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- W3182256113 endingPage "109626" @default.
- W3182256113 startingPage "109626" @default.
- W3182256113 abstract "Dye-sensitized photovoltaic cells (DSPVs) have great potential in indoor photovoltaic applications for light energy recycling because of their exceptional light-harvesting capability under ambient illumination conditions . The feasibility of DSPVs for use in ambient energy harvesting is verified by their record-high power-conversion efficiency (PCE) of over 30% under indoor illumination conditions, colorful esthetics, cost-effectiveness, stable device performance, and PCE retention of up to 99%. This review provides an insightful overview of the application of DSPVs under the illumination of diffuse and low-intensity light. The key foci of this study are the synergistic impacts of various factors, including the design of dyes, composition of electrolytes, long-term stability, effect of TiO 2 mesoporous films , and blocking layers on the indoor performance of DSPVs. Additionally, the review touches upon the commercial aspects of DSPVs that operate under low light intensities, and it provides a critical perspective. An updated study on the recent advancement in dye-sensitized photovoltaic cells (DSPVs) under ambient illumination is discussed. Focusing on the evaluation of indoor photovoltaic performance of DSPVs influenced by various synergistic factors such as sensitizers, electrolytes, active area of mesoporous TiO 2 films, stability and blocking layers. Finally, the viability of commercialization of DSPVs for futuristic IoT applications is provided. • The recent advancement in DSPVs under ambient illumination was presented. • The superiority of DSPV to silicon PV under ambient illumination was corroborated. • The impact of sensitizers and electrolytes on the indoor performance of DSPVs was discussed. • The effect of TiO 2 and blocking layers on the indoor performance of DSPVs was evaluated. • The feasibility of commercialization of DSPVs for IoT applications was studied." @default.
- W3182256113 created "2021-07-19" @default.
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- W3182256113 creator A5075165542 @default.
- W3182256113 date "2021-10-01" @default.
- W3182256113 modified "2023-09-24" @default.
- W3182256113 title "Recent developments in dye-sensitized photovoltaic cells under ambient illumination" @default.
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