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具有高稳定性、独特 motif、三重狄拉克锥和超导性的二维反范特霍夫/勒贝尔阵列 AlB

Two-Dimensional Anti-Van't Hoff/Le Bel Array AlB with High Stability, Unique Motif, Triple Dirac Cones, and Superconductivity.

作者信息

Song Bingyi, Zhou Yuan, Yang Hui-Min, Liao Ji-Hai, Yang Li-Ming, Yang Xiao-Bao, Ganz Eric

机构信息

Hubei Key Laboratory of Bioinorganic Chemistry and Materia Medica; Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education; Hubei Key Laboratory of Materials Chemistry and Service Failure; School of Chemistry and Chemical Engineering , Huazhong University of Science and Technology , Wuhan 430074 , China.

Department of Physics , South China University of Technology , Guangzhou 510640 , China.

出版信息

J Am Chem Soc. 2019 Feb 27;141(8):3630-3640. doi: 10.1021/jacs.8b13075. Epub 2019 Feb 14.

Abstract

We report the discovery of a rule-breaking two-dimensional aluminum boride (AlB-ptAl-array) nanosheet with a planar tetracoordinate aluminum (ptAl) array in a tetragonal lattice by comprehensive crystal structure search, first-principles calculations, and molecular dynamics simulations. It is a brand new 2D material with a unique motif, high stability, and exotic properties. These anti-van't Hoff/Le Bel ptAl-arrays are arranged in a highly ordered way and connected by two sheets of boron rhomboidal strips above and below the array. The regular alignment and strong bonding between the constituents of this material lead to very strong mechanical strength (in-plane Young's modulus Y = 379, Y = 437 N/m, much larger than that of graphene, Y = 340 N/m) and high thermal stability (the framework survived simulated annealing at 2080 K for 10 ps). Additionally, electronic structure calculations indicate that it is a rare new material with triple Dirac cones, Dirac-like fermions, and node-loop features. Remarkably, this material is predicted to be a 2D phonon-mediated superconductor with T = 4.7 K, higher than the boiling point of liquid helium (4.2 K). Surprisingly, the T can be greatly enhanced up to 30 K by applying tensile strain at 12%. This is much higher than the temperature of liquid hydrogen (20.3 K). These outstanding properties may pave the way for potential applications of an AlB-ptAl-array in nanoelectronics and nanomechanics. This work opens up a new branch of two-dimensional aluminum boride materials for exploration. The present study also opens a field of two-dimensional arrays of anti-van't Hoff/Le Bel motifs for study.

摘要

我们通过全面的晶体结构搜索、第一性原理计算和分子动力学模拟,报告了在四方晶格中发现的一种具有平面四配位铝(ptAl)阵列的违反规则的二维硼化铝(AlB-ptAl-阵列)纳米片。它是一种全新的二维材料,具有独特的结构单元、高稳定性和奇异特性。这些反范特霍夫/勒贝尔ptAl阵列以高度有序的方式排列,并由阵列上方和下方的两片硼菱形条带连接。这种材料的组成部分之间的规则排列和强键合导致了非常强的机械强度(面内杨氏模量Y = 379,Y = 437 N/m,远大于石墨烯的Y = 340 N/m)和高热稳定性(该框架在2080 K下模拟退火10 ps后仍能存活)。此外,电子结构计算表明它是一种罕见的具有三重狄拉克锥、类狄拉克费米子和节点环特征的新材料。值得注意的是,这种材料预计是一种二维声子介导的超导体,其临界温度T = 4.7 K,高于液氦的沸点(4.2 K)。令人惊讶的是,通过施加12%的拉伸应变,T可以大幅提高到30 K。这远高于液氢的温度(20.3 K)。这些优异的性能可能为AlB-ptAl-阵列在纳米电子学和纳米力学中的潜在应用铺平道路。这项工作开辟了二维硼化铝材料的一个新分支以供探索。本研究还开启了一个反范特霍夫/勒贝尔结构单元二维阵列的研究领域。

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