共 53 条
[1]
Badawy W.A., A review on solar cells from Si-single crystals to porous materials and quantum dots, J. Adv. Res., 6, pp. 123-132, (2015)
[2]
Bredas J.-L., Norton J.E., Cornil J., Coropceanu V., Molecular understanding of organic solar cells: the challenges, Acc. Chem. Res., 42, pp. 1691-1699, (2009)
[3]
Hardin B.E., Snaith H.J., McGehee M.D., The renaissance of dye-sensitized solar cells, Nat. Photonics, 6, (2012)
[4]
O'Regan B., Gratzel M., A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO<sub>2</sub> films, Nature, 353, pp. 737-740, (1991)
[5]
Arora N., Dar M.I., Hinderhofer A., Pellet N., Schreiber F., Zakeeruddin S.M., Gratzel M., Perovskite solar cells with CuSCN hole extraction layers yield stabilized efficiencies greater than 20%, Science, 358, pp. 768-771, (2017)
[6]
Gratzel M., The advent of mesoscopic injection solar cells, Prog. Photovolt. Res. Appl., 14, pp. 429-442, (2006)
[7]
Boschloo G., Hagfeldt A., Characteristics of the iodide/triiodide redox mediator in dye-sensitized solar cells, Acc. Chem. Res., 42, pp. 1819-1826, (2009)
[8]
Kay A., Graetzel M., Artificial photosynthesis. 1. Photosensitization of titania solar cells with chlorophyll derivatives and related natural porphyrins, J. Phys. Chem., 97, pp. 6272-6277, (1993)
[9]
Nazeeruddin M.K., Liska P., Moser J., Vlachopoulos N., Gratzel M., Conversion of light into electricity with trinuclear ruthenium complexes adsorbed on textured TiO<sub>2</sub> films, Helv. Chim. Acta, 73, pp. 1788-1803, (1990)
[10]
Klein C., Nazeeruddin K., Censo D.D., Liska P., Grtzel M., Gra M., Amphiphilic ruthenium sensitizers and their applications in dye-sensitized solar cells, Inorg. Chem., 43, pp. 4216-4226, (2004)