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相关论文: Emerging versatile two-dimensional MoSi$_2$N$_4$ f…

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The existence of two novel hybrid two-dimensional (2D) monolayers, 2D B3C2P3 and 2D B2C4P2, has been predicted based on the density functional theory calculations. It has been shown that these materials possess structural and thermodynamic…

The new two-dimensional materials, MoSi$_2$N$_4$ and WSi$_2$N$_4$ are experimentally synthesized successfully and various similar structures are predicted theoretically. Here, we report the electronic properties with a special focus on the…

材料科学 · 物理学 2023-03-01 Sajjan Sheoran , Deepika Gill , Ankita Phutela , Saswata Bhattacharya

Contemporary science is witnessing a rapid expansion of the two-dimensional (2D) materials family, each member possessing intriguing emergent properties of fundamental and practical importance. Using the particle-swarm optimization method…

介观与纳米尺度物理 · 物理学 2017-09-13 Zhili Zhu , Xiaolin Cai , Chunyao Niu , Seho Yi , Zhengxiao Guo , Feng Liu , Jun-Hyung Cho , Yu Jia , Zhenyu Zhang

Coordination-related, two-dimensional (2D) structural phase transitions are a fascinating and novel facet of two-dimensional materials with structural degeneracies. Nevertheless, a unified theoretical account of these transitions remains…

介观与纳米尺度物理 · 物理学 2018-01-31 Salvador Barraza-Lopez , Thaneshwor P. Kaloni , Shiva P. Poudel , Pradeep Kumar

Two-dimensional crystals with coupling of ferroelasticity and attractive electronic properties offer unprecedent opportunities for achieving long-sought controllable devices. But so far, the reported proposals are mainly based on…

材料科学 · 物理学 2019-10-22 Ting Zhang , Yandong Ma , Xilong Xu , Chengan Lei , Baibiao Huang , Ying Dai

The two-dimensional (2D) semiconductor indium selenide (InSe) has attracted significant interest due its unique electronic band structure, high electron mobility and wide tunability of its band gap energy achieved by varying the layer…

材料科学 · 物理学 2020-04-29 Yuanhui Sun , Yawen Li , Tianshu Li , Koushik Biswas , Amalia Patanè , Lijun Zhang

The recently experimentally synthesized monolayer $\mathrm{MoSi_2N_4}$ and $\mathrm{WSi_2N_4}$ (\textcolor[rgb]{0.00,0.00,1.00}{Science 369, 670-674 (2020})) lack inversion symmetry, which allows them to become piezoelectric. In this work,…

材料科学 · 物理学 2020-12-29 San-Dong Guo , Yu-Tong Zhu , Wen-Qi Mu , Lei Wang , Xing-Qiu Chen

2D ferromagnets offer valuable insights into the fundamentals of magnetism and stimulate the progress of ultracompact spintronics. The demand for seamless integration of the materials with the Si technology, particularly helpful to their…

This study investigates the structural, mechanical, and electronic properties of novel two-dimensional (2D) pentaoctite (PO) monolayers composed of group-IV elements (PO-C, PO-Si, PO-Ge, and PO-Sn) using first-principles calculations.…

介观与纳米尺度物理 · 物理学 2024-09-13 Vanessa D. Kegler , Igor S. S. de Oliveira , Dominike Pacine , Ricardo W. Nunes , Teldo A. S. Pereira , Erika N. Lima

Motivated by the recently synthesized layered material MoSi2N4, we investigated excitonic response of quasiparticle of monolayer MoSi2N4 by using G0W0 and Bethe-Salpeter equation (BSE) calculations. With a dually sandwiched structure…

材料科学 · 物理学 2022-05-18 Dan Liang , Shi Xu , Pengfei Lu , Yongqing Cai

Two-dimensional (2D) layered transition metal dichalcogenides (TMDs) have recently attracted tremendous interest as potential valleytronic and nano-electronic materials, in addition to being well-known as excellent lubricants in the bulk.…

MXenes and MBenes, which are two-dimensional (2D) transition metal carbides/nitrides and borides, have been extensively studied for their impressive properties. Recently, we reported a family of transition metal sulfides MSene (M2S) with…

材料科学 · 物理学 2025-06-26 Shu-Xiang Qiao , Kai-Yue Jiang , Yu-Lin Han , Na Jiao , Ying-Jie Chen , Hong-Yan Lu , Ping Zhang

Two-dimensional (2D) magnetic materials are essential for the development of the next-generation spintronic technologies. Recently, layered van der Waals (vdW) compound MnBi2Te4 (MBT) has attracted great interest, and its 2D structure has…

We predict enormous piezoelectric effects in intrinsic monolayer group IV monochalcogenides (MX, M=Sn or Ge, X=Se or S), including SnSe, SnS, GeSe and GeS. Using first-principle simulations based on the modern theory of polarization, we…

材料科学 · 物理学 2015-11-05 Ruixiang Fei , Wenbin Li , Ju Li , Li Yang

The study of atomically thin two-dimensional materials is a young and rapidly growing field. In the past years, a great advance in the study of the remarkable electrical and optical properties of 2D materials fabricated by exfoliation of…

介观与纳米尺度物理 · 物理学 2015-01-27 Andres Castellanos-Gomez , Vibhor Singh , Herre S. J. van der Zant , Gary A. Steele

Two-dimensional (2D) materials have become a fertile playground for the exploration and manipulation of novel collective electronic states. Recent experiments have unveiled a variety of robust 2D orders in highly-crystalline materials…

The electronic properties of a field-effect transistor with two different structures of MoSi$_2$N$_4$ and WSi$_2$N$_4$ monolayers as the channel material in the presence of biaxial strain are investigated. The band structures show that…

材料科学 · 物理学 2022-06-09 Nayereh Ghobadi , Manouchehr Hosseini , Shoeib Babaee Touski

Topological semimetal phases in two-dimensional (2D) materials have gained widespread interest due to their potential applications in developing nanoscale devices. Despite the prediction of the Dirac/Weyl points in a wide variety of 2D…

Atomically thin two dimensional (2D) layered materials have emerged as a new class of material for nanoelectromechanical systems (NEMS) due to their extraordinary mechanical properties and ultralow mass density. Among them, graphene has…

介观与纳米尺度物理 · 物理学 2015-05-28 C. Samanta , P. R. Yasasvi Gangavarapu , A. K. Naik

van der Waals (vdW) magnets, an emerging family of two-dimensional (2D) materials, have received tremendous attention due to their rich fundamental physics and significant potential for cutting-edge technological applications. In contrast…