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首页> 外文期刊>Scientific reports. >Characterization of efficiency-limiting resistance losses in monolithically integrated Cu(In,Ga)Se2 solar modules
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Characterization of efficiency-limiting resistance losses in monolithically integrated Cu(In,Ga)Se2 solar modules

机译:单片集成Cu(In,Ga)Se 2 太阳能电池组件中限流电阻损耗的表征

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The cell-to-module efficiency gap in Cu(In,Ga)Se2 (CIGS) monolithically integrated solar modules is enhanced by contact resistance between the Al-doped ZnO (AZO) and Mo back contact layers, the P2 contact, which connects adjacent cells. The present work evaluated the P2 contact resistance, in addition to the TCO resistance, using an embedded transmission line structure in a commercial-grade module without using special sample fabrication methods. The AZO layers between cells were not scribed; instead, the CIGS/CdS/i-ZnO/AZO device was patterned in a long stripe to permit measurement of the Mo electrode pair resistance over current paths through two P2 contacts (Mo/AZO) and along the AZO layer. The intercept and slope of the resistance as a function of the electrode interval yielded the P2 contact resistance and the TCO resistance, respectively. Calibration of the parasitic resistances is discussed as a method of improving the measurement accuracy. The contribution of the P2 contact resistance to the series resistance was comparable to that of the TCO resistance, and its origin was attributed to remnant MoSe2 phases in the P2 region, as verified by transmission electron microscopy.
机译:铝掺杂的ZnO(AZO)和Mo背接触层之间的接触电阻会提高Cu(In,Ga)Se 2 (CIGS)整体集成太阳能模块中电池到模块的效率差距,P2触点,用于连接相邻的电池。除TCO电阻外,本工作还使用了商用级模块中的嵌入式传输线结构而不使用特殊的样品制造方法来评估P2接触电阻。单元之间的AZO层未刻划;取而代之的是,将CIGS / CdS / i-ZnO / AZO器件图案化成长条状,以允许在通过两个P2触点(Mo / AZO)并沿着AZO层的电流路径上测量Mo电极对的电阻。电阻的截距和斜率作为电极间隔的函数,分别产生P2接触电阻和TCO电阻。讨论了寄生电阻的校准,以提高测量精度。 P2接触电阻对串联电阻的贡献可与TCO电阻相媲美,并且其起源可归因于P2区域中残留的MoSe 2 相,这是通过透射电子显微镜证实的。

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