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Energy anisotropy of bimetal core-shell nanorods and its effects on morphology

机译:双金属核-壳纳米棒的能量各向异性及其对形貌的影响

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A thermodynamic analysis in the equilibrium state is presented to investigate the morphology evolution of silver and palladium epilayers deposited on gold nanorods (GNRs). With regard to Ag epilayers on GNRs, the misfit strain has a notably small value of 0.002 44 and the stored strain energy is three orders of magnitude lower than the energy contribution from the surface and interface. Consequently, Ag epilayers are preferred on the {111} facets on the two ends of the GNRs due to surface and interface energy minimization, and the growth of dumbbell-shaped structures is thus promoted. The reverse is the case for Pd epilayers on GNRs. The larger misfit strain of 0.048 83 increases the strain energy to the same magnitude as surface and interfacial energies. Long-time growth of Pd epilayers is favored along the {100} surfaces of the GNRs for strain energy minimization, and rectangular core-shell nanorods emerge. The theoretical analysis is consistent with relevant experimental results.
机译:提出了在平衡状态下的热力学分析,以研究沉积在金纳米棒(GNR)上的银和钯外延层的形态演变。对于GNR上的Ag外延层,失配应变的值非常小,为0.002 44,并且所存储的应变能比表面和界面的能量贡献低三个数量级。因此,由于表面和界面能的最小化,优选在GNR的两端的{111}小面上的Ag外延层,并且因此促进了哑铃形结构的生长。相反,GNR上的Pd外延层则是如此。 0.048 83的较大失配应变将应变能增加到与表面能和界面能相同的大小。沿GNR的{100}表面有利于Pd外延层的长期生长,以使应变能最小化,并且出现矩形核壳纳米棒。理论分析与相关实验结果吻合。

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