著者
Shun Hasegawa Yuji Kunisada Norihito Sakaguchi
出版者
The Japan Society of Vacuum and Surface Science
雑誌
e-Journal of Surface Science and Nanotechnology (ISSN:13480391)
巻号頁・発行日
vol.16, pp.193-200, 2018-05-25 (Released:2018-05-25)
参考文献数
38
被引用文献数
4

In this study, we calculated the diffusion of an Fe atom on graphene and various light-element (B, N, O, Si, P, and S)-doped graphene supports, using first-principles calculations based on density functional theory. We focused on dopants that could suppress the detachment and diffusion of an Fe atom. Such doped graphene supports would have strong potential in high-durability fuel cell catalysts and hydrogen storage materials. The Fe atom adsorbs on pristine graphene via ionic bonding. The bonding between the Fe atom and pristine graphene is very weak, and it has a low adsorption energy of −0.61 eV. Doped graphene contains unoccupied localized orbitals. B-, O-, Si-, and P-doped graphene show high adsorption energies of −1.70 eV, −2.70 eV, −1.46 eV, and −1.38 eV, respectively. Thus, these graphene supports could suppress the detachment of Fe nanoclusters and nanoparticles. We demonstrate that these doped graphene supports with high adsorption energies also have high diffusion barriers, which suppresses the agglomeration of Fe nanoclusters and nanoparticles. We conclude that B-, O-, Si-, and P-doped graphene are promising supports for enhancing the adsorption lifetime of Fe nanoclusters and nanoparticles. [DOI: 10.1380/ejssnt.2018.193]

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元論文 白金原子:https://t.co/WgXiJpWpe6 鉄原子:https://t.co/rNYkqDwaU2
論文が出版されました.化学修飾グラフェン上での鉄原子の挙動に関するものです.以前報告した白金原子とはまた違う挙動を見せております J-STAGE Articles - Adsorption and Diffusion Properties of a Single Iron Atom on Light-Element-Doped Graphene https://t.co/rNYkqDwaU2

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