“…First, rising plasma shots might result in alterations in the crystal structure or grain size within the thin film. 66 Defects, dislocations, or grain boundaries arising due to increased film thickness or structural changes could contribute to the creation of localized electronic states, leading to the Urbach band tailing. 67 Second, in some cases, the increase in film thickness could influence quantum confinement effects, altering the electronic states within the bandgap and impacting the bandgap energy.…”
Section: Urbach Energy (E U ) and Optical Bandgap (E Opt G ) In Thin ...mentioning
Solar cells are of growing importance as a renewable energy source, and cuprite (Cu2O) stands out as a promising material due to its cost-effectiveness, abundance, and appealing optoelectronic characteristics.
“…First, rising plasma shots might result in alterations in the crystal structure or grain size within the thin film. 66 Defects, dislocations, or grain boundaries arising due to increased film thickness or structural changes could contribute to the creation of localized electronic states, leading to the Urbach band tailing. 67 Second, in some cases, the increase in film thickness could influence quantum confinement effects, altering the electronic states within the bandgap and impacting the bandgap energy.…”
Section: Urbach Energy (E U ) and Optical Bandgap (E Opt G ) In Thin ...mentioning
Solar cells are of growing importance as a renewable energy source, and cuprite (Cu2O) stands out as a promising material due to its cost-effectiveness, abundance, and appealing optoelectronic characteristics.
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