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- W3159388291 abstract "• A membrane model was proposed from an orthogonal-diagonal graphene ribbon-knitted nanotexture. • The thermal stabilities of the nanostructure with the same-sized periodic nanopores were tested. • The nanotextures’ deformation depends on the temperature and the ribbons’ gap, but slightly on porosity only. • The shapes of the nanopores in a folded nanotexture can recover regularly in a medium with certain pressure. Graphene-based membranes are popular for ionic and molecular sieving. For keeping the permeability and selectivity, both the membrane structure and the pores should be stable in the filtration process. In this study, a new model of membrane candidate was proposed upon orthogonal-diagonal graphene ribbon-knitted nanotexture. A brief weaving process was introduced. Using molecular dynamics simulations, we evaluated thermal stability of the nanoporous graphene nanotextures by characterizing their shapes and the nanometer-sized periodic pores. Results demonstrate that the most of the present nanotextures have stable structures. Compared to the orthogonal graphene nanotextures in Ref. Yang et al . [1], the stronger structural stability of the present nanotextures are due to the interlocking of the four pairs of parallel ribbons at their overlap area. Hence, the periodically layout nanopores in the orthogonal-diagonal nanotexture can be well kept after relaxation. In particular, for a folded nanotexture in a gas medium at room temperature, it can expand to its initial configuration in which the nanopores simultaneously becoming regular. The features extend the potential applications of the new two-dimensional material as a candidate of the membrane with a periodic layout of nanometer-sized pores." @default.
- W3159388291 created "2021-05-10" @default.
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- W3159388291 date "2021-08-01" @default.
- W3159388291 modified "2023-09-26" @default.
- W3159388291 title "Thermal stability of a nanoporous graphene membrane candidate from an orthogonal-diagonal nanotexture: A molecular dynamics test" @default.
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- W3159388291 doi "https://doi.org/10.1016/j.apsusc.2021.149955" @default.
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