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首页> 外文期刊>ChemSusChem >One-step Synthesis of Vertically Aligned Anatase Thornbush-like TiO2 Nanowire Arrays on Transparent Conducting Oxides for Solid-State Dye-Sensitized Solar Cells
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One-step Synthesis of Vertically Aligned Anatase Thornbush-like TiO2 Nanowire Arrays on Transparent Conducting Oxides for Solid-State Dye-Sensitized Solar Cells

机译:垂直对齐锐钛矿吡氏菌状TiO2纳米线阵列的一步合成在透明导电氧化物中固态染料敏化太阳能电池的透明导电氧化物

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Herein, we report a facile synthesis of high-density anatase-phase vertically aligned thornbush-like TiO2 nanowires (TBWs) on transparent conducting oxide glasses. Morphologically controllable TBW arrays of 9m in length are generated through a one-step hydrothermal reaction at 200 degrees C over 11h using potassium titanium oxide oxalate dehydrate, diethylene glycol (DEG), and water. The TBWs consist of a large number of nanoplates or nanorods, as confirmed by SEM and TEM imaging. The morphologies of TBWs are controllable by adjusting DEG/water ratios. TBW diameters gradually decrease from 600 (TBW600) to 400 (TBW400) to 200nm (TBW200) and morphologies change from nanoplates to nanorods with an increase in DEG content. TBWs are utilized as photoanodes for quasi-solid-state dye-sensitized solar cells (qssDSSCs) and solid-state DSSCs (ssDSSCs). The energy-conversion efficiency of qssDSSCs is in the order: TBW200 (5.2%)>TBW400 (4.5%)>TBW600 (3.4%). These results can be attributed to the different surface areas, light-scattering effects, and charge transport rates, as confirmed by dye-loading measurements, reflectance spectroscopy, and incident photon-to-electron conversion efficiency and intensity-modulated photovoltage spectroscopy/intensity-modulated photocurrent spectroscopy analyses. TBW200 is further treated with a graft-copolymer-directed organized mesoporous TiO2 to increase the surface area and interconnectivity of TBWs. As a result, the energy-conversion efficiency of the ssDSSC increases to 6.7% at 100mWcm(-2), which is among the highest values for N719-dye-based ssDSSCs.
机译:在此,我们在透明导电玻璃上报告了高密度脱脂酶相垂直对齐的吡氏菌状TiO2纳米线(TBWS)的容易合成。使用氧化钛草酸碳酸钾脱水,二亚乙二醇(DEG)和水,通过在200摄氏度超过11小时的一步水热反应产生9m的形态学控制的TBW阵列。通过SEM和TEM成像证实,TBW由大量的纳米板或纳米棒组成。 TBWS的形态通过调节DEG /水比来控制。 TBW直径从600(TBW600)至400(TBW400)逐渐减小到200nm(TBW200),并且形态学从纳米板改变为纳米棒,随着含量的增加而增加。 TBWS用作准固态染料敏化太阳能电池(QSSDSSCS)和固态DSSCs(SSDSSC)的光阳极。 QSSDSSCS的能量转换效率有序:TBW200(5.2%)> TBW400(4.5%)> TBW600(3.4%)。这些结果可以归因于不同的表面积,光散射效应和电荷传输速率,如染料加载测量,反射光谱和入射光仪到电子转换效率和强度调制的光电谱/强度 - 调制的光电流光谱分析分析。 TBW200进一步用移植共聚物定向的有组织的介孔TiO2进一步处理,以增加TBWS的表面积和互连。结果,SSDSSC的能量转换效率在100MWCM(-2)下增加到6.7%,这是基于N719-染料的SSDSSCS的最高值。

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