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Recent Developments in Nanoporous Graphene Membranes for Organic Solvent Nanofiltration: A Short Review

Yoon Tae Nam, Junhyeok Kang, Jaedong Jang, Jun Hyuk Bae, Hee‐Tae Jung, Dae Woo Kim

2021Membranes17 citationsDOIOpen Access PDF

Abstract

Graphene-based membranes are promising candidates for efficient organic solvent nanofiltration (OSN) processes because of their unique structural characteristics, such as mechanical/chemical stability and precise molecular sieving. Recently, to improve organic solvent permeance and selectivity, nanopores have been fabricated on graphene planes via chemical and physical methods. The nanopores serve as an additional channel for facilitating ultrafast solvent permeation while filtering organic molecules by size exclusion. This review summarizes the recent developments in nanoporous graphene (NG)-based membranes for OSN applications. The membranes are categorized depending on the membrane structure: single-layer NG, multilayer NG, and graphene-based composite membranes hybridized with other porous materials. Techniques for nanopore generation on graphene, as well as the challenges faced and the perspectives required for the commercialization of NG membranes, are also discussed.

Topics & Concepts

NanofiltrationMembraneNanoporousPermeanceGrapheneNanoporeMaterials scienceNanotechnologySolventChemical engineeringPermeationChemistryOrganic chemistryEngineeringBiochemistryMembrane Separation TechnologiesGraphene research and applicationsNanopore and Nanochannel Transport Studies