McDaniel Hunter, Fuke Nobuhiro, Pietryga Jeffrey M, Klimov Victor I
†Center for Advanced Solar Photophysics, Chemistry Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
J Phys Chem Lett. 2013 Feb 7;4(3):355-61. doi: 10.1021/jz302067r. Epub 2013 Jan 10.
Colloidal CuInSexS2-x quantum dots (QDs) are an attractive less-toxic alternative to PbX and CdX (X = S, Se, and Te) QDs for solution-processed semiconductor devices. This relatively new class of QD materials is particularly suited to serving as an absorber in photovoltaics, owing to its high absorption coefficient and near-optimal and finely tunable band gap. Here, we engineer CuInSexS2-x QD sensitizers for enhanced performance of QD-sensitized TiO2 solar cells (QDSSCs). Our QD synthesis employs 1-dodecanethiol (DDT) as a low-cost solvent, which also serves as a ligand, and a sulfur precursor; addition of triakylphosphine selenide leads to incorporation of controlled amounts of selenium, reducing the band gap compared to that of pure CuInS2 QDs. This enables significantly higher photocurrent in the near-infrared (IR) region of the solar spectrum without sacrificing photovoltage. In order to passivate QD surface recombination centers, we perform a surface-cation exchange with Cd prior to sensitization, which enhances chemical stability and leads to a further increase in photocurrent. We use the synthesized QDs to demonstrate proof-of-concept QDSSCs with up to 3.5% power conversion efficiency.
胶体CuInSexS2-x量子点(QD)是一种有吸引力的低毒性替代品,可用于溶液处理的半导体器件,以替代PbX和CdX(X = S、Se和Te)量子点。这类相对较新的量子点材料特别适合用作光伏中的吸收体,这得益于其高吸收系数以及接近最佳且可精细调节的带隙。在此,我们设计了CuInSexS2-x量子点敏化剂,以提高量子点敏化TiO2太阳能电池(QDSSC)的性能。我们的量子点合成采用1-十二烷硫醇(DDT)作为低成本溶剂,它同时充当配体和硫前驱体;添加三烷基膦硒化物会导致掺入可控量的硒,与纯CuInS2量子点相比,减小了带隙。这使得在不牺牲光电压的情况下,太阳能光谱的近红外(IR)区域中的光电流显著更高。为了钝化量子点表面复合中心,我们在敏化之前用Cd进行表面阳离子交换,这提高了化学稳定性并导致光电流进一步增加。我们使用合成的量子点展示了功率转换效率高达3.5%的概念验证量子点敏化太阳能电池。