Zinc sulphide (ZnS) and transition metal-doped ZnS nanocrystals were synthesized by co-precipitation method. Further the synthesized nanocrystals were characterized by Field Emission Scanning Electron Microscope (FESEM), High Resolution Transmission Electron Microscope (HRTEM), Fluorescence, UVVisible, X-ray diffraction (XRD) and Fourier Transformed Infra-red (FTIR) Spectrometer (FTIR). Scanning electron microscope supplemented with EDAX was employed to attain grain size and chemical composition of the nanomaterials. A considerable blue shift of absorption band was noted by the manganese concentration (0.5 M) in the doped sample in comparison with ZnS quantum dots because of the decrease in the size of nanoparticles which may be due to quantum confinement. The photoluminescence emission observed at 596 nm is due to the emission of divalent manganese and can be ascribed to a T-4(1) ->(6)A(1) transition within the 3d shell. Though, the broad blue emission band was observed at 424 nm which may originates from the radiative recombination comprising defect states in the un-doped zinc sulphide quantum dots. XRD analysis exhibited that the synthesized nanomaterial endured in cubic structure. The synthesized nanomaterial combined with organic polymer P3HT, poly (3-hexyl thiophene) and worked in the construction of inverted solar cells. The photovoltaic devices with un-doped zinc sulphide quantum dots showed power conversion efficiency of 0.48% without annealing and 0.52% with annealing. By doping with manganese, the efficiency was enhanced by a factor of 0.52 without annealing and 0.59 with annealing. The morphology and packing behavior of blend of nanocrystals with organic polymer were explored using Atomic Force Microscopy. (C) 2017 Elsevier Ltd. All rights reserved.
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Univ Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, SloveniaUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Korte, Dorota
Pavlica, Egon
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Univ Nova Gorica, Lab Organ Matter Phys, Vipavska 13, SI-5000 Nova Gorica, SloveniaUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Pavlica, Egon
Klancar, Domen
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Univ Nova Gorica, Lab Organ Matter Phys, Vipavska 13, SI-5000 Nova Gorica, SloveniaUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Klancar, Domen
Bratina, Gvido
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Univ Nova Gorica, Lab Organ Matter Phys, Vipavska 13, SI-5000 Nova Gorica, SloveniaUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Bratina, Gvido
Pawlak, Michal
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Nicolaus Copernicus Univ, Inst Phys, Fac Phys Astron & Informat, PL-87100 Torun, PolandUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Pawlak, Michal
Gondek, Ewa
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Cracow Univ Technol, Inst Phys, PL-30084 Krakow, PolandUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Gondek, Ewa
Song, Peng
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Harbin Inst Technol, State Key Lab Robot & Syst, Harbin 150001, Peoples R China
Harbin Inst Technol, Sch Instrumentat Sci & Engn, Harbin 150001, Peoples R ChinaUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Song, Peng
Liu, Junyan
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Harbin Inst Technol, Sch Instrumentat Sci & Engn, Harbin 150001, Peoples R China
Harbin Inst Technol, Sch Mechatron Engn, Harbin 150001, Peoples R ChinaUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia
Liu, Junyan
Derkowska-Zielinska, Beata
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Nicolaus Copernicus Univ, Inst Phys, Fac Phys Astron & Informat, PL-87100 Torun, PolandUniv Nova Gorica, Lab Environm & Life Sci, Vipavska 13, SI-5000 Nova Gorica, Slovenia