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Morphological, optical and electrical properties of spray coated zinc ethyl xanthates for decomposition within a poly(3-hexylthiophene-2,5-diyl) matrix

机译:喷涂的乙基黄原酸锌在聚(3-己基噻吩-2,5-二基)基体内分解的形态,光学和电学性质

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This work investigates the deposition of hybrid layers, for next generation in energy conversion, via spray coating. Understanding the effect that this deposition procedure has on these layers could lead to the rapid development of these technologies, for both laboratory applications and commercialisation. Synthesised zinc ethyl xanthate and poly(3-hexylthiophene-2,5-diyl) was spray-coated on substrates and heated to a temperature of 160 °C, to the hybrid film. Optical, morphological and conductive properties of these films were investigated and linked to the spray coating duration. It was revealed that shorter-duration spray times led to relatively low conductivity and smoother films, moreover, an increase in spraying duration also led to an increase in conductivity, but with increased roughness, from 6.178 nm to 8.317 nm. As the spray time was further increased factors, including film layering effects, led to a gradual decrease in conductivity accompanied by a decrease in the roughness. Smoother films were shown to result in higher light absorption, characterised by wider band gaps, which could be due to the crystal structure of the inorganic phase. The controllability of this rapid, facile, and inexpensive spray deposition process was then demonstrated in fabrication of prototype photovoltaic devices.
机译:这项工作研究了混合层的沉积,以便通过喷涂进行下一代能量转换。了解此沉积程序对这些层的影响可能会导致这些技术的快速发展,无论是在实验室应用还是商业化应用。将合成的乙基黄原酸锌和聚(3-己基噻吩-2,5-二基)喷涂在基材上,并加热到160°C,形成杂化膜。研究了这些薄膜的光学,形态和导电性能,并将其与喷涂时间联系在一起。揭示了较短持续时间的喷涂时间导致相对较低的电导率和更光滑的膜,此外,喷涂持续时间的增加也导致电导率的增加,但粗糙度从6.178 nm增加到8.317 nm。随着喷涂时间的进一步增加,包括成膜作用在内的各种因素导致电导率逐渐降低,同时粗糙度降低。较光滑的薄膜显示出较高的光吸收率,其特征在于带隙较宽,这可能是由于无机相的晶体结构所致。然后,在原型光电器件的制造中证明了这种快速,简便且廉价的喷涂工艺的可控制性。

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