Title : Theoretical design of SnS2-graphene heterojunctions with vacancy and impurity defects for multi-purpose photoelectric devices.

Pub. Date : 2022 Jan 4

PMID : 34914818






4 Functional Relationships(s)
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1 Meanwhile, the SnS2 monolayer modified by vacancies and transition metal atoms is combined with graphene to form a heterostructure, which promotes the separation of photogenerated electron-hole pairs. Graphite sodium voltage-gated channel alpha subunit 11 Homo sapiens
2 The results of theoretical calculations show that the SnS2/graphene heterojunction can promote the separation of photogenerated carriers in intrinsic monolayer SnS2, and improve the photocatalytic efficiency and carrier mobility. Graphite sodium voltage-gated channel alpha subunit 11 Homo sapiens
3 The results of theoretical calculations show that the SnS2/graphene heterojunction can promote the separation of photogenerated carriers in intrinsic monolayer SnS2, and improve the photocatalytic efficiency and carrier mobility. Graphite sodium voltage-gated channel alpha subunit 11 Homo sapiens
4 The modification of Sn vacancies and Fe, Co atoms not only expands the visible light response range of the SnS2/graphene heterojunction, but also introduces magnetism, which is expected to be applied in spin optoelectronic materials. Graphite sodium voltage-gated channel alpha subunit 11 Homo sapiens