Yang Jonghee, Kim Minseon, Lee Seungjin, Yoon Jung Won, Shome Sanchari, Bertens Koen, Song Hochan, Lim Seul Gi, Oh Jae Taek, Bae Sung Yong, Lee Bo Ram, Yi Whikun, Sargent Edward H, Choi Hyosung
Department of Chemistry, Hanyang University, Seoul 04763, Republic of Korea.
Research Institute for Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Aug 11;13(31):36992-37003. doi: 10.1021/acsami.1c06352. Epub 2021 Jul 31.
Development of colloidal quantum dot (CQD) inks enables single-step spin-coating of compact CQD films of appropriate thickness, enabling the promising performance of CQD photovoltaics (CQDPVs). Today's highest-performing CQD inks rely on volatile -butylamine (BTA), but it is incompatible with scalable deposition methods since a rapid solvent evaporation results in irregular film thickness with an uneven surface. Here, we present a hybrid solvent system, consisting of BTA and ,-dimethylformamide, which has a favorable acidity for colloidal stability as well as an appropriate vapor pressure, enabling a stable CQD ink that can be used to fabricate homogeneous, large-area CQD films via spray-coating. CQDPVs fabricated with the CQD ink exhibit suppressed charge recombination as well as fast charge extraction compared with conventional CQD ink-based PVs, achieving an improved power conversion efficiency (PCE) of 12.22% in spin-coated devices and the highest ever reported PCE of 8.84% among spray-coated CQDPVs.
胶体量子点(CQD)墨水的开发使得能够通过一步旋涂制备出具有合适厚度的致密CQD薄膜,这为CQD光伏电池(CQDPV)带来了良好的性能。目前性能最佳的CQD墨水依赖于挥发性的丁胺(BTA),但它与可扩展的沉积方法不兼容,因为快速的溶剂蒸发会导致膜厚不规则且表面不均匀。在此,我们提出了一种由BTA和N,N-二甲基甲酰胺组成的混合溶剂体系,该体系对胶体稳定性具有良好的酸度以及合适的蒸气压,能够制备出稳定的CQD墨水,可用于通过喷涂制备均匀的大面积CQD薄膜。与传统的基于CQD墨水的光伏电池相比,用该CQD墨水制备的CQDPV表现出抑制的电荷复合以及快速的电荷提取,在旋涂器件中实现了12.22%的提高的功率转换效率(PCE),在喷涂CQDPV中达到了迄今为止报道的最高PCE 8.84%。