Folgueras Maria C, Louisia Sheena, Jin Jianbo, Gao Mengyu, Du Alexandra, Fakra Sirine C, Zhang Rui, Seeler Fabian, Schierle-Arndt Kerstin, Yang Peidong
Department of Materials Science and Engineering, University of California, Berkeley, Berkeley, California 94720, United States.
California Research Alliance (CARA), BASF Corporation, Berkeley, California 94720, United States.
Nano Lett. 2021 Oct 27;21(20):8856-8862. doi: 10.1021/acs.nanolett.1c03308. Epub 2021 Oct 6.
Traditional covalent semiconductors require complex processing methods for device fabrication due to their high cohesive energies. Here, we develop a stable, ligand-free perovskite semiconductor ink that can be used to make patterned semiconductor-based optoelectronics in one step. The perovskite ink is formed via the dissolution of crystals of vacancy-ordered double perovskite CsTeX (X = Cl, Br, I) in polar aprotic solvents, leading to the stabilization of isolated [TeX] octahedral anions and free Cs cations without the presence of ligands. The stabilization of the fundamental perovskite ionic octahedral building blocks in solution creates multifunctional inks with the ability to reversibly transform between the liquid ink and the solid-state perovskite crystalline system in air within minutes. These easily processable inks can be patterned onto various materials via dropcasting, spraying or painting, and stamping, highlighting the crucial role of solvated octahedral complexes toward the rapid formation of phase-pure perovskite structures in ambient conditions.
传统的共价半导体由于其高内聚能,在器件制造过程中需要复杂的加工方法。在此,我们开发了一种稳定的、无配体的钙钛矿半导体墨水,可用于一步制造基于图案化半导体的光电器件。钙钛矿墨水是通过将空位有序双钙钛矿CsTeX(X = Cl、Br、I)晶体溶解在极性非质子溶剂中形成的,从而在没有配体的情况下使孤立的[TeX]八面体阴离子和游离Cs阳离子得以稳定。溶液中基本钙钛矿离子八面体结构单元的稳定化产生了多功能墨水,使其能够在几分钟内在空气中在液体墨水和固态钙钛矿晶体系统之间可逆转变。这些易于加工的墨水可以通过滴铸、喷涂、刷涂和压印等方式图案化到各种材料上,突出了溶剂化八面体配合物在环境条件下对快速形成纯相钙钛矿结构的关键作用。