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应变诱导的能带调制以及五重 MP(M = Ni、Pd 和 Pt)单层的优异稳定性、输运和光学性质。

Strain-induced band modulation and excellent stability, transport and optical properties of penta-MP (M = Ni, Pd, and Pt) monolayers.

作者信息

Kumar Vipin, Roy Debesh R

机构信息

Materials and Biophysics Group, Department of Applied Physics, S. V. National Institute of Technology Surat 395007 India

Hanse-Wissenschaftskolleg (HWK) Lehmkuhlenbusch 4 27753 Delmenhorst Germany.

出版信息

Nanoscale Adv. 2020 Aug 31;2(10):4566-4580. doi: 10.1039/d0na00503g. eCollection 2020 Oct 13.

Abstract

First principle calculations utilizing density functional theory were carried out to investigate the electronic, transport and optical properties of penta-MP (M = Ni, Pd and Pt) monolayer compounds under applied uniaxial and biaxial tensile strains. With an optimum magnitude of applied strain, we found band gap transitions in penta-MP monolayers from zero/narrow to the semiconductor regime, wherein band gaps were noticed to be firmly dependent on the applied uniaxial and biaxial tensile strains. In this study, the PBE approach was used primarily to evaluate electronic properties, from where the identified architectures of penta-MP with maximum obtained bandgaps under respective optimum strains were assessed through the HSE06 method of calculation for better estimation of band gaps and optical properties. Prior to HSE calculations, we affirmed our assessment for the stability and reliability of the compounds under uniaxial and biaxial strains of up to 15% through phonon spectrum and elastic calculations. A distinct transition was also noted from semiconductor to metal for all compounds after the applied optimum uniaxial and biaxial strains. The optical absorption spectra in all the stretched penta-MP compounds reached the order of 10 cm, with significant peaks belonging to the IR and visible regions; this indicates promising applications of these materials in high-performance solar energy and good hot mirror materials. The enhanced - responses under uniaxial and biaxial tensile strains using the non-equilibrium Green's function (NEGF) approach confirm the usefulness of the strained state of the considered penta-MP monolayers. The results show that tuning electronic properties, - characteristics and optical properties of stretched penta-MP compounds under tensile strain merits significant future applications in optoelectronic devices and as good hot mirror materials.

摘要

利用密度泛函理论进行了第一性原理计算,以研究五 - MP(M = Ni、Pd和Pt)单层化合物在单轴和双轴拉伸应变作用下的电子、输运和光学性质。在施加最佳应变幅度时,我们发现五 - MP单层的带隙从零/窄带隙转变到半导体区域,其中带隙被发现强烈依赖于所施加的单轴和双轴拉伸应变。在本研究中,主要使用PBE方法评估电子性质,并通过HSE06计算方法评估在各自最佳应变下获得最大带隙的五 - MP的确定结构,以便更好地估计带隙和光学性质。在进行HSE计算之前,我们通过声子谱和弹性计算确认了化合物在高达15%的单轴和双轴应变下的稳定性和可靠性评估。在施加最佳单轴和双轴应变后,所有化合物也都出现了从半导体到金属的明显转变。所有拉伸后的五 - MP化合物的光吸收光谱达到10 cm量级,有属于红外和可见光区域的显著峰值;这表明这些材料在高性能太阳能和优质热镜材料方面有广阔的应用前景。使用非平衡格林函数(NEGF)方法在单轴和双轴拉伸应变下增强的响应证实了所考虑的五 - MP单层应变状态的有用性。结果表明,在拉伸应变下调节拉伸后的五 - MP化合物的电子性质、特性和光学性质在光电器件和作为优质热镜材料方面具有重要的未来应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdb0/9417837/c7e9532b683e/d0na00503g-f1.jpg

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