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A DFT study on graphene, SiC, BN, and AlN nanosheets as anodes in Na-ion batteries

机译:石墨烯,SiC,BN和AlN纳米片作为Na离子电池阳极的DFT研究

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摘要

A great concern exists about the lifetime, cost, low-temperature performance, and safety of Li-ion batteries. Na-ion batteries (NIB) are an alternative to the Li-ion batteries due to the wide availability of sodium, its low cost, and nontoxicity. Here, we examined the Na and Na+ adsorption on nanosheets of carbon (graphene), AlN, BN, and SiC to explore their potential use as an anode in NIBs. The interaction of atomic Na was found to play the main role in producing different nanosheet cell voltages. Unlike the graphene and SiC nanosheets, the lone pairs on the surface of the AlN and BN nanosheets hinder the Na adsorption and significantly increase the cell voltage. The order of magnitude of the nanosheet cell voltage as an anode in NIBs is as follows: AlN (1.49 V) BN (1.46 V) C (0.69 V) SiC (0.61 V). The AlN and BN nanosheets may be appropriate compounds for NIBs and their cell voltages are comparable with carbon nanotubes.
机译:李离子电池的寿命,成本,低温性能和安全性存在很大的关注。 Na离子电池(NIB)是锂离子电池的替代方案,因为钠的可用性,其低成本和无毒性。 在这里,我们检查了碳(石墨烯),AlN,Bn和SiC的纳米蛋白酶上的Na和Na +吸附,以探讨它们作为尖端中的阳极的潜在用途。 发现原子NA的相互作用在产生不同的纳米片电池电压方面发挥着主要作用。 与石墨烯和SiC纳米片不同,ALN表面和BN纳米液表面上的孤立对阻碍了NA吸附并显着增加电池电压。 纳米片电池电压的幅度级作为末端阳极如下:ALN(1.49V)> BN(1.46 V)& & C(0.69 V)& SiC(0.61 v)。 ALN和BN纳米片可以是用于尖端的合适化合物,并且它们的电池电压与碳纳米管相当。

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