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Zero Poisson's ratio in single-layer arsenic

机译:零泊松比单层砷

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摘要

Zero (or near-zero) Poisson's ratio (ZPR) materials have important applications in the field of precision instruments because one of their faces is stable and will not be affected by strain. However, ZPR materials are extremely rare. Here, we report a novel ZPR material, two-dimensional P2/m arsenene, by first principles calculations. Its Poisson's ratio is −0.00021 (strain along zigzag direction), which is smaller than all the known near-zero Poisson's ratio crystal materials, and even 10 times smaller than Me-graphene (0.002). This feature makes it have huge potential applications in the field of precision instruments such as aviation, medicine, and flexible electronic devices. Besides, the band-gap range of P2/m arsenene is 1.420–2.154 eV (the corresponding wavelength is 873–575 nm) under strain from −5% to 5% along the zigzag direction, which is suitable for infrared and visible optoelectronic devices.
机译:零(或接近于零)泊松比(ZPR)材料中有着重要的应用精密仪器领域的原因之一他们的脸是稳定的,不会受到影响压力。罕见的。二维p / m arsenene,首先计算原则。−0.00021(应变沿锯齿形方向)小于所有已知的近零泊松比晶体材料,甚至10倍小于Me-graphene(0.002)。使它具有巨大的潜在应用精密仪器领域,如航空、医学,和灵活的电子设备。此外,P2的带隙范围/ m arsenene1.420 - -2.154 eV(对应的波长873 - 575 nm)下应变沿−5%到5%锯齿形的方向,这适用于红外和可见光光电设备。

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