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Thin Film of Amorphous Zinc Hydroxide Semiconductor for Optical Devices with an Energy-Efficient Beneficial Coating by Metal Organic Decomposition Process

机译:通过金属有机分解工艺在具有光能效涂层的光学器件中使用非晶态氢氧化锌半导体薄膜

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摘要

An effective metal oxide coating with solution processes by the metal organic decomposition method as deposited at room temperature (RT) poses great challenge. In this study, we report the characterization and evaluation of the semiconductor properties of a zinc hydroxide thin film with RT just as deposition by solution coating method. The films worked well as an inter-layer of the organic photovoltaic cell and optimized the film thickness condition with chemical and physical properties. As a result, we achieved a power conversion efficiency performance level, which was almost similar to that in the cells used after calcination in the crystal ZnO inter-layer. The presented process without any additional decomposition energy is expected to make a significant contribution to the realization of a flexible and cost-effective solution process for device fabrication.
机译:在室温(RT)下通过金属有机分解方法进行溶液处理的有效金属氧化物涂层提出了巨大的挑战。在这项研究中,我们报道了通过溶液涂布法沉积的RT氢氧化锌薄膜的半导体特性的表征和评估。该膜可以很好地用作有机光伏电池的中间层,并通过化学和物理性能优化了膜厚条件。结果,我们达到了功率转换效率性能水平,几乎与晶体ZnO中间层中煅烧后使用的电池相似。预期所提出的没有任何额外分解能量的工艺将为实现用于器件制造的灵活且成本有效的解决方案工艺做出重大贡献。

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