242
G.-R. Xu
34. Naguib M, Mochalin VN, Barsoum MW, Gogotsi Y (2014) MXenes: a new family of twodimensional materials. Adv. Mater. 26:992–1005
35. Ling Z, Ren CE, Zhao MQ, Yang J, Giammarco JM, Qiu J, Barsoum MW, Gogotsi Y (2014)
Flexible and conductive MXene films and nanocomposites with high capacitance. P. Natl.
Acad. Sci. 111:16676–16681
36. Dikin DA, Stankovich S, Zimney EJ, Piner RD, Dommett GHB, Evmenenko G, Nguyen ST,
Ruoff RS (2007) Preparation and characterization of graphene oxide paper. Nature 448:457–
460
37. Zhang Q, Du Q, Hua M, Jiao T, Gao F, Pan B (2013) Sorption enhancement of lead ions from
water by surface charged polystyrene-supported nano-zirconium oxide composites. Environ.
Sci. Technol. 47:6536–6544
38. Guo X, Zhang X, Zhao S, Huang Q, Xue J (2016) High adsorption capacity of heavy metals
on two-dimensional MXenes: an ab initio study with molecular dynamics simulation. Phys.
Chem. Chem. Phys. 18:228–233
39. Guo J, Peng Q, Fu H, Zou G, Zhang Q (2015) Heavy-metal adsorption behavior of twodimensional alkalization-intercalated mxene by first-principles calculations. J. Phys. Chem.
C. 119:20923–20930
40. Peng Q, Guo J, Zhang Q, Xiang J, Liu B, Zhou A, Liu R, Tian Y (2014) Unique lead adsorption
behavior of activated hydroxyl group in two-dimensional titanium carbide. J. Am. Chem. Soc.
136:4113–4116
41. Tang H, Fang H, Duan Y, Sholl DS (2019) Predictions of hg0 and hgcl2 adsorption properties
in uio-66 from flue gas using molecular simulations. J. Phys. Chem. C. 123:5972–5979
42. Xiao C, Silver MA, Wang S (2017) Metal-organic frameworks for radionuclide sequestration
from aqueous solution: a brief overview and outlook. Dal Trans. 46:16381–16386
43. Zhu H, Yuan J, Tan X, Zhang W, Fang M, Wang X (2019) Efficient removal of Pb 2+
by Tb-MOFs: identifying the adsorption mechanism through experimental and theoretical
investigations. Environ Sci Nano 6:261–272
44. Zhu H, Wu J, Fang M, Tan L, Chen C, Alharbi NS, Hayat T, Tan X (2017) Synthesis of a
core-shell magnetic Fe 3 O 4 –NH 2 @PmPD nanocomposite for efficient removal of Cr(vi) from
aqueous media. RSC Adv. 7:36231–36241
45. He T, Ni B, Zhang S, Gong Y, Wang H, Gu L, Zhuang J, Hu W, Wang X (2018) Ultrathin 2D zirconium metal-organic framework nanosheets: preparation and application in
photocatalysis. Small 14:1703929
46. Hu Z, Chen Y, Jiang J (2011) Zeolitic imidazolate framework-8 as a reverse osmosis membrane
for water desalination: insight from molecular simulation. J. Chem. Phys. 134:134705
47. Gupta KM, Zhang K, Jiang J (2015) Water desalination through zeolitic imidazolate
framework membranes: significant role of functional groups. Langmuir 31:13230–13237
48. Azamat J, Khataee A, Joo SW (2014) Functionalized graphene as a nanostructured membrane
for removal of copper and mercury from aqueous solution: a molecular dynamics simulation
study. J. Mol. Graph. Modell. 53:112–117
49. Azamat J, Sattary BS, Khataee A, Joo SW (2015) Removal of a hazardous heavy metal from
aqueous solution using functionalized graphene and boron nitride nanosheets: insights from
simulations. J. Mol. Graph. Modell. 61:13–20
50. Azamat J, Khataee A (2017) Improving the performance of heavy metal separation from
water using MoS 2 membrane: molecular dynamics simulation. Computation. Mater. Sci.
137:201–207
51. Azamat J, Khataee A, Sadikoglu F (2018) Computational study on the efficiency of MoS 2
membrane for removing arsenic from contaminated water. J. Mol. Liq. 249:110–116
52. Roth WJ, ˇ
Cejka J (2011) Two-dimensional zeolites: dream or reality? Catal. Sci. Technol.
