Henkelmann Gideon, Waldow Diana, Liu Maowen, Lührs Lukas, Li Yong, Weissmüller Jörg
Institute of Materials Physics and Technology, Hamburg University of Technology, 21073 Hamburg, Germany.
Institute of Materials Mechanics, Helmholtz-Zentrum Hereon, 21502 Geesthacht, Germany.
Nano Lett. 2022 Aug 24;22(16):6787-6793. doi: 10.1021/acs.nanolett.2c02666. Epub 2022 Aug 11.
Experiment shows thin films of dealloyed nanoporous gold (NPG) spontaneously detaching from massive gold base layers. NPG can also densify near its external surface. This is naturally reproduced by kinetic Monte Carlo (KMC) simulation of dealloying and coarsening and so appears generic for nanoscale network materials evolving by surface diffusion. Near the porous layer's external surface and near its interface with the base layer, gradients in the depth-profile of a laterally averaged mean surface curvature provide driving forces for diffusion and cause divergences of the net fluxes of matter, leading to accretion/densification or to erosion/disconnection. As a toy model, the morphology evolution of substrate-supported nanopillars by surface diffusion illustrates and confirms our considerations. Contrary to cylindrical nanowires, the ligaments in nanoporous materials exhibit pre-existing gradients in the mean curvature. The Plateau-Rayleigh long-wavelength stability criterion is then not applicable and the disconnection accelerated.
实验表明,脱合金化纳米多孔金(NPG)薄膜会自发地从块状金基层上分离。NPG在其外表面附近也会致密化。通过脱合金化和粗化的动力学蒙特卡罗(KMC)模拟可以自然地再现这种现象,因此对于通过表面扩散演化的纳米级网络材料来说,这似乎是普遍存在的。在多孔层的外表面附近及其与基层的界面附近,横向平均平均表面曲率深度分布中的梯度为扩散提供驱动力,并导致物质净通量的发散,从而导致吸积/致密化或侵蚀/断开连接。作为一个简化模型,通过表面扩散的衬底支撑纳米柱的形态演变说明了并证实了我们的考虑。与圆柱形纳米线不同,纳米多孔材料中的韧带在平均曲率上存在预先存在的梯度。因此,普拉托-瑞利长波长稳定性准则不适用,断开连接加速。