Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign , 206 Roger Adams Laboratory, 600 South Matthews Avenue, Urbana, Illinois 61801, United States.
George L. Clark X-ray Facility, University of Illinois at Urbana-Champaign , 505 South Matthews Avenue, Urbana, Illinois 61801, United States.
Nano Lett. 2017 Oct 11;17(10):6146-6150. doi: 10.1021/acs.nanolett.7b02751. Epub 2017 Sep 11.
Well-defined metal nanocrystals play important roles in various fields, such as catalysis, medicine, and nanotechnology. They are often synthesized through kinetically controlled process in colloidal systems that contain metal precursors and surfactant molecules. The chemical functionality of surfactants as coordinating ligands to metal ions however remains a largely unsolved problem in this process. Understanding the metal-ligand complexation and its effect on formation kinetics at the molecular level is challenging but essential to the synthesis design of colloidal nanocrystals. Herein we report that spontaneous ligand replacement and anion exchange control the form of coordinated Pt-ligand intermediates in the system of platinum acetylacetonate [Pt(acac)], primary aliphatic amine, and carboxylic acid ligands. The formed intermediates govern the formation mode of Pt nanocrystals, leading to either a pseudo two-step or a one-step mechanism by switching on or off an autocatalytic surface growth. This finding shows the importance of metal-ligand complexation at the prenucleation stage and represents a critical step forward for the designed synthesis of nanocrystal-based materials.
形态明确的金属纳米晶体在催化、医学和纳米技术等多个领域发挥着重要作用。它们通常通过胶体系统中的动力学控制过程合成,胶体系统中含有金属前体和表面活性剂分子。然而,在这个过程中,表面活性剂作为配位体与金属离子的化学功能仍然是一个尚未解决的大问题。在分子水平上理解金属-配体络合及其对形成动力学的影响具有挑战性,但对于胶体纳米晶体的合成设计至关重要。在此,我们报告在乙酰丙酮合铂[Pt(acac)]、伯脂肪胺和羧酸配体的体系中,自发的配体取代和阴离子交换控制配位 Pt-配体中间体的形式。所形成的中间体控制 Pt 纳米晶体的形成模式,通过打开或关闭自动催化表面生长,导致准两步或一步机制。这一发现表明了成核前阶段金属-配体络合的重要性,并代表了基于纳米晶体的材料的设计合成向前迈出的关键一步。