1:43–53
53. Wei R, Yang H, Scott JA, Aguey-Zinsou KF, Zhang D (2018) Synthesis of 2D MFI zeolites in
the form of self-interlocked nanosheet stacks with tuneable structural and chemical properties
for catalysis. Appl. Mater. Today 11:22–33
G.-R. Xu
34. Naguib M, Mochalin VN, Barsoum MW, Gogotsi Y (2014) MXenes: a new family of twodimensional materials. Adv. Mater. 26:992–1005
35. Ling Z, Ren CE, Zhao MQ, Yang J, Giammarco JM, Qiu J, Barsoum MW, Gogotsi Y (2014)
Flexible and conductive MXene films and nanocomposites with high capacitance. P. Natl.
Acad. Sci. 111:16676–16681
36. Dikin DA, Stankovich S, Zimney EJ, Piner RD, Dommett GHB, Evmenenko G, Nguyen ST,
Ruoff RS (2007) Preparation and characterization of graphene oxide paper. Nature 448:457–
460
37. Zhang Q, Du Q, Hua M, Jiao T, Gao F, Pan B (2013) Sorption enhancement of lead ions from
water by surface charged polystyrene-supported nano-zirconium oxide composites. Environ.
Sci. Technol. 47:6536–6544
38. Guo X, Zhang X, Zhao S, Huang Q, Xue J (2016) High adsorption capacity of heavy metals
on two-dimensional MXenes: an ab initio study with molecular dynamics simulation. Phys.
Chem. Chem. Phys. 18:228–233
39. Guo J, Peng Q, Fu H, Zou G, Zhang Q (2015) Heavy-metal adsorption behavior of twodimensional alkalization-intercalated mxene by first-principles calculations. J. Phys. Chem.
C. 119:20923–20930
40. Peng Q, Guo J, Zhang Q, Xiang J, Liu B, Zhou A, Liu R, Tian Y (2014) Unique lead adsorption
behavior of activated hydroxyl group in two-dimensional titanium carbide. J. Am. Chem. Soc.
136:4113–4116
41. Tang H, Fang H, Duan Y, Sholl DS (2019) Predictions of hg0 and hgcl2 adsorption properties
in uio-66 from flue gas using molecular simulations. J. Phys. Chem. C. 123:5972–5979
42. Xiao C, Silver MA, Wang S (2017) Metal-organic frameworks for radionuclide sequestration
from aqueous solution: a brief overview and outlook. Dal Trans. 46:16381–16386
43. Zhu H, Yuan J, Tan X, Zhang W, Fang M, Wang X (2019) Efficient removal of Pb 2+
by Tb-MOFs: identifying the adsorption mechanism through experimental and theoretical
investigations. Environ Sci Nano 6:261–272
44. Zhu H, Wu J, Fang M, Tan L, Chen C, Alharbi NS, Hayat T, Tan X (2017) Synthesis of a
core-shell magnetic Fe 3 O 4 –NH 2 @PmPD nanocomposite for efficient removal of Cr(vi) from
aqueous media. RSC Adv. 7:36231–36241
45. He T, Ni B, Zhang S, Gong Y, Wang H, Gu L, Zhuang J, Hu W, Wang X (2018) Ultrathin 2D zirconium metal-organic framework nanosheets: preparation and application in
photocatalysis. Small 14:1703929
46. Hu Z, Chen Y, Jiang J (2011) Zeolitic imidazolate framework-8 as a reverse osmosis membrane
for water desalination: insight from molecular simulation. J. Chem. Phys. 134:134705
47. Gupta KM, Zhang K, Jiang J (2015) Water desalination through zeolitic imidazolate
framework membranes: significant role of functional groups. Langmuir 31:13230–13237
48. Azamat J, Khataee A, Joo SW (2014) Functionalized graphene as a nanostructured membrane
for removal of copper and mercury from aqueous solution: a molecular dynamics simulation
study. J. Mol. Graph. Modell. 53:112–117
49. Azamat J, Sattary BS, Khataee A, Joo SW (2015) Removal of a hazardous heavy metal from
aqueous solution using functionalized graphene and boron nitride nanosheets: insights from
simulations. J. Mol. Graph. Modell. 61:13–20
50. Azamat J, Khataee A (2017) Improving the performance of heavy metal separation from
water using MoS 2 membrane: molecular dynamics simulation. Computation. Mater. Sci.
137:201–207
51. Azamat J, Khataee A, Sadikoglu F (2018) Computational study on the efficiency of MoS 2
membrane for removing arsenic from contaminated water. J. Mol. Liq. 249:110–116
52. Roth WJ, ˇ
Cejka J (2011) Two-dimensional zeolites: dream or reality? Catal. Sci. Technol.
1:43–53
53. Wei R, Yang H, Scott JA, Aguey-Zinsou KF, Zhang D (2018) Synthesis of 2D MFI zeolites in
the form of self-interlocked nanosheet stacks with tuneable structural and chemical properties
for catalysis. Appl. Mater. Today 11:22–33
