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具有三级结构层次的多孔金。

Porous gold with three-level structural hierarchy.

作者信息

Shi Yujun, Zhang Ying, Yu Bin, Yin Kuibo, Qin Jingyu, Zhang Zhonghua

机构信息

Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education), School of Materials Science and Engineering, Shandong University, Jingshi Road 17923, Jinan 250061, P.R. China.

SEU-FEI Nano-Pico Center, Key Lab of MEMS of Ministry of Education, Southeast University, Nanjing 210096, P.R. China.

出版信息

iScience. 2022 Sep 11;25(10):105113. doi: 10.1016/j.isci.2022.105113. eCollection 2022 Oct 21.

Abstract

Facilitating the mass transfer and enlarging the active surface area are two mutually exclusive demands in porous materials, while structural hierarchy could settle this issue by constructing continuous channels with different length scales. However, it is a great challenge to fabricate porous metallic materials with three or more geometrically similar hierarchy levels. Herein, a novel strategy combining vapor phase dealloying with electrochemical dealloying is proposed to achieve nanoporous gold (NPG) with three-level nested hierarchy (NPG), in which the length scale covers micron (5866.8 ± 1445.5 nm), submicron (509.9 ± 106.0 nm), and nanometer (20.1 ± 3.0 nm) for each level. Notably, the structural superiority of such material is manifested by its faster charge transfer behaviors, as benchmarked with unimodal and bimodal NPG (NPG and NPG). The present strategy is of great potential to fabricate other hierarchically porous metals with enhanced functional and structural properties.

摘要

在多孔材料中,促进传质和扩大活性表面积是两个相互矛盾的要求,而结构层次化可以通过构建具有不同长度尺度的连续通道来解决这个问题。然而,制造具有三个或更多几何相似层次水平的多孔金属材料是一项巨大的挑战。在此,提出了一种将气相脱合金与电化学脱合金相结合的新策略,以实现具有三级嵌套层次结构的纳米多孔金(NPG),其中每个层次的长度尺度涵盖微米级(5866.8 ± 1445.5 nm)、亚微米级(509.9 ± 106.0 nm)和纳米级(20.1 ± 3.0 nm)。值得注意的是,这种材料的结构优势表现为其更快的电荷转移行为,以单峰和双峰NPG(NPG和NPG)为基准。本策略在制造具有增强功能和结构性能的其他层次多孔金属方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8eb/9515608/37b0fef3b1b1/fx1.jpg

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