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Facile fabrication of quantum dot–sensitized solar cells with multilayer TiO2 NCs/TiO2 HSs/CIS/CdS/CdSe(Xmin)/ZnS photoanode and modification of light scattering and co-sensitization for higher efficiencies
Facile modified chemical precipitation approach for the synthesis of CuXIn1−XS2 nanocrystals and their application in high-performance CuXIn1−XS2/CdS co-quantum dots sensitized solar cells
Facile fabrication of CdS and CdSe quantum dots sensitized solar cells with TiO2 nanocrystals/nanorods electron transport scaffold and SiO2 passivating film
Fabrication of quantum dot-sensitized solar cells with multilayer TiO2/PbS(X)/CdS/CdSe/ZnS/SiO2 photoanode and optimization of the PbS nanocrystalline layer
A new co-solvent assisted CuSCN deposition approach for better coverage and improvement of the energy conversion efficiency of corresponding mixed halides perovskite solar cells
Azam Khorasani, Maziar Marandi, Azam Iraji zad and Nima Taghavinia Journal of Materials Science: Materials in Electronics 30(12) 11576 (2019) https://doi.org/10.1007/s10854-019-01515-6
Optimization of the doping process and light scattering in CdS:Mn quantum dots sensitized solar cells for the efficiency enhancement
Co-application of TiO2 nanoparticles and randomly directed TiO2 nanorods in the photoelectrode of the CdS:Mn quantum dots sensitized solar cells and optimization of the doping for the efficiency improvement
Application of combinative TiO2nanorods and nanoparticles layer as the electron transport film in highly efficient mixed halides perovskite solar cells
Fabrication of submicron/micron size cavities included TiO 2 photoelectrodes and optimization of light scattering to improve the photovoltaic performance of CdS quantum dot sensitized solar cells
Synthesis of randomly directed inclined TiO 2 nanorods on the nanocrystalline TiO 2 layers and their optimized application in dye sensitized solar cells