Dimensional crossover and chirality of boron adsorbates on copper (110) surfaces

IF 3.4 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Physical Review Materials Pub Date : 2024-08-07 DOI:10.1103/physrevmaterials.8.084003
Yuki Tsujikawa, Takeru Nakashima, Xiaoni Zhang, Kazuki Yamaguchi, Masafumi Horio, Masahiro Haze, Yukio Hasegawa, Fumio Komori, Takahiro Kondo, Yasunobu Ando, Iwao Matsuda
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Abstract

A copper boride phase found on Cu(110) exhibits dimensional crossover from 1D to 2D structures. The discovered surface phase, 7×1B/Cu(110), is composed of alternating two-atom and three-atom rows that are separated by trenches. The narrower rows behave as a 1D template for atomic boron chains, and the wider rows provide a new dimensional degree of freedom that facilitates the generation of 2D clusters with chirality. The 7×1 phase is nonperiodic in the chain direction and exhibits intermediate boron coverage, between that of the quasiperiodic 1D and periodic 2D phases of copper boride on Cu(110), demonstrating a unique feature of phase transitions at the surface.

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铜 (110) 表面硼吸附剂的尺寸交叉和手性
在铜(110)上发现的硼化铜相呈现出从一维结构到二维结构的维度交叉。所发现的 7×'1'-B/Cu(110) 表面相由交替出现的两原子行和三原子行组成,两原子行之间有沟槽隔开。较窄的原子行是原子硼链的一维模板,而较宽的原子行则提供了一个新的自由度,有利于产生具有手性的二维簇。7×'1'相在链方向上是非周期性的,表现出介于 Cu(110) 上硼化铜的准周期性 1D 相和周期性 2D 相之间的中间硼覆盖率,展示了表面相变的独特特征。
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来源期刊
Physical Review Materials
Physical Review Materials Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
5.80
自引率
5.90%
发文量
611
期刊介绍: Physical Review Materials is a new broad-scope international journal for the multidisciplinary community engaged in research on materials. It is intended to fill a gap in the family of existing Physical Review journals that publish materials research. This field has grown rapidly in recent years and is increasingly being carried out in a way that transcends conventional subject boundaries. The journal was created to provide a common publication and reference source to the expanding community of physicists, materials scientists, chemists, engineers, and researchers in related disciplines that carry out high-quality original research in materials. It will share the same commitment to the high quality expected of all APS publications.
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