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First-principles investigations of the geometric structures and electronic properties of pristine and Ag/Au-doped Janus MoSSe/C-60 and WSSe/C-60 heterostructures

APPLIED SURFACE SCIENCE(2022)

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Abstract
Based on first-principles investigations, the interactions of C-60 molecules with pristine and Ag/Au-doped Janus MoSSe and WSSe are explored. The results reveal that the adsorption energies of Ag or Au adsorbed on the S-side and Se-side of Janus MoSSe are very close. The adsorption energies of Ag/Au-doped Janus MoSSe/C-60 heterostructures are more negative than those of Ag/Au-doped MoS2 (or MoSe2)/C-60. Moreover, in the Ag/Au-doped Janus MoSSe/C-60 system, the adsorption energy on the S side is more negative than that on the Se side, indicating that the former one has a stronger interaction. Unlike Janus MoSSe, C-60 and Janus MoSSe/C-60, Ag-doped Janus MoSSe/C-60 heterojunction has a negative Poisson ratio. With the analysis of the strain effect on the adsorption energy of MoSSe-Ag-C-60-S-side system, it is found that strain is more beneficial to the adsorption process. With different adsorption sides of Ag-doped Janus MoSSe/C-60, Janus MoSSe exhibits opposite behaviors during charge transfer progress. Similar behaviors also occur in Au-doped Janus WSSe/C-60 system. Band structures demonstrate that the pristine Janus MoSSe (or WSSe)/C-60 heterostructures possess semiconductor properties, while Ag/Au-doped Janus MoSSe (or WSSe)/C-60 heterostructures exhibit metallic behaviors. These perspectives can provide mechanical, electronic and engineering applications of nanodevices in the future.
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Key words
First-principles calculation,Ag,Au-doped MoSSe,Au-doped WSSe,C-60
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