首页> 外文期刊>Journal of Materials Science >Optimization of sol-gel spin-coated Cu2ZnSnS4 (CZTS) thin-film control parameters by RSM method to enhance the solar cell performance
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Optimization of sol-gel spin-coated Cu2ZnSnS4 (CZTS) thin-film control parameters by RSM method to enhance the solar cell performance

机译:通过RSM方法优化溶胶 - 凝胶旋涂的Cu2ZnSns4(CZTS)薄膜控制参数来提高太阳能电池性能

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This present study aims to investigate a specific optimum deposition condition for the synthesis of Cu2ZnSnS4 (CZTS) thin films by a sol-gel spin-coating method. Spin speed (X (1)), spin time (X (2)), annealing temperature (X (3)) and annealing time (X (4)) are considered as the major control parameters (independent variables). Response surface methodology technique is implemented for the first time to optimize multiple responses (dependent variable) for sol-gel spin-coated CZTS thin films. Band gap and power conversion efficiency (PCE) are considered as the responses. All the independent variables are varied at three different levels. The Box-Behnken design (BBD) array is opted for the optimization, as it gives optimized results for more than three parameters in less number of experiments. Four control variables and three levels involve 81 experiments to find out optimum deposition condition, whereas BBD can achieve more specific optimum condition in only 29 experiments. Furthermore, mathematical models for band gap and PCE are established as the function of control parameters. Additionally, the influence of the control parameters on both responses is investigated by ANOVA results of models. By the optimization of models, a specific optimum deposition condition X (1) = 2104 rpm, X (2) = 38 s, X (3) = 527 A degrees C and X (4) = 68 min is achieved. 1.51 eV band gap and 3.53% PCE are predicted for the optimum condition. Moreover, a validation experiment is carried out at nearest integer value: X (1) = 2100 rpm, X (2) = 38 s, X (3) = 530 A degrees C and X (4) = 68 min. 1.50 eV band gap and 3.55% PCE are achieved as the results, which is in good agreement with predicted results. The optimum condition leads to 17.55% of enhancement in PCE than PCE achieved without optimization.
机译:此本研究的目的是探讨Cu2ZnSnS4的合成(CZTS)薄膜通过溶胶 - 凝胶旋涂方法的特定最佳成膜条件。纺丝速度(X(1)),旋涂时间(X(2)),退火温度(X(3))和退火时间(X(4))被认为是主要的控制参数(自变量)。响应面分析法技术被首次以优化溶胶 - 凝胶旋涂CZTS薄膜多个响应(因变量)来实现。带隙和功率转换效率(PCE)被认为是响应。所有独立变量都在三个不同的层次变化。盒Behnken法设计(BBD)阵列被选择了优化,因为它提供了在更短的实验次数优化结果多于三个的参数。四个控制变量和三个层面涉及81个实验,找出最佳的沉积条件,而BBD只能在29实验中获得更具体的最佳状态。此外,对于带隙和PCE的数学模型确定为控制参数的功能。另外,控制参数对两种反应的影响是通过模型方差分析研究。通过模型的优化,特定的最佳沉积条件X(1)= 2104转,X(2)= 38个S,X(3)= 527甲度C和X(4)= 68分钟实现。 1.51 eV的带隙和3.53%的PCE被预测为最佳状态。此外,验证实验是在最接近的整数值进行:X(1)= 2100转,X(2)= 38个S,X(3)= 530甲度C和X(4)= 68分钟。 1.50 eV的带隙和3.55%的PCE被实现为的结果,这与预测的结果是一致的。最佳状况导致增强在PCE较PCE的17.55%,没有达到最优化。

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