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Design of high efficient and stable ultra-thin CdTe solar cells with ZnTe as a potential BSF

机译:以ZnTe为潜在BSF的高效稳定超薄CdTe太阳能电池设计

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The polycrystalline ultra-thin cadmium telluride (CdTe) is familiar as the potential solar cell material for its higher efficiency, cost-effective, cell stability and clean generation of solar electricity. In this study, a numerical analysis has been performed utilizing AMPS (Analysis of Microelectronic and Photonic Structures) simulator to examine the cell performances (V, J, FF and conversion efficiency) of ultra-thin CdTe solar cell. During the research, reduction of CdTe layer was done in the proposed cell and found that 1μm absorber layer is enough for acceptable range for cell conversion efficiency. The possibility of this ultra-thin CdTe absorber layer was examined, as one with 100 nm ZnTe back surface field (BSF) layer to minimize the recombination losses at the back contact and to reduce the barrier height in the valence band of the proposed cell. Higher conversion efficiency of 22.53% (J = 24.28 mA/cm, FF = 0.875, V = 1.06 V) has been achieved with only 0.8 μm of CdTe absorber layer along with 100 nm ZnTe BSF where as conversion efficiency is 18.68% (J = 21.47 mA/cm, FF = 0.85, V = 1.02 V) without BSF layer. Moreover, the proposed CdTe solar cell showed better stability as the normalized efficiency of the proposed cell linearly decreased with the increasing operating temperature at the gradient of -0.16%/°C.
机译:多晶超薄碲化镉(CdTe)因其更高的效率,成本效益,电池稳定性和清洁的太阳能发电而成为潜在的太阳能电池材料。在这项研究中,利用AMPS(微电子和光子结构分析)模拟器进行了数值分析,以检查超薄CdTe太阳能电池的电池性能(V,J,FF和转换效率)。在研究过程中,对拟议的电池进行了CdTe层的还原,发现1μm的吸收层足以满足电池转换效率的可接受范围。研究了这种超薄CdTe吸收层的可能性,该层具有100 nm ZnTe背表面场(BSF)层,可最大程度地减少背接触处的复合损失并降低拟议电池价带中的势垒高度。仅0.8μm的CdTe吸收层与100 nm ZnTe BSF一起获得了22.53%(J = 24.28 mA / cm,FF = 0.875,V = 1.06 V)的更高转换效率,其中转换效率为18.68%(J =不带BSF层时为21.47 mA / cm,FF = 0.85,V = 1.02 V)。此外,所提出的CdTe太阳能电池表现出更好的稳定性,因为所提出的电池的归一化效率随着工作温度的升高而以-0.16%/°C的梯度线性降低。

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