三层准六方C60的团簇滑动铁电性

IF 9.4 1区 材料科学 Q1 CHEMISTRY, PHYSICAL
Xuefei Wang, Yanhan Ren, Shi Qiu, Fan Zhang, Xueao Li, Junfeng Gao, Weiwei Gao, Jijun Zhao
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引用次数: 0

摘要

电极化通常源于化合物中的非中心对称电荷分布。在单质晶体材料中,同一元素原子之间的化学键有利于对称分布的电子电荷和中心对称结构,这使得单质铁电体非常罕见。与原子相比,元素团簇本质上是不对称的,当它们组装形成晶体时可以有不同的优选方向。因此,不同取向团簇的组合往往会破坏反演对称性。通过利用这一概念,我们证明了滑动铁电性自然出现在三层准六方相(qHP) C60中,这是一种最近合成的簇组装碳同素异形体。与许多金属或半金属元素铁电体相比,三层qHP C60具有相当大的带隙和几种铁电结构,通过测量其二次谐波产生(SHG)响应可以区分。其中一些相位在0.2 pC/m的量级上显示出可切换的面外和面内极化。面外和面内极化可以独立切换,并且易于实现具有铁电性可切换手性的范德华同构结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cluster sliding ferroelectricity in trilayer Quasi-Hexagonal C60

Cluster sliding ferroelectricity in trilayer Quasi-Hexagonal C60

Electric polarization typically originates from non-centrosymmetric charge distributions in compounds. In elemental crystalline materials, chemical bonds between atoms of the same element favor symmetrically distributed electron charges and centrosymmetric structures, making elemental ferroelectrics rare. Compared to atoms, elemental clusters are intrinsically less symmetric and can have various preferred orientations when they are assembled to form crystals. Consequently, the assembly of clusters with different orientations tends to break the inversion symmetry. By exploiting this concept, we show that sliding ferroelectricity naturally emerges in trilayer quasi-hexagonal phase (qHP) C60, a cluster-assembled carbon allotrope recently synthesized. Compared to many metallic or semi-metallic elemental ferroelectrics, trilayer qHP C60’s have sizable band gaps and several ferroelectric structures, which are distinguishable by measuring their second-harmonic generation (SHG) responses. Some of these phases show both switchable out-of-plane and in-plane polarizations on the order of 0.2 pC/m. The out-of-plane and in-plane polarizations can be switched independently and enable an easy-to-implement construction of Van der Waals homostructures with ferroelectrically switchable chirality.

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来源期刊
npj Computational Materials
npj Computational Materials Mathematics-Modeling and Simulation
CiteScore
15.30
自引率
5.20%
发文量
229
审稿时长
6 weeks
期刊介绍: npj Computational Materials is a high-quality open access journal from Nature Research that publishes research papers applying computational approaches for the design of new materials and enhancing our understanding of existing ones. The journal also welcomes papers on new computational techniques and the refinement of current approaches that support these aims, as well as experimental papers that complement computational findings. Some key features of npj Computational Materials include a 2-year impact factor of 12.241 (2021), article downloads of 1,138,590 (2021), and a fast turnaround time of 11 days from submission to the first editorial decision. The journal is indexed in various databases and services, including Chemical Abstracts Service (ACS), Astrophysics Data System (ADS), Current Contents/Physical, Chemical and Earth Sciences, Journal Citation Reports/Science Edition, SCOPUS, EI Compendex, INSPEC, Google Scholar, SCImago, DOAJ, CNKI, and Science Citation Index Expanded (SCIE), among others.
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