJ, Nakata K Applied Surface Science, 465, 192, 2019 |
10 |
Core-shell structure of ZnO@TiO2 nanorod arrays as electron transport layer for perovskite solar cell with enhanced efficiency and stability Zhong M, Chai L, Wang YJ Applied Surface Science, 464, 301, 2019 |