Fichthorn Kristen A, Chen Zihao, Chen Zhifeng, Rioux Robert M, Kim Myung Jun, Wiley Benjamin J
Department of Chemistry, Duke University, Durham, North Carolina 27708, United States.
Department of Applied Chemistry, Kyung Hee University, Yongin 17104, Republic of Korea.
Langmuir. 2021 Apr 20;37(15):4419-4431. doi: 10.1021/acs.langmuir.1c00384. Epub 2021 Apr 9.
In this feature article, we provide an account of the Langmuir Lecture delivered by Kristen Fichthorn at the Fall 2020 Virtual Meeting of the American Chemical Society. We discuss how multiscale theory and simulations based on first-principles DFT were useful in uncovering the intertwined influences of kinetics and thermodynamics on the shapes of Ag and Cu cubes and nanowires grown in solution. We discuss how Ag nanocubes can form through PVP-modified deposition kinetics and how the addition of chloride to the synthesis can promote thermodynamic cubic shapes for both Ag and Cu. We discuss kinetic factors contributing to nanowire growth: in the case of Ag, we show that high-aspect-ratio nanowires can form as a consequence of Ag atom surface diffusion on the strained surfaces of Marks-like decahedral seeds. On the other hand, solution-phase chloride enhances Cu nanowire growth due to a synergistic interaction between adsorbed chloride and hexadecylamine (HDA), which leaves the {111} nanowire ends virtually bare while the {100} sides are fully covered with HDA. For each of these topics, a synergy between theory and experiment led to significant progress.
在这篇专题文章中,我们介绍了克里斯汀·菲克索恩在2020年秋季美国化学学会虚拟会议上发表的朗缪尔讲座内容。我们讨论了基于第一性原理密度泛函理论的多尺度理论和模拟如何有助于揭示动力学和热力学对溶液中生长的银和铜立方体及纳米线形状的交织影响。我们讨论了银纳米立方体如何通过聚乙烯吡咯烷酮修饰的沉积动力学形成,以及在合成中添加氯化物如何促进银和铜的热力学立方形状。我们讨论了促成纳米线生长的动力学因素:对于银的情况,我们表明高纵横比的纳米线可以由于银原子在马克斯型十面体种子的应变表面上的表面扩散而形成。另一方面,由于吸附的氯化物与十六烷基胺(HDA)之间的协同相互作用,溶液相氯化物增强了铜纳米线的生长,这使得{111}纳米线末端几乎裸露,而{100}面则完全被HDA覆盖。对于这些主题中的每一个,理论与实验之间的协同作用都带来了显著进展。