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Linking Precursor Alterations to Nanoscale Structure and Optical Transparency in Polymer Assisted Fast-Rate Dip-Coating of Vanadium Oxide Thin Films

机译:链接前驱体变化到纳米级结构和光学透明性的氧化钒薄膜聚合物辅助的快速浸涂中

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摘要

Solution processed metal oxide thin films are important for modern optoelectronic devices ranging from thin film transistors to photovoltaics and for functional optical coatings. Solution processed techniques such as dip-coating, allow thin films to be rapidly deposited over a large range of surfaces including curved, flexible or plastic substrates without extensive processing of comparative vapour or physical deposition methods. To increase the effectiveness and versatility of dip-coated thin films, alterations to commonly used precursors can be made that facilitate controlled thin film deposition. The effects of polymer assisted deposition and changes in solvent-alkoxide dilution on the morphology, structure, optoelectronic properties and crystallinity of vanadium pentoxide thin films was studied using a dip-coating method using a substrate withdrawal speed within the fast-rate draining regime. The formation of sub-100?nm thin films could be achieved rapidly from dilute alkoxide based precursor solutions with high optical transmission in the visible, linked to the phase and film structure. The effects of the polymer addition was shown to change the crystallized vanadium pentoxide thin films from a granular surface structure to a polycrystalline structure composed of a high density of smaller in-plane grains, resulting in a uniform surface morphology with lower thickness and roughness.
机译:固溶处理的金属氧化物薄膜对于从薄膜晶体管到光伏电池的现代光电设备以及功能性光学涂层都很重要。诸如浸涂之类的固溶处理技术可以使薄膜快速沉积在包括弯曲,柔性或塑料基材在内的各种表面上,而无需大量处理比较气相沉积或物理沉积方法。为了增加浸涂薄膜的有效性和多功能性,可以对常用的前体进行改变,以促进受控的薄膜沉积。采用浸涂法,在快速排液速率下,采用衬底退避速度,研究了聚合物辅助沉积和溶剂醇盐稀释度变化对五氧化二钒薄膜的形貌,结构,光电性能和结晶度的影响。用稀醇盐基前驱体溶液可以快速实现亚100纳米薄膜的形成,该溶液在可见光中具有很高的光透射率,与相和膜结构有关。已显示出聚合物添加的作用将结晶的五氧化二钒薄膜从粒状表面结构改变为由高密度的较小面内晶粒组成的多晶结构,从而导致具有较低厚度和粗糙度的均匀表面形态。

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