References |
Xu, Y., Zhuang, Y., Fu, X., (2010) J. Phys. Chem, 114, p. 2669; Lee, S., Sigmund, W., (2003) Chem. Comm, 2003, p. 780; Chen, J., Li, B., Zheng, J., Zhao, J., Zhu, Z., (2012) J. Phys. Chem, 116, p. 14848; Rempel, A.A., Kozlova, E.A., Gorbunova, T.I., Cherepanova, S.V., Gerasimov, E.Y., Kozhevnikova, N.S., Valeeva, A.A., Shchipunov, Y.A., (2015) Catal. Commun, 68, p. 61; Jung, J.Y., Lee, D., Lee, Y.S., (2015) J. Alloys Compd, 622, p. 651; Zhou, H., Liu, L., Wang, X., Liang, F., Bao, S., Lv, D., Tang, Y., Jia, D., (2013) J. Mater. Chem. A, 1, p. 8525; Cao, F.F., Guo, Y.G., Zheng, S.F., Wu, X.L., Jiang, L.Y., Bi, R.R., Wan, L.J., Maier, J., (2010) Chem. Mater, 22, p. 1908; Hoyer, P., (1996) Langmuir, 12, p. 1411; Mor, G.K., Varghese, O.K., Paulose, M., Shankar, K., Grimes, C.A., (2006) Sol. Energy Mater. Sol. Cells, 90, p. 2011; Vokhmintsev, A.S., Weinstein, I.A., Kamalov, R.V., Dorosheva, I.B., (2014) Bull. Russ. Acad. Sci. Phys., 78, p. 932; Gavrilov, S.A., Zheleznyakova, A.V., Belov, A.N., Barabanov, D.Y., Shevyakov, V.I., Vishnikin, E.V., Khlynov, A.V., (2006) Proc. SPIE—Int. Soc. Opt. Eng, 6260, p. 626011; Roy, P., Berger, S., Schmuki, P., (2011) Angew. Chem. Int. Ed. Engl, 50, p. 2904; Huang, J., Zhang, K., Lai, Y., (2013) Int. J. Photoenergy, 2013, p. 1; Atyaoui, A., Bousselmi, L., Cachet, H., Pu, P., Sutter, E.M.M., (2011) J. Photochem. Photobiol. a Chem., 224, p. 71; Kumar, M., Ando, Y., (2010) J. Nanosci. Nanotechnol, 10, p. 3739; Albu, S.P., Ghicov, A., Aldabergenova, S., Drechsel, P., Leclere, D., Thompson, G.E., Macak, J.M., Schmuki, P., (2008) Adv. Mater, 20, p. 4135; Mishra, A., Banerjee, S., Mohapatra, S.K., Graeve, O.A., Misra, M., (2008) Nanotechnology, 19 |