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首页> 外文期刊>Nano Energy >Alkali-induced grain boundary reconstruction on Cu(In,Ga)Se-2 thin film solar cells using cesium fluoride post deposition treatment
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Alkali-induced grain boundary reconstruction on Cu(In,Ga)Se-2 thin film solar cells using cesium fluoride post deposition treatment

机译:使用氟化铯沉积处理对Cu(In,Ga)SE-2薄膜太阳能电池的碱诱导晶界重建

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摘要

Heavy alkali metal treatment is a key factor to approach high efficiency in Cu(In, Ga)Se-2 (CIGS) solar cells. Here, we show that the Cs-induced surface modification on CIGS thin-film solar cells, especially on grain boundary reconstruction generated from cesium fluoride post-deposition treatment (CsF-PDT). The CsInSe2 phase can be synthesized by CsF-PDT process without extra assistant species, and specifically favors grain boundaries (GBs), which was further characterized by FE-EPMA, TEM, and SIMS analysis. The Cs-contained GBs may both create the valence-band downshift and conduction-band upward. By controlling the Cs-contained layer thickness and modifying absorber, the spike at conduction-band can be overcome by tunneling while remaining high valence-band downshift to suppress the GBs recombination. The efficiency was improved from 15.1 to 18.3% after CsF-PDT; the voltage loss of E-g/q-V-oc was down below 0.4 V. Those improvements are mainly contributed from the grain boundary reconstruction at the junction area using CsF-PDT to reduce the recombination.
机译:重型碱金属处理是在Cu(In,Ga)Se-2(CIGS)太阳能电池中接近高效率的关键因素。在这里,我们表明CIGS薄膜太阳能电池的CS诱导的表面改性,尤其是从沉积铯沉积治疗(CSF-PDT)产生的晶界重建。 CSInse2相可以通过CSF-PDT工艺合成,而无需额外的助手物种,并且具体地有利于Fe-EPMA,TEM和SIMS分析的进一步表征的晶粒边界(GBS)。 CS-ConteD GBS可以在向上创建价带降档和导通带。通过控制包含的CS含量的层厚度和改性吸收器,可以通过隧道克服传导带处的尖峰,同时剩余高价带降档以抑制GBS重组。 CSF-PDT后,效率从15.1%增加到18.3%; E-G / Q-V-OC的电压损失下降到0.4V以下。这些改进主要从使用CSF-PDT的接线区域的晶界重建贡献以减少重组。

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