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Effect of Carbon Modification on the Electrical, Structural, and Optical Properties ofTiO2Electrodes and Their Performance in Labscale Dye-Sensitized Solar Cells

机译:碳改性对Labscale染料敏化太阳能电池的电气,结构和光学性能及其性能及其性能

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摘要

Carbon-modified titanium dioxide nanoparticles (C:TiO2 NPs) have been synthesized by ultrasonic nebulizer spray pyrolysis (USP) and pneumatic spray pyrolysis (PSP) techniques. HRTEM on the NPs shows difference in lattice spacing in the NP structures prepared by the two methods—2.02 Å for the USP NPs and an average of 3.74 Å for the PSP NPs. The most probable particle sizes are 3.11 nm and 5.5 nm, respectively. Raman spectroscopy supported by FTIR confirms the TiO2 polymorph to be anatase with the intense phonon frequency at 153 cm−1 blue-shifted from 141 cm−1 ascribed to both carbon doping and particle size. A modified phonon confinement model for nanoparticles has been used to extract phonon dispersion and other parameters for anatase for the first time. Electronic measurements show “negative conductance” at some critical bias voltage, which is characteristic of n-type conductivity in the carbon-doped TiO2 NPs as confirmed by the calculated areas under the I-V curves, a property suited for solar cell applications. Practical solar cells built from carbon-doped TiO2 electrodes show up to 1.5 times improvement in efficiency compared to pure TiO2 electrodes of similar construction.
机译:碳改性的二氧化钛纳米颗粒(C:二氧化钛纳米颗粒)已经由超声雾化器喷雾热解(USP)和气动喷雾热解(PSP)技术合成。 NPS上的HRTEM显示了由USP NPS的两种方法-2.02Å-2.02Å制备的NP结构中的晶格间距的差异,平均为PSP NPS为3.74Å。最可能的粒度分别为3.11nm和5.5nm。由FTIR支撑的拉曼光谱证实TiO 2多晶型物是锐钛矿,其具有强烈的声子频率,在153cm-1的蓝色移位,从141cm-1归因于碳掺杂和粒度。对纳米颗粒的改性声子约束模型已被用于提取的声子的分散性和其它参数为锐钛矿首次。电子测量显示在一些临界偏压,由I-V曲线下的面积计算证实这是在掺杂碳的二氧化钛纳米颗粒n型导电性的特性,适合于太阳能电池应用的属性“负电导”。与碳掺杂TiO2电极构建的实用太阳能电池显示出与类似结构的纯TiO 2电极相比效率提高的1.5倍。

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