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首页> 外文期刊>ACS Omega >A Novel Hyperbolic Two-Dimensional Carbon Material with an In-Plane Negative Poisson’s Ratio Behavior and Low-Gap Semiconductor Characteristics
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A Novel Hyperbolic Two-Dimensional Carbon Material with an In-Plane Negative Poisson’s Ratio Behavior and Low-Gap Semiconductor Characteristics

机译:一种新型双曲二维碳材料,具有面内负泊松比率行为和低间隙半导体特性

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摘要

Poisson’s ratio is one of the fundamental features of materials, reflecting the transverse strain response to the applied certain axial strain. The materials with a negative Poisson’s ratio, also known as auxetic materials, are rare in nature and attract lots of research interest because of their unusual mechanical behavior and extensive applications in mechanical nanodevices. Here, we proposed and studied a novel hyperbolic two-dimensional graphene-like structure (GLS) showing a negative Poisson’s ratio behavior by first-principles calculation. The thermodynamic, dynamic, lattice dynamic, and mechanical stabilities of the GLS were carefully studied. In addition, we also explored the electronic structure, mechanical characteristics, and optical-electronic characteristics. The GLS not only displays a negative Poisson’s ratio in certain directions but also shows low-gap semiconductor characteristics and superior electronic conductivity. It is a potential sunscreen material because of the outstanding reflection and absorption for ultraviolet and infrared light.
机译:泊松比是材料的基本特征之一,反映了对施加的某些轴向应变的横​​向应变响应。具有负泊松比例的材料,也称为辅助材料,本质上是罕见的,并且由于其不寻常的机械行为和在机械纳米型中的广泛应用而吸引了大量的研究兴趣。在这里,我们提出并研究了一种新型的双曲线二维石墨烯结构(GLS),通过第一原理计算显示负泊松比率行为。仔细研究了GLS的热力学,动态,晶格动态和机械稳定性。此外,我们还探索了电子结构,机械特性和光学电子特性。 GLS不仅在某些方向上显示负泊松比,而且还显示出低间隙半导体特性和优异的电子电导率。它是一种潜在的防晒材料,因为紫外线和红外光的突出反射和吸收。

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