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Rapid synthesis of nanostructured metal-oxide films for solar energy applications by a flame aerosol reactor (FLAR)

机译:火焰气溶胶反应器(FLAR)快速合成太阳能应用的纳米结构金属氧化物膜

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Titanium dioxide films are a critical component of many next-generation low cost solar cells. Film morphology has been identified as an efficiency-limiting property. A gas phase, single-step, rapid, atmospheric-pressure process to synthesize TiO2 films with controlled morphology is reported. The process is based on a flame aerosol reactor (FLAR). Two different morphologies were synthesized for this report, granular and columnar. The granular morphology consists of nanoparticles aggregated into fractal structures on the substrate, and is characterized by high surface area and poor electronic properties. The columnar morphology is highly crystalline; composed of 1D structures oriented normal to the substrate, characterized by lower surface area and superior electronic properties. Films with both morphologies are applied to a hydrogen-producing photo-watersplitting cell and a photovoltaic dye-sensitized solar cell. For watersplitting, the columnar morphology outperforms the granular by almost 2 orders of magnitude, achieving a uv-light to hydrogen conversion efficiency of about 11%. In contrast, for the dye-sensitized solar cell, the granular morphology outperforms the columnar, due to enhanced dye absorption arising from the larger TiO2 surface area.
机译:二氧化钛膜是许多下一代低成本太阳能电池的关键组成部分。薄膜形态已被确定为效率限制性。报道了一种用对照形态合成TiO2薄膜的气相,单步,快速的大气压过程。该方法基于火焰气溶胶反应器(喇叭喇叭)。为本报告,粒状和柱状合成了两种不同的形态。粒状形态由纳米颗粒聚集成基材上的分形结构,其特征在于高表面积和差的电子性能。柱状形态是高度结晶的;由垂直于衬底的1D结构组成,其特征在于表面积较低,电子性质。具有两种形态的薄膜应用于产生的氢气的光水剖面电池和光伏染料敏化太阳能电池。对于水域,柱状形态优于颗粒,其数量级几乎是粒度,实现紫外线至氢转化效率约为11%。相反,对于染料敏化的太阳能电池,由于较大的TiO 2表面积产生的增强染料吸收,粒状形态优于柱状。

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