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消色差铜曲面的抗氧化性

Self-Oxidation Resistance of the Curved Surface of Achromatic Copper.

作者信息

Kim Young-Hoon, Kim Seong-Gon, Lee Seunghun, Cheon Miyeon, Kim Su Jae, Nam Kideuk, Lamichhane Bipin, Park Sung Heum, Jung Min-Hyoung, Kim Ji-Soo, Seo Yu-Seong, Ha Taewoo, Hwang Jungseek, Jeong Hu Young, Lee Yusil, Lee Young Hee, Kim Young-Min, Jeong Se-Young

机构信息

Department of Energy Science, Sungkyunkwan University (SKKU), Suwon, 16419, Republic of Korea.

Department of Physics and Astronomy, Mississippi State University, Starkville, MS, 39762, USA.

出版信息

Adv Mater. 2023 Oct;35(42):e2210564. doi: 10.1002/adma.202210564. Epub 2023 Aug 16.

DOI:10.1002/adma.202210564
PMID:37548080
Abstract

Copper surfaces that exhibit a wide range of achromatic colors while still metallic have not been studied, despite advancements in antireflection coatings. A series of achromatic copper films grown with [111] preferred orientation by depositing 3D porous nanostructures is introduced via coherent/incoherent atomic sputtering epitaxy. The porous copper nanostructures self-regulate the giant oxidation resistance by constructing a curved surface that generates a series of monoatomic steps, followed by shrinkage of the lattice spacing of one or two surface layers. First-principles calculations confirm that these structural components cooperatively increase the energy barrier against oxygen penetration. The achromaticity of the single-crystalline porous copper films is systematically tuned by geometrical parameters such as pore size distribution and 3D linkage. The optimized achromatic copper films with high oxidation resistance show an unusual switching effect between superhydrophilicity and superhydrophobicity. The tailored 3D porous nanostructures can be a candidate material for numerous applications, such as antireflection coatings, microfluidic devices, droplet tweezers, and reversible wettability switches.

摘要

尽管抗反射涂层取得了进展,但对于那些呈现出广泛无彩色且仍具金属特性的铜表面,尚未进行研究。通过相干/非相干原子溅射外延法,引入了一系列通过沉积三维多孔纳米结构而生长出具有[111]择优取向的无彩色铜膜。多孔铜纳米结构通过构建一个能产生一系列单原子台阶的曲面,随后使一两个表面层的晶格间距收缩,从而自我调节巨大的抗氧化性。第一性原理计算证实,这些结构成分协同增加了阻止氧气渗透的能垒。单晶多孔铜膜的无彩色通过诸如孔径分布和三维连接等几何参数进行系统调节。具有高抗氧化性的优化无彩色铜膜在超亲水性和超疏水性之间表现出不寻常的切换效应。定制的三维多孔纳米结构可成为众多应用的候选材料,如抗反射涂层、微流体装置、液滴镊子和可逆润湿性开关。

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