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Composite CdO-ZnO hexagonal nanocones: Efficient materials for photovoltaic and sensing applications

机译:复合CDO-ZnO六角形纳米:光伏和传感应用的高效材料

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Herein, we report a hydrothermal process to synthesize well-defined and crystalline composite CdO-ZnO hexagonal nanocones and their efficient utilizations as electrode materials to fabricate photovoltaic and sensor devices. The synthesized material was characterized in detail using several techniques which confirmed its hexagonal nanocones-shaped morphologies with an average diameter of similar to 60-80 nm, well-crystallinity and purity. The sensing behavior of synthesized CdO-ZnO hexagonal nanocones were examined by investigating the I-V characteristics of various nitroaniline concentrations in phosphate buffer solution (PBS). The synthesized CdO-ZnO hexagonal nanocones electrode showed a rapid response with high sensitivity of similar to 129.82 mu A mM(-1) cm(-2) toward the nitroaniline chemical. As a photoanode, the fabricated dye sensitized solar cell (DSSC) attained reasonable overall conversion efficiency of 2.55% with high open circuit voltage (V-OC) of similar to 0.810 V and fill factor (FF) of 0.64. The high V-OC and FF could be attributed to the high series resistance, fast recombination rate and large charge transfer resistance of DSSC.
机译:在此,我们报告了一种水热法,以合成明确定义的结晶复合CDO-ZnO六边形纳米酮和其有效利用作为制造光伏和传感器装置的电极材料。使用几种技术详细地表征了合成的材料,该技术证实其六边形纳米骨形形态,其平均直径与60-80nm,结晶度和纯度相似。通过研究磷酸盐缓冲溶液(PBS)中各种硝基苯胺浓度的I-V特征来检查合成的CDO-ZnO六方纳米酮的感测行为。合成的CdO-ZnO六方纳米纳芯电极显示出高灵敏度的快速响应,其与硝基苯胺化学相似的相似的129.82μmm(-1)cm(-2)。作为光电码,制造的染料敏化太阳能电池(DSSC)实现了合理的总转化效率为2.55%,高开关电压(V-OC)类似于0.810 V,填充因子(FF)为0.64。高V-OC和FF可归因于DSSC的高串联电阻,快速重组率和大电荷传递电阻。

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