Porous Graphene Membranes for Solute Separation …
161
chemical vapor deposition and polymer support casting. ACS Appl Mater Interf 10(12):10369–
10378
42. Kidambi PR, Nguyen GD, Zhang S, Chen Q, Kong J, Warner J, Li AP, Karnik R (2018)
Facile fabrication of large-area atomically thin membranes by direct synthesis of graphene
with nanoscale porosity. Adv Mater 30(49):1804977
43. Kidambi PR, Boutilier MS, Wang L, Jang D, Kim J, Karnik R (2017) Selective nanoscale
mass transport across atomically thin single crystalline graphene membranes. Adv Mater
29(19):1605896
44. Wang L, Williams CM, Boutilier MS, Kidambi PR, Karnik R (2017) Single-layer graphene
membranes withstand ultrahigh applied pressure. Nano Lett 17(5):3081–3088
45. Jang D, Idrobo J-C, Laoui T, Karnik R (2017) Water and solute transport governed by tunable
pore size distributions in nanoporous graphene membranes. ACS Nano 11(10):10042–10052
46. Kidambi PR, Jang D, Idrobo JC, Boutilier MS, Wang L, Kong J, Karnik R (2017) Nanoporous
atomically thin graphene membranes for desalting and dialysis applications. Adv Mater
29(33):1700277
47. Yang Y, Yang X, Liang L, Gao Y, Cheng H, Li X, Zou M, Ma R, Yuan Q, Duan X (2019)
Large-area graphene-nanomesh/carbon-nanotube hybrid membranes for ionic and molecular
nanofiltration. Science 364(6445):1057–1062
48. Konatham D, Yu J, Ho TA, Striolo A (2013) Simulation insights for graphene-based water
desalination membranes. Langmuir 29(38):11884–11897
49. Guerrero-Aviles R, Orellana W (2017) Energetics and diffusion of liquid water and hydrated
ions through nanopores in graphene: ab initio molecular dynamics simulation. Phys Chem
Chem Phys 19(31):20551–20558
50. Kommu A, Namsani S, Singh JK (2016) Removal of heavy metal ions using functionalized
graphene membranes: a molecular dynamics study. Rsc Advances 6(68):63190–63199
51. Ebrahimi S (2016) Influence of curvature on water desalination through the graphene membrane
with Si-passivated nanopore. Comput Mater Sci 124:160–165
52. Wang Y, He Z, Gupta KM, Shi Q, Lu R (2017) Molecular dynamics study on water desalination
through functionalized nanoporous graphene. Carbon 116:120–127
53. Chen Q, Yang X (2015) Pyridinic nitrogen doped nanoporous graphene as desalination
membrane: molecular simulation study. J Membr Sci 496:108–117
54. Chogani A, Moosavi A, Rahiminejad M (2016) Numerical simulation of salt water passing
mechanism through nanoporous single-layer graphene membrane. Chem Product Process
Model 11(1):73–76
55. Hou Y, Xu Z, Yang X (2016) Interface-induced affinity sieving in nanoporous graphenes for
liquid-phase mixtures. J Phys Chem C 120(7):4053–4060
56. Gravelle S, Yoshida H, Joly L, Ybert C, Bocquet L (2016) Carbon membranes for efficient
water-ethanol separation. J Chem Phys 145(12):124708
57. Shi Q, He Z, Gupta KM, Wang Y, Lu R (2017) Efficient ethanol/water separation via functionalized nanoporous graphene membranes: insights from molecular dynamics study. J Mater Sci
52(1):173–184
58. Darvishi M, Foroutan M (2015) Mechanism of water separation from a gaseous mixture via
nanoporous graphene using molecular dynamics simulation. RSC Adv 5(99):81282–81294
59. Cohen-Tanugi D, McGovern RK, Dave SH, Lienhard JH, Grossman JC (2014) Quantifying the
potential of ultra-permeable membranes for water desalination. Energy Environ Sci 7(3):1134–
1141
60. Garnier L, Szymczyk A, Malfreyt P, Ghoufi A (2016) Physics behind water transport through
nanoporous boron nitride and graphene. J Phys Chem Lett 7(17):3371–3376
61. Shahbabaei M, Tang D, Kim D (2017) Simulation insight into water transport mechanisms
through multilayer graphene-based membrane. Comput Mater Sci 128:87–97
62. Shahbabaei M, Kim D (2017) Transport of water molecules through noncylindrical pores in
multilayer nanoporous graphene. Phys Chem Chem Phys 19(31):20749–20759
63. Liu B, Wu R, Law AW-K, Feng X-Q, Bai L, Zhou K (2016) Channel morphology effect on
water transport through graphene bilayers. Sci Rep 6:38583
