Li Yuanwei, Lin Haixin, Zhou Wenjie, Sun Lin, Samanta Devleena, Mirkin Chad A
Department of Chemical and Biological Engineering, Northwestern University, Evanston, IL 60208, USA.
International Institute for Nanotechnology, Northwestern University, Evanston, IL 60208, USA.
Sci Adv. 2021 Jan 15;7(3). doi: 10.1126/sciadv.abf1410. Print 2021 Jan.
The ability to precisely control nanocrystal (NC) shape and composition is useful in many fields, including catalysis and plasmonics. Seed-mediated strategies have proven effective for preparing a wide variety of structures, but a poor understanding of how to selectively grow corners, edges, and facets has limited the development of a general strategy to control structure evolution. Here, we report a universal synthetic strategy for directing the site-specific growth of anisotropic seeds to prepare a library of designer nanostructures. This strategy leverages nucleation energy barrier profiles and the chemical potential of the growth solution to control the site-specific growth of NCs into exotic shapes and compositions. This strategy can be used to not only control where growth occurs on anisotropic seeds but also control the exposed facets of the newly grown regions. NCs of many shapes are synthesized, including over 10 here-to-fore never reported NCs and, in principle, many others are possible.
精确控制纳米晶体(NC)的形状和组成的能力在包括催化和等离子体学在内的许多领域都很有用。种子介导的策略已被证明对制备各种结构有效,但对如何选择性地生长角、边和面的理解不足限制了控制结构演化的通用策略的发展。在这里,我们报告了一种通用的合成策略,用于指导各向异性种子的位点特异性生长,以制备一系列定制的纳米结构。该策略利用成核能垒分布和生长溶液的化学势来控制纳米晶体在位点特异性生长成奇异的形状和组成。该策略不仅可用于控制各向异性种子上生长发生的位置,还可用于控制新生长区域的暴露面。合成了许多形状的纳米晶体,包括此处之前从未报道过的10多种纳米晶体,原则上,还有许多其他形状也是可能的。