References
- A. Fujishima and K. Honda, Electrochemical photolysis of water at a semiconductor electrode, Nature, 238 (1972) 37-38. https://doi.org/10.1038/238037a0
-
K. Zhu, N.R. Neale, A. Miedaner, and A.J. Frank, Enhanced charge-collection efficiencies and light scattering in dye-sensitized solar cells using oriented
$TiO_{2}$ nanotubes arrays, Nano Letters, 7(2006)69-74. -
J.H. Park, S. Kim, and A.J. Bard, Novel Carbon-Doped
$TiO_{2}$ Nanotube Arrays with High Aspect Ratios for Efficient Solar Water Splitting, Nano Letters, 6 (2005) 24-28. -
W.-T. Sun, Y. Yu, H.-Y. Pan, X.-F. Gao, Q. Chen, and L.-M. Peng, CdS quantum dots sensitized
$TiO_{2}$ nanotube-array photoelectrodes, Journal of the American Chemical Society, 130(2008)1124-1125. https://doi.org/10.1021/ja0777741 -
D.R. Baker and P.V. Kamat, Photosensitization of
$TiO_{2}$ nanostructures with CdS quantum dots: particulate versus tubular support architectures, Advanced Functional Materials, 19(2009)805-811. https://doi.org/10.1002/adfm.200801173 -
K. Shin, S.i. Seok, S.H. Im, and J.H. Park, CdS or CdSe decorated
$TiO_{2}$ nanotube arrays from spray pyrolysis deposition: use in photoelectrochemical cells, Chemical Communications, 46(2010)2385-2387. https://doi.org/10.1039/b923022j -
Y.-Y. Song, Z.-D. Gao, and P. Schmuki, Highly uniform Pt nanoparticle decoration on
$TiO_{2}$ nanotube arrays: a refreshable platform for methanol electrooxidation, Electrochemistry Communications, 13(2011) 290-293. https://doi.org/10.1016/j.elecom.2011.01.006 -
S. Banerjee, S.K. Mohapatra, P.P. Das, and M. Misra, Synthesis of coupled semiconductor by filling 1D
$TiO_{2}$ nanotubes with CdS, Chemistry of Materials, 20(2008)6784-6791. https://doi.org/10.1021/cm802282t -
J.M. Macak, B.G. Gong, M. Hueppe, and P. Schmuki, Filling of
$TiO_{2}$ nanotubes by self-doping and electrodeposition, Advanced Materials, 19(2007)3027-3031. https://doi.org/10.1002/adma.200602549 -
J.A. Seabold, K. Shankar, R.H.T. Wilke, M. Paulose, O.K. Varghese, C.A. Grimes, and K.-S. Choi, Photoelectrochemical properties of heterojunction CdTe/
$TiO_{2}$ electrodes constructed using highly ordered$TiO_{2}$ nanotube arrays, Chemistry of Materials, 20(2008)5266-5273. https://doi.org/10.1021/cm8010666 -
N.K. Shrestha, S.J. Yoon, D.Y. Lee, M. Lee, I. Lim, M. Sung, H. Ahn, and S.-H. Han, A facile approach for decorating quantum dots deep inside of anodically grown self-organized
$TiO_{2}$ nanotubes, physica status solidi(RRL)-Rapid Research Letters, 5(2011)141-143. -
M. Nanu, J. Schoonman, and A. Goossens, Solar-energy conversion in
$TiO_{2}$ /$CuInS_{2}$ nanocomposites, Advanced Functional Materials, 15(2005)95-100. https://doi.org/10.1002/adfm.200400150 -
S.M. Lee, S. Ikeda, T. Yagi, T. Harada, A. Ennaoui, and M. Matsumura, Fabrication of
$CuInS_{2}$ films from electrodeposited Cu/In bilayers: effects of preheat treatment on their structural, photoelectrochemical and solar cell properties, Physical Chemistry Chemical Physics, 13(2011)6662-6669. https://doi.org/10.1039/c0cp02204g - P. Mahawela, G. Sivaraman, S. Jeedigunta, J. Gaduputi, M. Ramalingam, S. Subramanian, S. Vakkalanka, C.S. Ferekides, and D.L. Morel, II-VI compounds as the top absorbers in tandem solar cell structures, Materials Science and Engineering B, 116 (2005) 283-291. https://doi.org/10.1016/j.mseb.2004.05.054
- S. Ikeda, T. Nakamura, T. Harada, and M. Matsumura, Multicomponent sulfides as narrow gap hydrogen evolution photocatalysts, Physical Chemistry Chemical Physics, 12 (2010) 13943-13949. https://doi.org/10.1039/c0cp00267d
-
J.-H. Yun, Y.H. Ng, C. Ye, A.J. Mozer, G.G. Wallace, and R. Amal, Sodium fluoride-assisted modulation of anodized
$TiO_{2}$ nanotube for dye-sensitized solar cells application, ACS Applied Materials & Interfaces, 3(2011)1585-1593. https://doi.org/10.1021/am200147b -
Y. Hou, X.Y. Li, Q.D. Zhao, X. Quan, and G.H. Chen, Fabrication of
$Cu_{2}O$ /$TiO_{2}$ nanotube heterojunction arrays and investigation of its photoelectrochemical behavior, AIP, 2009. -
Y. Lai, Z. Lin, Z. Chen, J. Huang, and C. Lin, Fabrication of patterned CdS/
$TiO_{2}$ heterojunction by wettability templateassistedelectrodeposition, Materials Letters, 64(2010)1309-1312. https://doi.org/10.1016/j.matlet.2010.03.017 -
R. Klenk, J. Klaer, R. Scheer, M.C. Lux-Steiner, I. Luck, N. Meyer, and U. Rühle, Solar cells based on
$CuInS_{2}$ -an overview, Thin Solid Films, 480-481(2005) 509-514. https://doi.org/10.1016/j.tsf.2004.11.042