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Enhanced flexibility and electron-beam-controlled shape recovery in alumina-coated Au and Ag core-shell nanowires

机译:增强氧化铝涂覆的Au和Ag核心壳纳米线中的柔韧性和电子束控制的形状回收

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The proper choice of coating materials and methods in core-shell nanowire (NW) engineering is crucial to assuring improved characteristics or even new functionalities of the resulting composite structures. In this paper, we have reported electron-beam-induced reversible elastic-to-plastic transition in Ag/Al2O3 and Au/Al2O3 NWs prepared by the coating of Ag and AuNWs with Al2O3 by low-temperature atomic layer deposition. The observed phenomenon enabled freezing the bent core-shell NW at any arbitrary curvature below the yield strength of the materials and later restoring its initially straight profile by irradiating the NW with electrons. In addition, we demonstrated that the coating efficiently protects the core material from fracture and plastic yield, allowing it to withstand significantly higher deformations and stresses in comparison to uncoated NW.
机译:核心 - 壳纳米线(NW)工程中的涂层材料和方法的正确选择对于确保所得复合结构的改进的特性甚至新功能是至关重要的。 在本文中,我们已经报道了通过低温原子层沉积的Ag和AUNW涂覆的Ag / Al2O3和Au / Al2O3 Nws中的电子束诱导的可逆弹性转变为Ag和AUNW。 所观察到的现象使得在低于材料的屈服强度的任意曲率下冻结弯曲的芯壳NW,并通过用电子照射NW来恢复其最初的直曲线。 此外,我们证明涂层有效地保护芯材免受骨折和塑料产量的,使其能够承受与未涂覆的NW相比明显更高的变形和应力。

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