Mechanical Strength of Nanoporous Graphene As a Desalination Membrane
Overview
Authors
Affiliations
Recent advances in the development of nanoporous graphene (NPG) hold promise for the future of water supply by reverse osmosis (RO) desalination. But while previous studies have highlighted the potential of NPG as an RO membrane, there is less understanding as to whether NPG is strong enough to maintain its mechanical integrity under the high hydraulic pressures inherent to the RO desalination process. Here, we show that an NPG membrane can maintain its mechanical integrity in RO but that the choice of substrate for graphene is critical to this performance. Using molecular dynamics simulations and continuum fracture mechanics, we show that an appropriate substrate with openings smaller than 1 μm would allow NPG to withstand pressures exceeding 57 MPa (570 bar) or ten times more than typical pressures for seawater RO. Furthermore, we demonstrate that NPG membranes exhibit an unusual mechanical behavior in which greater porosity may help the membrane withstand even higher pressures.
Next-Generation Desalination Membranes Empowered by Novel Materials: Where Are We Now?.
Wu S, Peng L, Yang Z, Sarkar P, Barboiu M, Tang C Nanomicro Lett. 2024; 17(1):91.
PMID: 39702561 PMC: 11659558. DOI: 10.1007/s40820-024-01606-y.
2D Materials for Potable Water Application: Basic Nanoarchitectonics and Recent Progresses.
Ranjan P, Li Z, Ansari A, Ahmed S, Siddiqui M, Zhang S Small. 2024; 20(51):e2407160.
PMID: 39390843 PMC: 11656700. DOI: 10.1002/smll.202407160.
Prospects of 2D graphdiynes and their applications in desalination and wastewater remediation.
Ghosh A, Orasugh J, Sinha Ray S, Chattopadhyay D RSC Adv. 2023; 13(27):18568-18604.
PMID: 37346946 PMC: 10281012. DOI: 10.1039/d3ra01370g.
Villalobos L, Babu D, Hsu K, Goethem C, Agrawal K Acc Mater Res. 2022; 3(10):1073-1087.
PMID: 36338295 PMC: 9623591. DOI: 10.1021/accountsmr.2c00143.
Wei A, Ye H, Guo Z, Xiong J Nanoscale Adv. 2022; 4(5):1455-1463.
PMID: 36133679 PMC: 9419786. DOI: 10.1039/d1na00457c.