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- W4200193891 abstract "Graphene (Gr) and its derivative nanomaterials enable a novel approach to manipulate selective mass transport mechanisms at the sub-nanoscale level. These nanomaterials can maintain d-spacing at the sub-nanoscale level amidst their rigid nanosheet frame structure. Unlike other nanomaterials, they have outstanding features such as atomic thickness, extraordinary mechanical strength, and superior chemical stability. Although they could be utilized to overcome crucial challenges in various water purification applications, they usually suffer from swelling and limited penetration. Holey graphene (HG; also known as nanoporous graphene or graphene nano-mesh) is an exceptional derivative of Gr created by eliminating some atoms from the graphite structure to create distributed pores in the atomic structure of Gr nanosheets. These pores, occasionally with ample reactive functional groups near their boundaries, resulted in favorable defects features, which influence the intact Gr nanosheets structure, however they are beneficial in different water purification and desalination applications. In this review, the different approaches for fabricating HG-based membranes along with mass-transport mechanisms including experimental and simulation outcomes are presented and discussed. Related applications that exploit the extraordinary structure of the HG nanomaterial are also reviewed." @default.
- W4200193891 created "2021-12-31" @default.
- W4200193891 creator A5027840462 @default.
- W4200193891 creator A5027885506 @default.
- W4200193891 creator A5028517088 @default.
- W4200193891 creator A5049721630 @default.
- W4200193891 creator A5064563822 @default.
- W4200193891 creator A5068970722 @default.
- W4200193891 date "2022-03-01" @default.
- W4200193891 modified "2023-10-06" @default.
- W4200193891 title "Mechanistic insights into the selective mass-transport and fabrication of holey graphene-based membranes for water purification applications" @default.
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