Xiang Chunqi, Li Ao, Yang Shulin, Lan Zhigao, Xie Wei, Tang Yiming, Xu Huoxi, Wang Zhao, Gu Haoshuang
School of Physics and Electronic Information, Hubei Key Laboratory for Processing and Application of Catalytic Materials, Huanggang Normal University Huanggang 438000 P. R. China
Faculty of Physics and Electronic Sciences, Hubei University Wuhan 430062 P. R. China.
RSC Adv. 2019 Aug 15;9(44):25690-25696. doi: 10.1039/c9ra04589a. eCollection 2019 Aug 13.
The hydrogen storage performances of novel graphene nanoflakes doped with Cr atoms were systematically investigated using first-principles density functional theory. The calculated results showed that one Cr atom could be successfully doped into the graphene nanoflake with a binding energy of -4.402 eV. Different from the H molecule moving away from the pristine graphene nanoflake surface, the built Cr-doped graphene nanoflake exhibited a high affinity to the H molecule with a chemical adsorption energy of -0.574 eV. Moreover, the adsorptions of two to five H molecules on the Cr-doped graphene nanoflake were studied as well. It was found that there were a maximum of three H molecules stored on the graphene nanoflake doped with one Cr atom. Also, the further calculations showed that the numbers of the stored H molecules were effectively improved to be six (or nine) when the graphene nanoflakes were doped with two (or three) Cr atoms. This research reveals that the graphene nanoflake doped with Cr atom could be a promising material to store H molecules and its H storage performance could be effectively enhanced through modifying the number of doped Cr atoms.
采用第一性原理密度泛函理论系统研究了掺Cr原子的新型石墨烯纳米片的储氢性能。计算结果表明,一个Cr原子能够成功掺入石墨烯纳米片中,结合能为-4.402 eV。与H分子从原始石墨烯纳米片表面离开不同,构建的掺Cr石墨烯纳米片对H分子表现出高亲和力,化学吸附能为-0.574 eV。此外,还研究了两到五个H分子在掺Cr石墨烯纳米片上的吸附情况。发现掺有一个Cr原子的石墨烯纳米片上最多存储三个H分子。进一步计算表明,当石墨烯纳米片掺有两个(或三个)Cr原子时,存储的H分子数量有效提高到六个(或九个)。该研究表明,掺Cr原子的石墨烯纳米片可能是一种有前景的储氢材料,通过改变掺Cr原子的数量可以有效提高其储氢性能。