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Advances in Nanomaterials for Photovoltaic Applications

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rotating disk electrode; photovoltaic; electrodeposition; mass transport; thin film; hydrogen evolution; CIGS; PV cells; fill factor; quantum efficiency; oxide/metal/oxide; OMO; DMD; ellipsometry; transparent conductive electrodes; plastic substrates; organic solar cells; perovskite solar cells; contact angle; wettability; tantalum; titanium oxide; atomic layer deposition; bubbler temperature; perovskite solar cell; electron transport layer; CdTe nanocrystals; blade coating; large area fabrication; o-SnS; c-SnS; SnS2; Sn2S3; CBD; solar cells; ultra-flexible organic solar cells; IZTO; transparent electrode; mechanical stability; 1D grating pattern; ZnO; ultrathin; window layer; zinc selenide (ZnSe); thin films; radio frequency (RF) magnetron sputtering; physical properties; spectroscopic ellipsometry; electrical measurements; antimony selenoiodide; SbSeI; solution process; one-step method; hole transporting layer; photoconversion efficiency; stability; metal oxides; metal sulfides; nanocarbon materials; conducting polymers; conjugated polyelectrolyte; small organic molecules; compact SnO2; mesoporous TiO2; oxygen plasma; perovskite solar cell low process temperature; InAs quantum dots solar cells; AlAs capping; (S)TEM; n/a

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