Department of Chemistry, University of Washington, Seattle, WA, 98195, USA.
Angew Chem Int Ed Engl. 2018 Feb 12;57(7):1908-1912. doi: 10.1002/anie.201711539. Epub 2018 Jan 24.
We have synthesized InP nanocrystals of an unprecedented crystal phase at low temperature (35-100 °C) by templated growth of InP magic-sized clusters. With the addition of stoichiometric equivalents of P(SiMe ) to the starting cluster, we demonstrate nanocrystal growth mediated through a partial dissolution and recrystallization pathway. This growth process was monitored using a combination of in situ UV/Vis and P NMR spectroscopy, revealing the intermediacy of smaller cluster species of higher symmetry. The nanocrystals that result from this templated growth exhibit a crystal structure that is neither zincblende nor wurtzite, and instead is derived from the original cluster. This structure is best described as a 3D polytwistane phase as deduced from a combination of X-ray diffraction, Raman, and solid-state NMR spectroscopy methods.
我们通过模板生长 InP 魔法尺寸簇,在低温(35-100°C)下合成了前所未有的晶体相的 InP 纳米晶体。通过向起始簇中添加化学计量当量的 P(SiMe ),我们证明了通过部分溶解和再结晶途径介导的纳米晶体生长。使用原位 UV/Vis 和 P NMR 光谱学的组合监测了这一生长过程,揭示了具有更高对称性的更小簇物质的中间体。这种模板生长得到的纳米晶体表现出既不是闪锌矿也不是纤锌矿的晶体结构,而是源自原始簇。根据 X 射线衍射、拉曼和固态 NMR 光谱学方法的组合,该结构最好被描述为 3D 多扭曲烷相。