Department of Chemistry and James Franck Institute, University of Chicago , Chicago, Illinois 60637, United States.
ACS Nano. 2014 Jul 22;8(7):7359-69. doi: 10.1021/nn502470v. Epub 2014 Jul 8.
We investigate simple halides and pseudohalides as an important class of inorganic ligands for nanocrystals (NCs) in solution phase ligand exchange. These short, robust, and easy to model ligands bind to the NC surface and provide electrostatic stabilization of NC dispersions in N-methylformamide. The replacement of organic ligands on NCs with compact halide and pseudohalide ligands greatly facilitates electronic communication between NCs. For example, a high electron mobility of μ ≈ 12 cm(2) V(-1) s(-1) has been observed in thin films made of I(-)-capped CdSe NCs. We also studied charge transport properties of thin films based on the pseudohalide N3(-)-capped InAs NCs, suggesting the possibility of obtaining "all III-V" NC solids. In addition, we extend the surface chemistry of halometallates (e.g., CH3NH3PbI3), which can stabilize colloidal solutions of lead chalcogenide NCs. These halide, pseudohalide, and halometallate ligands enrich the current family of inorganic ligands and can open up more opportunities for applications of NCs in the fields of electronics, optoelectronics, and thermoelectrics.
我们研究简单的卤化物和拟卤化物,将其作为纳米晶体(NCs)在溶液相配体交换中一类重要的无机配体。这些短链、稳定且易于建模的配体与 NC 表面结合,并为 NC 在 N-甲基甲酰胺中的分散体提供静电稳定。用紧凑的卤化物和拟卤化物配体取代 NC 上的有机配体,极大地促进了 NC 之间的电子通信。例如,在由 I(-)封端的 CdSe NCs 制成的薄膜中观察到了高电子迁移率 μ≈12 cm(2) V(-1) s(-1)。我们还研究了基于拟卤化物 N3(-)封端的 InAs NCs 的薄膜的电荷输运性质,表明有可能获得“全 III-V”NC 固体。此外,我们扩展了卤金属酸盐(例如 CH3NH3PbI3)的表面化学性质,其可以稳定胶体溶液中的 Pb 硫属化物 NCs。这些卤化物、拟卤化物和卤金属酸盐配体丰富了当前的无机配体家族,并为 NC 在电子学、光电学和热电学领域的应用开辟了更多机会。