162
C. Sun et al.
64. Liu B, Wu R, Baimova JA, Wu H, Law AW-K, Dmitriev SV, Zhou K (2016) Molecular dynamics
study of pressure-driven water transport through graphene bilayers. Phys Chem Chem Phys
18(3):1886–1896
65. Jiang G, Wang P, Cheng C, Li D, Liu JZ (2018) An equivalent 1D nanochannel model to describe
ion transport in multilayered graphene membranes. Progr Nat Sci Mater Int 28(2):246–250
66. Cohen-Tanugi D, Grossman JC (2014) Mechanical strength of nanoporous graphene as a
desalination membrane. Nano Lett 14:6171–6178
67. Cohen-Tanugi D, Lin L-C, Grossman JC (2016) Multilayer nanoporous graphene membranes
for water desalination. Nano Lett 16(2):1027–1033
68. Hu G, Mao M, Ghosal S (2012) Ion transport through a graphene nanopore. Nanotechnology
23(39):395501
69. Zhao S, Xue J, Kang W (2013) Ion selection of charge-modified large nanopores in a graphene
sheet. J Chem Phys 139(11):114702
70. Kang Y, Zhang Z, Shi H, Zhang J, Liang L, Wang Q, Agren H, Tu Y (2014) Na + and K + ion
selectivity by size-controlled biomimetic graphene nanopores. Nanoscale 6(18):10666–10672
71. Suk ME, Aluru NR (2014) Ion transport in sub-5-nm graphene nanopores. J Chem Phys
140(8):084707
72. Zhu C, Li H, Meng S (2014) Transport behavior of water molecules through two-dimensional
nanopores. J Chem Phys 141(18):18C528
73. Muscatello J, Jaeger F, Matar OK, Mueller EA (2016) Optimizing water transport through
graphene-based membranes: insights from nonequilibrium molecular dynamics. ACS Appl
Mater Interf 8(19):12330–12336
74. Suk M, Aluru NR (2013) Molecular and continuum hydrodynamics in graphene nanopores.
RSC Adv 3(24):9365–9372
75. Walther JH, Ritos K, Cruz-Chu ER, Megaridis CM, Koumoutsakos P (2013) Barriers to
superfast water transport in carbon nanotube membranes. Nano Lett 13(5):1910–1914
76. Azamat J (2016) Functionalized graphene nanosheet as a membrane for water desalination
using applied electric fields insights from molecular dynamics simulations. J Phys Chem C
120(41):23883–23891
77. Sun CZ, Zhou RF, Zhao ZX, Bai BF (2020) Nanoconfined fluids: what can we expect from
them? J Phys Chem Lett 11(12):4678–4692
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