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首页> 外文期刊>Bulletin of Materials Science >Fabrication of Cu2ZnSn(S,Se)4 thin film solar cell devices based on printable nano-ink
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Fabrication of Cu2ZnSn(S,Se)4 thin film solar cell devices based on printable nano-ink

机译:基于可印刷纳米油墨的Cu2ZNSN(SE,SE)4薄膜太阳能电池装置的制造

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摘要

Cu2ZnSnS4 (CZTS) as a promising light-absorber material has been extensively applied in photovoltaic solar cells due to its huge absorption coefficient (approximate to 104cm-1) and optimal bandgap (approximate to 1.5 eV). In this study, stable and printable CZTS nano-ink was acquired by dispersing CZTS nanocrystals (NCs) in organic solutions. The kesterite CZTS NCs possess uniform size and good crystallinity. The Raman peak of CZTS is located at 330cm-1, which illustrates that the NCs consist of single-phase CZTS without any impurities. The as-prepared CZTS nano-ink was in turn spin-coated onto the Mo substrate to obtain the desired CZTS thin films under the conditions of anti-vacuum. The compact and dense CZTSSe absorbers were acquired by sulphuring and selenizing the as-prepared thin films. The band gap of the photovoltaic absorber materials is 1.2 eV after incorporating Se into the photovoltaic thin films. Finally, the CZTSSe photovoltaic thin film device, whose power conversion efficiency was 1.40 +/- 0.14%, was prepared by this easy and green method.
机译:由于其巨大的吸收系数(近似为104cm-1)和最佳的带隙(近似为1.5eV),Cu2zNSN4(CZTS)被广泛地应用于光伏太阳能电池中的光伏太阳能电池。在该研究中,通过在有机溶液中分散CZTS纳米晶体(NCS)来获得稳定和可印刷的CZT纳米油墨。 KETTERITE CZTS NCS具有均匀的尺寸和良好的结晶度。 CZTS的拉曼峰位于330cm-1,其说明NCS由单相CZT组成,没有任何杂质。将AS制备的CZTS纳米墨水旋转涂覆到MO底物上,得到抗真空条件下所需的CZTS薄膜。通过硫化和硒化AS制备的薄膜来获得紧凑和致密的CZTSSE吸收剂。在将SE掺入光伏薄膜之后,光伏吸收材料的带隙是1.2eV。最后,通过这种简单和绿色的方法制备了CZTSSE光伏薄膜装置,其功率转换效率为1.40 +/- 0.14%。

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