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铂纳米颗粒结构的联合密度泛函和 X 射线衍射研究。

A combined density functional and x-ray diffraction study of Pt nanoparticle structure.

机构信息

Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, Texas 78712-0165, USA.

出版信息

J Chem Phys. 2011 Jul 7;135(1):014503. doi: 10.1063/1.3607967.

Abstract

The structure of 1.7 nm Pt nanoparticles is investigated using x-ray diffraction (XRD) measurements and density functional theory (DFT) calculations. Two types of particles are compared, those made by solution chemistry which are capped either by thiol or amine ligands, and dendrimer encapsulated particles (DENs) which do not have capping ligands. All particles were dried before analyzing their structure. Pair distribution function (PDF) data from XRD measurements show that the ligand-capped particles are more disordered than the DENs. To determine the structure of the particles and the nature of the ligand-induced disorder, we use a hybrid reverse Monte Carlo approach. A weighted average of the calculated binding energy of the particles and a goodness-of-fit parameter to the PDF data is taken as the object function, which is minimized to determine the optimal structure. A scan over different weights gives the set of pareto optimal structures, which show how well simultaneous agreement can be reached to both experiment and theory. Using an embedded atom potential to sample configuration space and DFT to refine the optimal structures, we show that the DEN structure is most consistent with a face centered cubic lattice of truncated octahedral shape. The disorder induced by the capping ligands is consistent with surface relaxation of the particle rather than disorder of the crystal structure.

摘要

采用 X 射线衍射(XRD)测量和密度泛函理论(DFT)计算研究了 1.7nmPt 纳米粒子的结构。比较了两种类型的粒子,一种是通过溶液化学方法制备的,用巯基或胺配体封端,另一种是没有封端配体的树枝状大分子封装粒子(DENs)。所有粒子在分析其结构之前都进行了干燥处理。来自 XRD 测量的配体封端粒子的 PDF 数据表明,配体封端粒子比 DENs 更无序。为了确定粒子的结构和配体诱导无序的性质,我们使用了混合逆蒙特卡罗方法。将粒子的计算结合能的加权平均值和 PDF 数据的拟合优度参数作为目标函数,最小化该目标函数以确定最佳结构。对不同权重的扫描给出了 Pareto 最优结构集,该结构集展示了同时达到实验和理论的良好一致性的程度。使用嵌入原子势来采样配置空间和 DFT 来优化最优结构,我们表明 DEN 结构与截角八面体形状的面心立方晶格最一致。配体封端引起的无序与晶体结构的无序一致,而不是与颗粒表面的弛豫一致。

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