论文标题

液态 - 销售结构的拓扑控制

Topological Control of Liquid-Metal-Dealloyed Structures

论文作者

Lai, Longhai, Gaskey, Bernard, Chuang, Alyssa, Erlebacher, Jonah, Karma, Alain

论文摘要

在过去的几年中,液态金属交易的迅速开发,以制造纳米/中尺度的多孔和复合结构,并具有用于多种材料应用的超高界面区域。但是,此方法目前有两个重要的局限性。首先,它产生具有有限合金组成范围的高生物拓扑结构的双连续结构。其次,由于在高温下交易期间的大量变形,结构的韧带尺寸很大。在这里,我们通过计算和实验证明,可以通过添加金属融化的元素来克服这些局限性,该元素通过限制在DealLoying期间限制不混溶元素的泄漏来促进高生物拓扑。我们通过表明液体中不混溶元件的大量扩散运输进一步解释了这一发现,强烈影响了固体分数和在Deaploying过程中结构的拓扑的演变。结果阐明了液态金属和电化学交易的基本差异,并建立了一种新的方法来生产具有所需尺寸和拓扑结构的液态 - 金属级结构。

The past few years have witnessed the rapid development of liquid metal dealloying to fabricate nano-/meso-scale porous and composite structures with ultra-high interfacial area for diverse materials applications. However, this method currently has two important limitations. First, it produces bicontinuous structures with high-genus topologies for a limited range of alloy compositions. Second, structures have a large ligament size due to substantial coarsening during dealloying at high temperature. Here we demonstrate computationally and experimentally that those limitations can be overcome by adding to the metallic melt an element that promotes high-genus topologies by limiting the leakage of the immiscible element during dealloying. We further interpret this finding by showing that bulk diffusive transport of the immiscible element in the liquid melt strongly influences the evolution of the solid fraction and topology of the structure during dealloying. The results shed light on fundamental differences in liquid metal and electrochemical dealloying and establish a new approach to produce liquid-metal-dealloyed structures with desired size and topologies.

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