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Shape Control in Gold Nanoparticles by N-Containing Ligands: Insights from Density Functional Theory and Wulff Constructions

机译:含N含金纳米颗粒的形状控制通过N型配体:密度泛函理论和WULFF建筑的见解

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The controlled growth promoted by the use of ligands can affect the structural properties of nanoparticles, preferential growth and most likely exposed facets in their final shape. The chemistry is deeply dominated by the close relationship between both the interaction of the ligands and the metal structure. In the present work, we have illustrated the change in the nanoparticle shape as a function of a series of nitrogen bases. Particularly, we have employed Density Functional Theory to obtain the interaction energies of a series of nitrogen containing bases to gold surfaces with different orientations. The adsorption strength is found to correlate with the HOMO position of the ligand thus providing a fast screening tool for this property. Moreover, for small N-bases with high N content we have found that the shape can be tuned as a function of the coverage and the final structure at high coverages severely departs from that of bare gold nanoparticles. We have found variations in the different extension of the facets that can be further employed in obtaining structure sensitivity and the right chemical and catalytic performance.
机译:通过使用配体促进的受控生长可以影响纳米颗粒的结构性质,优先生长和最可能暴露在其最终形状的露面。化学在配体和金属结构的相互作用之间密切相关。在本作本作中,我们已经示出了纳米粒子形状的变化作为一系列氮碱的函数。特别地,我们已经采用了密度泛函理论,以获得含有不同取向的金表面的一系列氮气的相互作用能量。发现吸附强度与配体的同性恋位置相关,从而为该特性提供了快速筛选工具。此外,对于具有高N含量的小N基碱,我们发现该形状可以作为覆盖的函数调谐,并且在高覆盖物处的最终结构严重地偏离裸金纳米粒子。我们已经发现了可以进一步用于获得结构敏感性和良好的化学和催化性能的平面的不同延伸的变化。

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