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首页> 外文期刊>Results in Physics >Optimization of power conversion efficiency of polyvinyl-alcohol/titanium dioxide as light scattering layer in DSSC using response surface methodology/central composite design
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Optimization of power conversion efficiency of polyvinyl-alcohol/titanium dioxide as light scattering layer in DSSC using response surface methodology/central composite design

机译:用响应面法/中央复合设计优化多偏醇/二氧化钛作为光散射层的功率转化效率

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This study focused on the optimization of polyvinyl-alcohol/titanium dioxide (PVA/TiO2) nanofibers as a light scattering layer in the dye-sensitized solar cell. The experiment was designed by response surface methodology with central composite design (RSM/CCD). Two parameters were studied i.e. electrospinning time and concentration of titanium tetraisopropoxide (TTIP). A quadratic model was used to determine the significance of each parameter studied towards the surface response which is power conversion efficiency (PCE). The statistical analysis showed that the electrospinning time and concentration of TTIP were significantly affected the PCE with the coefficient of variance (R2) of 0.9756. The RSM was able to predict the optimum condition of each parameter with less than 5% residual standard error.
机译:该研究的重点是优化聚乙烯醇/二氧化钛(PVA / TiO 2)纳米纤维作为染料敏化太阳能电池中的光散射层。通过响应面方法与中央复合设计(RSM / CCD)设计了实验。研究了两种参数即静电纺丝时间和钛四异丙氧化钛(TTIP)。使用二次模型来确定研究朝向表面响应的每个参数的重要性,这是电力转换效率(PCE)。统计分析表明,TTIP的静电纺丝时间和浓度显着影响PCE,其变异系数(R2)为0.9756。 RSM能够预测每个参数的最佳状况,剩余标准误差小于5%。

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