Spatially resolved photoluminescence analysis of the role of Se in CdSexTe1-x thin films.
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Evidence from cross-sectional electron microscopy has previously shown that Se passivates defects in CdSexTe1-x solar cells, and that this is the reason for better lifetimes and voltages in these devices. Here, we utilise spatially resolved photoluminescence measurements of CdSexTe1-x thin films on glass to directly study the effects of Se on carrier recombination in the material, isolated from the impact of conductive interfaces and without the need to prepare cross-sections through the samples. We find further evidence to support Se passivation of grain boundaries, but also identify an increase in below-bandgap photoluminescence that indicates the presence of Se-enhanced defects in grain interiors. Our results show that whilst Se treatment, in tandem with Cl passivation, does increase radiative efficiencies in CdSexTe1-x, it simultaneously increases the defect content within the grain interiors. This suggests that although it is beneficial overall, Se incorporation will still limit the maximum attainable optoelectronic properties of CdSexTe1-x thin films.
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Acknowledgements: A.R.B. acknowledges the support of an EPSRC Impact Accelerator Grant, and an SNSF Swiss Postdoctoral Fellowship TMPFP2_217040. G.T. and A.R.B. acknowledge the support of an SNSF Eccellenza Grant PCEGP2-194181. A.R.B. thanks Franky Esteban Bedoya Lora for the use of an Ocean Optics spectrometer. J.F.L. and J.D.M. acknowledge EPSRC for funding via EP/N014057/1, EP/W03445X/1 and the EPSRC Centre for Doctoral Training in New and Sustainable Photovoltaics EP/L01551X/1. K.F. acknowledges the support of an Engineering and Physical Sciences Research Council (EPSRC) Doctoral Prize Postdoctoral Fellowship and a Winton Sustainability Fellowship. S.D.S. acknowledges support from the Royal Society and Tata Group (UF150033). The authors acknowledge the EPSRC (EP/R023980/1) for funding. The authors thank Florent Plane, Anne-Sophie Bouvier and Johanna Marin Carbonne for their assistance with SIMS measurements.
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2041-1723
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Engineering and Physical Sciences Research Council (EP/R023980/1)
Engineering and Physical Sciences Research Council (EP/L01551X/1)

