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Comparison of UV-Irradiation and Sintering on Mesoporous Sponge-like ZnO Films Prepared from PS-b-P4VP Templated Sol-Gel Synthesis

DOI:10.1021/acsanm.8b02039 期刊:ACS Applied Nano Materials 出版年份:2018 更新时间:2025-09-10 09:29:36
摘要: Mesoporous ZnO films with large surface-area-to-volume-ratio show great promise in multiple applications, among which solid-state dye-sensitized solar cells (ssDSSCs) have attracted great attention in the field of photovoltaics. An appropriate mesopore size in the nanostructured ZnO films significantly plays an indispensable role in improving the device efficiency resulted from an efficient penetration of dye molecules and solid hole transport material. In the present work, mesoporous sponge-like ZnO films are prepared using sol-gel synthesis templated by a diblock copolymer polystyrene-block-poly(4-vinylpyridine). Two different template removal techniques, UV-irradiation and high temperature sintering, are used to compare their respective impact on the pore sizes of the final ZnO thin films. Both, the surface morphology and the inner morphology show that mesopores obtained via UV-irradiation are smaller as compared to their sintered counterparts. Moreover, increasing the template-to-ZnO precursor ratio is found to further enlarge present mesopores. Accordingly, a strong correlation between the pore sizes of sol-gel synthesized ZnO films and photovoltaic performance of fabricated ssDSSCs is demonstrated. In contrast with the devices fabricated from the UV-irradiated ZnO films, those obtained from sintered samples show more than two times higher efficiency.
作者: Kun Wang,Senlin Xia,Wei Cao,Nuri Hohn,Sebastian Grott,Lucas Kreuzer,Matthias Schwartzkopf,Stephan V. Roth,Peter Muller-Buschbaum
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Investigating the influence of different post-treatment techniques on the pore size of the final polymer-free inorganic films and their impact on the photovoltaic performance of solid-state dye-sensitized solar cells (ssDSSCs).

Mesoporous sponge-like ZnO films prepared via sol-gel synthesis templated by PS-b-P4VP show that UV-irradiation results in smaller pore sizes compared to sintering. Increasing the template-to-ZnO precursor ratio enlarges the pore sizes. Sintered ZnO films exhibit better photovoltaic performance in ssDSSCs due to larger pore sizes and better crystallization. The study demonstrates a strong correlation between pore sizes and device efficiency.

The study focuses on the comparison of UV-irradiation and sintering for template removal and their impact on pore sizes and photovoltaic performance. The influence of other post-treatment methods or variations in the sol-gel synthesis process is not explored.

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