首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Stable, carbon-free inks of Cu2ZnSnS4 nanoparticles synthesized at room temperature designed for roll-to-roll fabrication of solar cell absorber layers
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Stable, carbon-free inks of Cu2ZnSnS4 nanoparticles synthesized at room temperature designed for roll-to-roll fabrication of solar cell absorber layers

机译:在室温下合成的Cu2ZnSnS4纳米颗粒的稳定,无碳油墨设计用于太阳能电池吸收层的卷 - 卷制造

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摘要

We report on a novel room temperature approach for the synthesis of environmentally-friendly copper zinc tin sulfide (Cu2ZnSnS4) nanoparticles. The method is shown to be compositionally robust and able to produce S2--stabilized carbon-free nanoparticle inks that are suitable for an absorber layer in solar cells. No organic residues from the process were detected. The metal-composition and the occurrence of secondary phases is here correlated with synthesis conditions: By utilizing a reactant concentration of Cu/Sn < 1.8 and Sn(II) as tin-source it is possible to avoid the formation of CuxS-phases, which are detrimental for the solar cell performance when present in the final absorber layer. With nanoparticle sizes approaching the Bohr radius for Cu2ZnSnS4, the band gap can be broadened up to 1.7 eV. In addition, the conditions for forming stable, carbon-free aqueous inks of such Cu2ZnSnS4 nanoparticles are investigated and the stabilizing NH4+/S2--ion concentration affects the quality of the deposited absorber layer. The use of room temperature synthesis and stable aqueous ink formulations make the method suitable for roll-to-roll fabrication and upscaling. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们报道了一种新型室温方法,用于合成环保型铜锌硫化锡(Cu2ZNSN4)纳米粒子。该方法显示为合成稳健并且能够生产适合于太阳能电池中吸收层的S2稳定的无碳纳米粒子油墨。检测过程中没有有机残留物。这里的金属组合物和二次相的发生在此与合成条件相关:通过利用Cu / Sn <1.8和Sn(II)的反应物浓度,作为锡源,可以避免组成阶段的形成在最终吸收层中存在时对太阳能电池性能有害。纳米颗粒尺寸接近BoHR半径的Cu2ZNSN4,可以扩展带隙,高达1.7eV。另外,研究了这种Cu2ZNS4纳米颗粒的形成稳定的无碳无碳油墨的条件,并稳定NH 4 + / S2离子浓度影响沉积的吸收层的质量。使用室温合成和稳定的水性油墨制剂使得该方法适用于卷 - 卷制造和升级。 (c)2019 Elsevier B.v.保留所有权利。

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