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相关论文: A potential superhard carbon allotrope: T5-carbon

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A structurally stable crystalline carbon allotrope is predicted by means of the first-principles calculations. This allotrope can be derived by substituting each atom in diamond with a carbon tetrahedron, and possesses the same space group…

材料科学 · 物理学 2015-05-28 Xian-Lei Sheng , Qing-Bo Yan , Fei Ye , Qing-Rong Zheng , Gang Su

From crystal chemistry rationale and density functional DFT calculations, novel tetragonal carbon C5 is proposed as simplest ultrahard allotrope with mixed hybrid carbon hybridizations (sp2 - sp3). Novel pentacarbon is identified as…

材料科学 · 物理学 2022-10-11 Samir F Matar

Novel ultra-hard carbon allotrope is proposed with mechanical, dynamic, and thermal properties like diamond. Based on energy criteria from computations within density functional theory DFT, tetragonal C8 stoichiometry is identified as a…

材料科学 · 物理学 2022-09-13 Samir F. Matar

We have investigated the structural, mechanical and electronic properties of D-carbon by ab initio calculations, a new phase of crystalline sp3 carbon (pace group D2h5, Pmma-orthorhombic). Total-energy calculations demonstrate that D-carbon…

材料科学 · 物理学 2020-04-15 Dong Fan , Shaohua Lu , Xiaojun Hu

A novel carbon allotrope, hexagonal C12, is proposed from crystal chemistry and quantum density functional theory DFT calculations of ground state and physical properties. The structure exhibits corner sharing distorted tetrahedra with the…

材料科学 · 物理学 2023-06-16 Samir F. Matar

Two new carbon allotropes (H-carbon and S-carbon) are proposed, as possible candidates for the intermediate superhard phases between graphite and diamond obtained in the process of cold compressing graphite, based on the results of…

材料科学 · 物理学 2012-06-12 Chaoyu He , L. Z. Sun , C. X. Zhang , K. W. Zhang , Xiangyang Peng , Jianxin Zhong

In our present work, five previously proposed sp$^3$ carbon crystals were suggested as silicon allotropes and their stabilities, electronic and optical properties were investigated by first-principles method. We find that these allotropes…

材料科学 · 物理学 2017-01-19 Chaoyu He , Jin Li , xiangyang Peng , Lijun Meng , Chao Tang , Jianxin Zhong

We revisit and interpret the mechanical properties of the recently proposed allotrope of carbon, T-carbon [Sheng \emph{et al.}, Phys. Rev. Lett., \textbf{106}, 155703 (2011)], using density functional theory in combination with different…

材料科学 · 物理学 2015-05-30 Xing-Qiu Chen , Haiyang Niu , Cesare Franchini , Dianzhong Li , Yiyi Li

A metallic covalently bonded carbon allotrope is predicted via first principles calculations. It is composed of an $sp^3$ carbon framework that acts as a diamond anvil cell by constraining the distance between parallel cis-polyacetylene…

材料科学 · 物理学 2022-06-08 Xiaoyu Wang , Davide M Proserpio , Corey Oses , Cormac Toher , Stefano Curtarolo , Eva Zurek

Using a generalized genetic algorithm, we propose four new sp3 carbon allotropes with 5-6-7 (5-6-7-type Z-ACA and Z-CACB) or 4-6-8(4-6-8-type Z4-A3B1 and A4-A2B2) carbon rings. Their stability, mechanical and electronic properties are…

材料科学 · 物理学 2012-04-20 Chaoyu He , L. Z. Sun , C. X. Zhang , K. W. Zhang , Xiangyang Peng , Jianxin Zhong

A novel allotrope of carbon with $P2/m$ symmetry was identified during an \emph{ab-initio} minima-hopping structural search which we call $M10$-carbon. This structure is predicted to be more stable than graphite at pressures above 14.4 GPa…

Through a systematic structural search we found an allotrope of carbon with Cmmm symmetry which we predict to be more stable than graphite for pressures above 10 GPa. This material, which we refer to as Z-carbon, is formed by pure sp3 bonds…

In a recent Letter, Fujii et. al. [Phys. Rev. Lett. 125, 016001] predicted a new carbon allotrope, pentadiamond, with remarkable mechanical properties: elastic moduli comparable or larger than diamond, and negative Poisson's ratio $\mu$ =…

材料科学 · 物理学 2020-07-21 Santanu Saha , Wolfgang von der Linden , Lilia Boeri

Superstructures of cubic and hexagonal diamonds (h- and c-diamond) comprising a family of stable diamond-like $sp^3$ hybridized novel carbon allotropes are proposed, which are referred to as U$_n$-carbon where $n \geq 2$ denotes the number…

材料科学 · 物理学 2013-10-22 Hui-Juan Cui , Xian-Lei Sheng , Qing-Bo Yan , Qing-Rong Zheng , Gang Su

T-carbon has been proposed as a new carbon allotrope in 2011, which was successfully synthesized in recent experiments. Because of its fluffy structure, several kinds of atoms can be intercalated into T-carbon, making it a versatile…

超导电性 · 物理学 2020-06-04 Jing-Yang You , Bo Gu , Gang Su

Carbon is an extremely versatile element and carbon allotropes are very useful in all aspects of life and scientific research. T-carbon is a novel carbon allotrope with many appealing properties. Since the proposal of T-carbon, there has…

材料科学 · 物理学 2022-02-14 Xinwei Yi , Zhen Zhang , Zhengwei Liao , Xuejuan Dong , Jingyang You , Gang Su

A sp2-sp3 hybrid carbon allotrope named HSH-carbon is proposed by the first-principles calculations. The structure of HSH-carbon can be regarded as a template polymerization of [1.1.1]propellane molecules in a hexagonal lattice, as well as,…

材料科学 · 物理学 2022-07-26 Jia-Qi Liu , Qian Gao , Zhen-Peng Hu

Crystal structure searching and ab initio calculations have been used here to explore low-energy structures of boron carbides under high pressure. Under pressures of 85-110 GPa, a metastable B6C with R-3m symmetry is found to be…

材料科学 · 物理学 2018-01-01 Kang Xia , Mengdong Ma , Cong Liu , Hao Gao , Qun Chen , Julong He , Jian Sun , Hui-Tian Wang , Yongjun Tian , Dingyu Xing

New carbon forms exhibiting extraordinary physico-chemical properties can be generated from nanostructured precursors under extreme pressure. Nevertheless, synthesis of such fascinating materials is often not well understood that results,…

Four sp3 carbon allotropes with six, eight, and 16 atoms per primitive cell have been derived using a combination of metadynamics simulations and topological scan. A chiral orthorhombic phase oC16 (C2221) was found to be harder than…

材料科学 · 物理学 2012-06-26 Daniele Selli , Igor A. Baburin , Roman Martoňák , Stefano Leoni
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