Department of Chemical and Biomolecular Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749 Korea.
ChemSusChem. 2013 Aug;6(8):1384-91. doi: 10.1002/cssc.201300317. Epub 2013 Jul 26.
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 9 μm in length are generated through a one-step hydrothermal reaction at 200 °C over 11 h 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 200 nm (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 100 mW cm(-2) , which is among the highest values for N719-dye-based ssDSSCs.
本文报告了一种简便的方法,可在透明导电氧化物玻璃上合成高密度锐钛矿相垂直排列的荆棘状 TiO2 纳米线(TBW)。通过在 200°C 下使用钛酸钾草酸脱水物、二甘醇(DEG)和水进行一步水热反应 11 小时,可生成长达 9μm 的形态可控 TBW 阵列。SEM 和 TEM 成像证实,TBW 由大量纳米板或纳米棒组成。通过调节 DEG/水的比例可以控制 TBW 的形态。TBW 直径从 600nm(TBW600)逐渐减小到 400nm(TBW400)和 200nm(TBW200),并且随着 DEG 含量的增加,形态从纳米板变为纳米棒。TBW 用作准固态染料敏化太阳能电池(qssDSSC)和固态 DSSC(ssDSSC)的光阳极。qssDSSC 的能量转换效率顺序为:TBW200(5.2%)>TBW400(4.5%)>TBW600(3.4%)。这些结果归因于不同的比表面积、光散射效应和电荷传输速率,这可以通过染料负载测量、反射光谱以及入射光子-电子转换效率和强度调制光电压光谱/强度调制光电流光谱分析来证实。进一步用接枝共聚物导向有序介孔 TiO2 处理 TBW200,以增加 TBW 的比表面积和互连性。结果,ssDSSC 的能量转换效率在 100mW cm(-2)时提高到 6.7%,这在基于 N719 染料的 ssDSSC 中属于较高值。