自旋电子学
反铁磁性
高压
材料科学
各向异性
极限(数学)
纳米技术
工作(物理)
酞菁铜
比例(比率)
金属有机骨架
铜
纳米尺度
电导
酞菁
凝聚态物理
电子结构
物理
化学物理
制作
环境压力
作者
Jie Zhang,Xiao Dong,Shengchao Qiu,Xin Yang,Chengyu Li,HongFei Ma,Yunfan Fei,Qingchao Zeng,Fang Li,Yi Xie,Yan Duan,Xudong Jiang,Jingqin Xu,Puyi Lang,Jiarui Yuan,Hao Luo,Fang Yuan,Zilin Zhao,Yikun Bao,Yajie Wang
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-08-20
卷期号:393 (6813): 826-830
标识
DOI:10.1126/science.aeg0028
摘要
Single-metal-atom chains (SMACs) represent the ultimate limit of one-dimensional nanostructures. They serve as archetypal model systems for condensed matter physics and constitute fundamental building blocks for next-generation nanoelectronics. However, synthesis of SMACs suitable for practical applications remains challenging. In this work, we create micrometer-long, carbon-sheathed copper SMACs at milligram scale by compressing β-copper phthalocyanine to above 21 gigapascals. The SMACs are in atom-scale ordering, are isolable through acid-assisted exfoliation, and exhibit exceptional stability, with Cu-Cu distance confined at 2.57 angstroms. Anisotropic conductance and antiferromagnetic interactions are suggested by experimental and computational results. This work establishes a universal synthetic strategy for sheathed SMACs, positioning them as a compelling platform for prospective electronic and spintronic applications.
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