161
chemical vapor deposition and polymer support casting. ACS Appl Mater Interf 10(12):10369–
10378
42. Kidambi PR, Nguyen GD, Zhang S, Chen Q, Kong J, Warner J, Li AP, Karnik R (2018)
Facile fabrication of large-area atomically thin membranes by direct synthesis of graphene
with nanoscale porosity. Adv Mater 30(49):1804977
43. Kidambi PR, Boutilier MS, Wang L, Jang D, Kim J, Karnik R (2017) Selective nanoscale
mass transport across atomically thin single crystalline graphene membranes. Adv Mater
29(19):1605896
44. Wang L, Williams CM, Boutilier MS, Kidambi PR, Karnik R (2017) Single-layer graphene
membranes withstand ultrahigh applied pressure. Nano Lett 17(5):3081–3088
45. Jang D, Idrobo J-C, Laoui T, Karnik R (2017) Water and solute transport governed by tunable
pore size distributions in nanoporous graphene membranes. ACS Nano 11(10):10042–10052
46. Kidambi PR, Jang D, Idrobo JC, Boutilier MS, Wang L, Kong J, Karnik R (2017) Nanoporous
atomically thin graphene membranes for desalting and dialysis applications. Adv Mater
29(33):1700277
47. Yang Y, Yang X, Liang L, Gao Y, Cheng H, Li X, Zou M, Ma R, Yuan Q, Duan X (2019)
Large-area graphene-nanomesh/carbon-nanotube hybrid membranes for ionic and molecular
nanofiltration. Science 364(6445):1057–1062
48. Konatham D, Yu J, Ho TA, Striolo A (2013) Simulation insights for graphene-based water
desalination membranes. Langmuir 29(38):11884–11897
49. Guerrero-Aviles R, Orellana W (2017) Energetics and diffusion of liquid water and hydrated
ions through nanopores in graphene: ab initio molecular dynamics simulation. Phys Chem
Chem Phys 19(31):20551–20558
50. Kommu A, Namsani S, Singh JK (2016) Removal of heavy metal ions using functionalized
graphene membranes: a molecular dynamics study. Rsc Advances 6(68):63190–63199
51. Ebrahimi S (2016) Influence of curvature on water desalination through the graphene membrane
with Si-passivated nanopore. Comput Mater Sci 124:160–165
52. Wang Y, He Z, Gupta KM, Shi Q, Lu R (2017) Molecular dynamics study on water desalination
through functionalized nanoporous graphene. Carbon 116:120–127
53. Chen Q, Yang X (2015) Pyridinic nitrogen doped nanoporous graphene as desalination
membrane: molecular simulation study. J Membr Sci 496:108–117
54. Chogani A, Moosavi A, Rahiminejad M (2016) Numerical simulation of salt water passing
mechanism through nanoporous single-layer graphene membrane. Chem Product Process
Model 11(1):73–76
55. Hou Y, Xu Z, Yang X (2016) Interface-induced affinity sieving in nanoporous graphenes for
liquid-phase mixtures. J Phys Chem C 120(7):4053–4060
56. Gravelle S, Yoshida H, Joly L, Ybert C, Bocquet L (2016) Carbon membranes for efficient
water-ethanol separation. J Chem Phys 145(12):124708
57. Shi Q, He Z, Gupta KM, Wang Y, Lu R (2017) Efficient ethanol/water separation via functionalized nanoporous graphene membranes: insights from molecular dynamics study. J Mater Sci
52(1):173–184
58. Darvishi M, Foroutan M (2015) Mechanism of water separation from a gaseous mixture via
nanoporous graphene using molecular dynamics simulation. RSC Adv 5(99):81282–81294
59. Cohen-Tanugi D, McGovern RK, Dave SH, Lienhard JH, Grossman JC (2014) Quantifying the
potential of ultra-permeable membranes for water desalination. Energy Environ Sci 7(3):1134–
1141
60. Garnier L, Szymczyk A, Malfreyt P, Ghoufi A (2016) Physics behind water transport through
nanoporous boron nitride and graphene. J Phys Chem Lett 7(17):3371–3376
61. Shahbabaei M, Tang D, Kim D (2017) Simulation insight into water transport mechanisms
through multilayer graphene-based membrane. Comput Mater Sci 128:87–97
62. Shahbabaei M, Kim D (2017) Transport of water molecules through noncylindrical pores in
multilayer nanoporous graphene. Phys Chem Chem Phys 19(31):20749–20759
63. Liu B, Wu R, Law AW-K, Feng X-Q, Bai L, Zhou K (2016) Channel morphology effect on
water transport through graphene bilayers. Sci Rep 6:38583
