CrossRef 9 Jin-nouchi Y, Naya S, Tada H: Quantum-dot-sensitized

CrossRef 9. Jin-nouchi Y, Naya S, Tada H: Quantum-dot-sensitized solar cell using a photoanode prepared by in situ photodeposition of CdS on nanocrystallineTiO 2 films. J Phys Chem C 2010, 114:16837–16842.CrossRef 10. Fujii M, find more Nagasuna K, Fujishima M, Akita T, Tada H: Photodeposition of CdS quantum dots on TiO 2 : preparation, characterization, and reaction mechanism. J Phys Chem C 2009, 113:16711–16716.CrossRef 11. Tada H, Fujishima M, Kobayashi H: Photodeposition of metal sulfide quantum dots on titanium (IV) dioxide and the applications to solar energy conversion. Chem Soc Rev 2011, 40:4232–4243.CrossRef 12. Sun WT,

Yu Y, Pan HY, Gao XF, Chen Q, Peng LM: CdS quantum dots sensitized TiO 2 nanotube-array photoelectrodes. J Am Chem Soc 2008, 130:1124–1125.CrossRef 13. Wang H, Bai Y, Zhang H, Zhang Z, Li J, Guo L: CdS quantum dot-sensitized TiO 2 nanorod array on transparent conductive glass photoelectrodes. J Phys Chem C 2010, 114:16451–16455.CrossRef 14. Xie Y, Heo SH, Kim YN, Yoo SH, Cho SO: Synthesis and visible-light-induced catalytic activity of Napabucasin manufacturer Ag 2 S-coupled TiO 2 nanoparticles and nanowires. Nanotechnology 2010, 21:015703.CrossRef 15. Kryukov AI, Stroyuk AL, Zin’chuk NN, Korzhak AV, Kuchmii SY: Optical and catalytic properties of Ag

2 S nanoparticles. J Mol Catal A: Chem 2004, 221:209–221.CrossRef 16. Kitova S, Eneva J, Panov A, Haefke H: Infrared photography based on vapor-deposited silver sulfide thin films. J Imaging Sci Technol 1994, 38:484–488. 17. Wang H,

Qi L: Controlled synthesis of Ag 2 S, Ag 2 Se, and Ag nanofibers by using a general sacrificial template and their application in electronic device fabrication. Adv Funct Mater 2008, 18:1249–1256.CrossRef 18. Tang J, Sargent EH: Infrared colloidal quantum dots for photovoltaics: fundamentals and recent progress. Adv Mater 2011, 23:12–29.CrossRef 19. Vogel R, Hoyer P, Weller H: Quantum-sized PbS, CdS, Ag 2 S, Sb 2 S 3 , and Bi 2 S 3 particles as sensitizers for various nanoporous wide-bandgap semiconductors. J Phys Chem 1994, 98:3183–3188.CrossRef 20. Tubtimtae A, Wu KL, Tung Ribonucleotide reductase HY, Lee MW, Wang GJ: Ag 2 S quantum dot-sensitized solar cells. Electrochem Commun 2010, 12:1158–1160.CrossRef 21. Chen C, Xie Y, Ali G, Yoo SH, Cho SO: Improved conversion efficiency of Ag 2 S quantum dot-sensitized solar cells based on TiO 2 nanotubes with a ZnO recombination barrier layer. Nanoscale Res Lett 2011, 6:462.CrossRef 22. Wu JJ, Chang RC, Chen DW, Wu CT: Visible to near-infrared light harvesting in Ag 2 S nanoparticles/ZnO nanowire array photoanodes. Nanoscale 2012, 4:1368–1372.CrossRef 23. Xie Y, Yoo SH, Chen C, Cho SO: Ag2S quantum dots-sensitized TiO 2 nanotube array photoelectrodes. Mat Sci Eng B 2012, 177:106–111.CrossRef 24. Lee YL, Huang BM, Chien HT: Highly efficient CdSe-sensitized TiO 2 photoelectrode for quantum-dot-sensitized solar cell applications. Chem Mater 2008, 20:6903–6905.CrossRef 25.

Comments are closed.