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Binary pentagonal auxetic materials for photocatalysis and energy storage with outstanding performances

机译:二元五角增大的材料光催化和能量储存杰出的表演

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Since the discovery of penta-graphene, two-dimensional (2-D) pentagonal-structured materials have been highly expected to have desirable performance because of their unique structures and accompanied physical properties. Hence, based on the first-principles calculations, we performed a systematical study on the structure, stability, mechanical and electronic properties, and potential applications on carbon-based pentagonal materials with binary compositions, namely, Penta-CnX6−n (n = 1, 2, 4, 5; X = B, N, Al, Si, P, Ga, Ge, As). We found that eleven out of thirty-two Penta-CnX6−n have good stability and can be further studied. Among them, two materials, namely, Penta-C4P2 and Penta-C5P are metallic, and others are indirect band gap semiconductors, whose band gaps calculated by the HSE06 functional are in the range of 1.37–6.43 eV, covering the infrared-visible–ultraviolet regions. Furthermore, we found that metallic Penta-CnX6−n can become promising anode materials for Na-ion batteries (NIBs) with high storage capacity, while some semiconducting Penta-CnX6−n can become excellent water splitting photocatalysts. In addition, Penta-C4P2 and Penta-C2Al4 were found to have obvious in-plane negative Poisson's ratio (NPR) of −0.083 and −0.077, respectively. More interestingly, we found that Penta-C2Al4 exhibits a peculiar in-plane half negative Poisson's ratio (H-NPR) with the fundamental mechanism clarified. These outstanding performances endow binary pentagonal materials with excellent application prospects.
机译:penta-graphene发现以来,二维(2 d) pentagonal-structured材料已经高度期待因为其独特的性能结构和物理性质。因此,基于采用计算,我们进行了系统的研究机械和结构、稳定电子性质和潜在的应用在碳基与二元五角的材料组成,即Penta-CnX6−n (n = 1, 2, 4,5;这十一32 Penta-CnX6−n稳定性好,可以进一步研究。两种材料,即Penta-C4P2和Penta-C5P是金属的,有些是间接的带隙半导体的带隙HSE06计算的功能的覆盖范围1.37 - -6.43 eVinfrared-visible-ultraviolet地区。此外,我们发现金属Penta-CnX6−n可以成为有前途的阳极材料Na-ion吗高容量电池(上司),虽然一些半导体Penta-CnX6−n可以成为光解水制氢研究优秀论文。此外,Penta-C4P2和Penta-C2Al4被发现有明显的平面负泊松比(NPR)−−0.083和0.077,分别。有趣的是,我们发现Penta-C2Al4展品一种特殊的平面负泊松比的一半澄清(H-NPR)的基本机制。这些杰出的表演赋予二进制五角材料与优秀的应用程序前景。

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