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Elastic properties of gold supracrystals: Effects of nanocrystal size, ligand length, and nanocrystallinity

机译:金超晶的弹性特性:纳米晶尺寸,配体长度和纳米晶度的影响

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Atomistic molecular dynamics simulations are performed to study the elastic properties of alkylthiol-functionalized gold supracrystals. The predicted Young's and shear moduli are around 1 GPa and 100 MPa, respectively. We show that, with increasing NC size, the Young's modulus decreases while the shear modulus essentially remains invariant; with increasing ligand length, the Young's modulus increases but the shear modulus decreases. Moreover, significant increase in the Young's modulus is seen when the polycrystalline NCs are replaced by single-crystal ones of the same size. All these are in reasonable agreement with available experiments. We attribute the mechanisms to the interaction between capping ligands as well as its variations caused by the change in ligand length and NC geometry. The results may deepen our understanding of elastic properties of the supracrystals and their influential factors. Published by AIP Publishing.
机译:进行原子分子动力学模拟以研究烷基硫醇官能化的金超晶体的弹性特性。预测的杨氏模量和剪切模量分别约为1 GPa和100 MPa。我们表明,随着NC尺寸的增加,杨氏模量下降,而剪切模量基本上保持不变。随着配体长度的增加,杨氏模量增加,但剪切模量减少。此外,当多晶NC替换为相同尺寸的单晶NC时,杨氏模量显着增加。所有这些都与可用的实验合理地吻合。我们将机制归因于封端配体之间的相互作用以及配体长度和NC几何形状变化引起的变化。结果可能加深我们对超晶的弹性性质及其影响因素的理解。由AIP Publishing发布。

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