Porous Graphene Membranes for Solute Separation …
159
Acknowledgments The financial supports from the National Natural Science Foundation of China
for the Basic Science Center Program for Ordered Energy Conversion (Number 51888103) and
general program (Number 51876169) are highly acknowledged.
References and Future Reading
1. Cohen-Tanugi D, Grossman JC (2012) Water desalination across nanoporous graphene. Nano
Lett 12(7):3602–3608
2. O’Hern SC, Boutilier MSH, Idrobo J-C, Song Y, Kong J, Laoui T, Atieh M, Karnik R
(2014) Selective ionic transport through tunable subnanometer pores in single-layer graphene
membranes. Nano Lett 14(3):1234–1241
3. Lohrasebi A, Rikhtehgaran S (2018) Ion separation and water purification by applying external
electric field on porous graphene membrane. Nano Research 11(4):2229–2236
4. Allen MJ Tung VC, Kaner RB (2010) Honeycomb Carbon: a review of graphene. Chem Rev
110(1):132–145
5. Girit CO, Meyer JC, Erni R, Rossell MD, Kisielowski C, Yang L, Park CH, Crommie MF,
Cohen ML, Louie SG, Zettl A (2009) Graphene at the edge: stability and dynamics. Science
323(5922):1705–1708
6. Meyer JC, Geim AK, Katsnelson MI, Novoselov KS, Booth TJ, Roth S (2007) The structure
of suspended graphene sheets. Nature 446(7131):60–63
7. Sun C, Wen B, Bai B (2015) Recent advances in nanoporous graphene membrane for gas
separation and water purification. Sci Bull 60(21):1807–1823
8. Das R, Vecitis CD, Schulze A, Cao B, Ismail AF, Lu X, Chen J, Ramakrishna S (2017) Recent
advances in nanomaterials for water protection and monitoring. Chem Soc Rev 46(22):6946–
7020
9. Sun C, Zhu S, Liu M, Shen S, Bai B (2019) Selective molecular sieving through a large graphene
nanopore with surface charges. J Phys Chem Lett 10(22):7188–7194
10. Xu P, Yang J, Wang K, Zhou Z, Shen P (2012) Porous graphene: properties, preparation, and
potential applications. Chin Sci Bull 57(23):2948–2955
11. Kazemi AS, Abdi Y, Eslami J, Das R (2019) Support based novel single layer nanoporous
graphene membrane for efficacious water desalination. Desalination 451:148–159
12. Berry V (2013) Impermeability of graphene and its applications. Carbon 62:1–10
13. Das R, Leo BF, Murphy F (2018) The toxic truth about carbon nanotubes in water purification:
a perspective view. Nanoscale Res Lett 13(1):183
14. Das R, Ali ME, Hamid SBA, Ramakrishna S, Chowdhury ZZ (2014) Carbon nanotube
membranes for water purification: a bright future in water desalination. Desalination 336:97–
109
15. Ali ME, Das R, Maamor A, Hamid SBA (2014) Multifunctional Carbon Nanotubes (CNTs):
a new dimension in environmental remediation. Adv Mater Res 832:328–332
16. Das R (2017) Carbon nanotube in water treatment. In: Nanohybrid catalyst based on carbon
nanotube. Carbon nanostructures. Springer, Cham. https://doi.org/10.1007/978-3-319-581
51-4_2
17. Das R (2018) Carbon nanotubes for clean water. Carbon nanostructures. Springer, Cham.
https://doi.org/10.1007/978-3-319-95603-9
18. Das R (2017) Advanced membrane materials for desalination: carbon nanotube and graphene.
In: Inorganic pollutants in wastewater. Materials Research Forum. https://doi.org/10.21741/
9781945291357
19. Liu Q, Xu G-R, Das R (2019) Inorganic scaling in reverse osmosis (RO) desalination:
mechanisms, monitoring, and inhibition strategies. Desalination 468:114065
159
Acknowledgments The financial supports from the National Natural Science Foundation of China
for the Basic Science Center Program for Ordered Energy Conversion (Number 51888103) and
general program (Number 51876169) are highly acknowledged.
References and Future Reading
1. Cohen-Tanugi D, Grossman JC (2012) Water desalination across nanoporous graphene. Nano
Lett 12(7):3602–3608
2. O’Hern SC, Boutilier MSH, Idrobo J-C, Song Y, Kong J, Laoui T, Atieh M, Karnik R
(2014) Selective ionic transport through tunable subnanometer pores in single-layer graphene
membranes. Nano Lett 14(3):1234–1241
3. Lohrasebi A, Rikhtehgaran S (2018) Ion separation and water purification by applying external
electric field on porous graphene membrane. Nano Research 11(4):2229–2236
4. Allen MJ Tung VC, Kaner RB (2010) Honeycomb Carbon: a review of graphene. Chem Rev
110(1):132–145
5. Girit CO, Meyer JC, Erni R, Rossell MD, Kisielowski C, Yang L, Park CH, Crommie MF,
Cohen ML, Louie SG, Zettl A (2009) Graphene at the edge: stability and dynamics. Science
323(5922):1705–1708
6. Meyer JC, Geim AK, Katsnelson MI, Novoselov KS, Booth TJ, Roth S (2007) The structure
of suspended graphene sheets. Nature 446(7131):60–63
7. Sun C, Wen B, Bai B (2015) Recent advances in nanoporous graphene membrane for gas
separation and water purification. Sci Bull 60(21):1807–1823
8. Das R, Vecitis CD, Schulze A, Cao B, Ismail AF, Lu X, Chen J, Ramakrishna S (2017) Recent
advances in nanomaterials for water protection and monitoring. Chem Soc Rev 46(22):6946–
7020
9. Sun C, Zhu S, Liu M, Shen S, Bai B (2019) Selective molecular sieving through a large graphene
nanopore with surface charges. J Phys Chem Lett 10(22):7188–7194
10. Xu P, Yang J, Wang K, Zhou Z, Shen P (2012) Porous graphene: properties, preparation, and
potential applications. Chin Sci Bull 57(23):2948–2955
11. Kazemi AS, Abdi Y, Eslami J, Das R (2019) Support based novel single layer nanoporous
graphene membrane for efficacious water desalination. Desalination 451:148–159
12. Berry V (2013) Impermeability of graphene and its applications. Carbon 62:1–10
13. Das R, Leo BF, Murphy F (2018) The toxic truth about carbon nanotubes in water purification:
a perspective view. Nanoscale Res Lett 13(1):183
14. Das R, Ali ME, Hamid SBA, Ramakrishna S, Chowdhury ZZ (2014) Carbon nanotube
membranes for water purification: a bright future in water desalination. Desalination 336:97–
109
15. Ali ME, Das R, Maamor A, Hamid SBA (2014) Multifunctional Carbon Nanotubes (CNTs):
a new dimension in environmental remediation. Adv Mater Res 832:328–332
16. Das R (2017) Carbon nanotube in water treatment. In: Nanohybrid catalyst based on carbon
nanotube. Carbon nanostructures. Springer, Cham. https://doi.org/10.1007/978-3-319-581
51-4_2
17. Das R (2018) Carbon nanotubes for clean water. Carbon nanostructures. Springer, Cham.
https://doi.org/10.1007/978-3-319-95603-9
18. Das R (2017) Advanced membrane materials for desalination: carbon nanotube and graphene.
In: Inorganic pollutants in wastewater. Materials Research Forum. https://doi.org/10.21741/
9781945291357
19. Liu Q, Xu G-R, Das R (2019) Inorganic scaling in reverse osmosis (RO) desalination:
mechanisms, monitoring, and inhibition strategies. Desalination 468:114065
