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相关论文: Band gap engineering by functionalization of BN sh…

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We have investigated the low frequency (f) flicker (also called 1/f) noise of single-layer graphene devices on h-BN (placed on SiO2/Si) along with those on SiO2/Si. We observe that the devices fabricated on h-BN have on average one order of…

介观与纳米尺度物理 · 物理学 2015-09-30 Morteza Kayyalha , Yong P. Chen

We present a systematic analysis of the effect of radial deformation on the atomic and electronic structure of zigzag and armchair single wall carbon nanotubes using the first principle plane wave method. The nanotubes were deformed by…

材料科学 · 物理学 2016-08-31 O. Gulseren , T. Yildirim , S. Ciraci , C. Kilic

Three new novel phases of carbon nitride (CN) bilayer, which are named as \alpha-C$_{2}$N$_{2}$, \beta-C$_{2}$N$_{2}$ and \gamma-C$_{4}$N$_{4}$, respectively, have been predicted in this paper. All of them are consisted of two CN sheets…

材料科学 · 物理学 2019-02-01 Wanxing Lin , Shi-Dong Liang , Chunshan He , Wucheng Xie , Haiying He , Quanxiang Mai , Jiesen Li , D. X. Yao

Hydrogenation has proven to be an effective tool to open the bandgap of graphene. In the present density functional study we demonstrate that single-side-hydrogenated graphene is a semiconductor with an indirect bandgap of 1.89 eV, in…

材料科学 · 物理学 2011-03-01 Bhalchandra S. Pujari , Sergey Gusarov , Michael Brett , Andriy Kovalenko

In this article, the electronic band structure $\beta-(Al_xGa_{1-x})_2O_3$ alloy system is calculated with $\beta-Ga_2O_3$ as the bulk crystal. The technique of band unfolding is implemented to obtain the effective bandstructure…

材料科学 · 物理学 2022-07-18 Ankit Sharma , Uttam Singisetti

The electronic band structure of CaSnN$_2$ in the wurtzite-based $Pna2_1$ structure is calculated using the Quasiparticle Self-consistent (QS)GW$^{BSE}$ method, including ladder diagrams in the screened Coulomb interaction W$^{BSE}$ and is…

材料科学 · 物理学 2026-04-20 Ilteris K. Turan , Sarker Md. Sadman , Walter R. L. Lambrecht

We present a comprehensive study of the electronic structure of the layered semiconductor InSe using density functional theory. We calculate the band structure of the monolayer and bulk material with the band gap corrected using hybrid…

材料科学 · 物理学 2017-09-20 Yuzheng Guo , John Robertson

In this study, using the density functional theory, we have investigated the bulk physical properties like structural, electronic band structure, elastic properties, thermal properties, optical properties and bonding features of AlPO4…

材料科学 · 物理学 2024-07-29 A. S. M. Muhasin Reza , Md. Asif Afzal , S. H. Naqib

Using first-principles calculations, we study the dependence of the electronic and vibrational properties of multi-layered PbI 2 crystals on the number of layers and focus on the electronic-band structure and the Raman spectrum.…

介观与纳米尺度物理 · 物理学 2018-09-26 Mehmet Yagmurcukardes , Francois M. Peeters , Hasan Sahin

We determine the fundamental electronic and optical properties of the high-thermal-conductivity III-V semiconductor boron arsenide (BAs) using density functional and many body perturbation theory including quasiparticle and spin-orbit…

材料科学 · 物理学 2019-01-17 Kyle Bushick , Kelsey Mengle , Nocona Sanders , Emmanouil Kioupakis

The buckling effects due to BN-bonds in BN-codoped silicene, BSi$_6$N, on structural stability, electronic band structure, and mechanical, thermal and optical properties are studied systematically by first-principle calculations within…

Electronic band structure and optical properties of zinc monochalcogenides with zinc-blende- and wurtzite-type structures were studied using the ab initio density functional method within the LDA, GGA, and LDA+U approaches. Calculations of…

软凝聚态物质 · 物理学 2009-11-13 S. Zh. Karazhanov , P. Ravindran , A. Kjekshus , H. Fjellvag , B. G. Svensson

Using first-principles calculations combined with a semi-empirical van der Waals dispersion correction, we have investigated structural parameters, mixing enthalpies, and band gaps of buckled and planar few-layer In$_x$Ga$_{1-x}$N alloys.…

材料科学 · 物理学 2017-12-13 V. Wang , Z. Q. Wu , Y. Kawazoe , W. T. Geng

Moving beyond traditional 2D materials is now desirable to have switching capabilities (e.g., transistors). Here we propose using graphyne because, as we will show in this letter, obtaining regions of the electronic bandstructure which act…

材料科学 · 物理学 2020-12-16 Xianwei Sha , Clifford M. Krowne

We present a theoretical study of the structural and electronic properties of graphene monolayer functionalized with boron and nitrogen atoms substituting carbon atoms. Our study is based on the ab initio calculations in the framework of…

材料科学 · 物理学 2013-07-29 Magdalena Woinska , Karolina Z. Milowska , Jacek A. Majewski

Using periodic DFT, we examined the adsorption of NO2, NH3, and O3 on the h-BN side of a graphene/h-BN heterostructure designed as a model gas sensor material. The h-BN overlayer serves both as an active adsorption surface and as protection…

材料科学 · 物理学 2026-03-17 Martin Siebel , Pavel Rubin , Raivo Jaaniso

Organic molecular crystals are expected to feature appreciable electron-phonon interactions that influence their electronic properties at zero and finite temperature. In this work, we report first-principles calculations and an analysis of…

We construct a two-band lattice model whose bands can carry the Chern numbers C=0,pm1,pm2. By means of numerical exact diagonalization, we show that the most favorable situation that selects fractional Chern insulators (FCIs) is not…

强关联电子 · 物理学 2012-11-26 Adolfo G. Grushin , Titus Neupert , Claudio Chamon , Christopher Mudry

We present an ab initio study of the electronic stopping power of protons in copper over a wide range of proton velocities $v = 0.02-10~\mathrm{a.u.}$ where we take into account non-linear effects. Time-dependent density functional theory…

材料科学 · 物理学 2016-10-12 Edwin E. Quashie , Bidhan C. Saha , Alfredo A. Correa

g-C$_3$N$_4$ is a promising material for hydrogen production from water via photo-catalysis, if we can tune its band gap to desirable levels. Using a combined experimental and ab initio approach, we uncover an almost perfectly linear…