108
Y. S. Dzyazko et al.
40. Sherlala AIA, Raman AAA, Bello MM et al (2018) A review of the applications of
organo-functionalized magnetic graphene oxide nanocomposites for heavy metal adsorption.
Chemosphere 193:1004–1017
41. Jiang L, Liu Y, Liu S et al (2017) Fabrication of β-cyclodextrin/poly (l-glutamic acid) supported
magnetic graphene oxide and its adsorption behavior for 17β-estradiol. Chem Eng J 308:597–
605
42. Yu B, Bai Y, Ming Z et al (2017) Adsorption behaviors of tetracycline on magnetic graphene
oxide sponge. Mater Chem Phys 198:283–290
43. Huang B, Liu Y, Li B et al (2017) Effect of Cu(II) ions on the enhancement of tetracycline adsorption by Fe 3 O 4 @SiO 2 -Chitosan/graphene oxide nanocomposite. Carbohydr Polym
157:576–585
44. Raghu MS, Kumar KY, Prashant MK et al (2017) Adsorption and antimicrobial studies of
chemically bonded magnetic graphene oxide-Fe 3 O 4 nanocomposite for water purification. J
Water Proc Eng 17:22–31
45. Yu S, Wei D. Shi L et al (2019) Three-dimensional graphene/titanium dioxide composite
for enhanced U(VI) capture: Insights from batch experiments, XPS spectroscopy and DFT
calculation. Environ Pollut 251:975–983
46. Barathi M, Kumar ASK, Kumar CU et al (2014) Graphene oxide–aluminium oxyhydroxide
interaction and its application for the effective adsorption of fluoride. RSC Adv 4:53711–53721
47. Majia S, Ghosha A, Gupta K (2018) Efficiency evaluation of arsenic(III) adsorption of novel
graphene oxide@ iron-aluminium oxide composite for the contaminated water purification.
Separ Purif Technol 197: 388–400
48. Li X, Wang Z, Li Q et al (2015) Preparation, characterization, and application of mesoporous
silica-grafted graphene oxide for highly selective lead adsorption. Chem Eng J 273:630–637
49. Yang K, Chen B, Zhu L (2015) Graphene-coated materials using silica particles as a framework
for highly efficient removal of aromatic pollutants in water. Sci Reports 5:11641. https://doi.
org/10.1038/srep11641
50. Liu H, Xie S, Liao J et al (2018) Novel graphene oxide/bentonite composite for uranium(VI)
adsorption from aqueous solution. J Radioanal Nucl Chem 317(3):1349–1360
51. Kai H, Chen G, Zeng G et al (2018) Enhanced removal performance for methylene blue by
kaolin with graphene oxide modification. J Taiwan Inst Chem Eng 89:77–85
52. Zhou X, Huang W, Shi J et al (2014) A novel MOF/graphene oxide composite GrO@MIL-101
with high adsorption capacity for acetone. J Mater Chem A 2(13):4722–4730
53. Petit C, Bandosz TJ (2009) Graphite oxide/polyoxometalate nanocomposites as adsorbents of
ammonia. J Phys Chem C 113(9):3800–3809
54. Pourbeyram S (2016) Effective removal of heavy metals from aqueous solutions by graphene
oxide–zirconium phosphate (GO–Zr-P) nanocomposite. Ind Eng Chem Res 55(19):5608–5617
55. Zhimin WuZ, Zhang L, Guan Q (2014) Preparation of a -zirconium phosphate-pillared reduced
graphene oxide. Chem Eng J 258:77–84
56. Dzyazko Y, Volfkovich Y, Perlova O et al (2019) Effect of porosity on ion transport through
polymers and polymer-based composites containing inorganic nanoparticles (review). Springer
Proc Phys 222:235–253
57. Dzyazko YS, Rozhdestvenskaya LM, Zmievskii YG et al (2015) Organic-inorganic materials containing nanoparticles of zirconium hydrophosphate for baromembrane separation.
Nanoscale Res Lett 10:64. https://doi.org/10.1186/s11671-015-0758-x
58. Rouquerol J, Baron G, Denoyel R et al (2012) 2012) Liquid intrusion and alternative methods
for the characterization of macroporous materials (IUPAC Technical Report. Pure Appl Chem
84(1):107–136
59. Kononenko N, Nikonenko V, Grande D et al (2017) Porous structure of ion exchange
membranes investigated by various technique. Adv Colloid Interface Sci 246:196–216
60. Volfkovich YM, Filippov AN, Bagotsky VS (2014) Structural properties of different materials
and powders used in different fields of science and technology. Springer, Heidelberg
Y. S. Dzyazko et al.
40. Sherlala AIA, Raman AAA, Bello MM et al (2018) A review of the applications of
organo-functionalized magnetic graphene oxide nanocomposites for heavy metal adsorption.
Chemosphere 193:1004–1017
41. Jiang L, Liu Y, Liu S et al (2017) Fabrication of β-cyclodextrin/poly (l-glutamic acid) supported
magnetic graphene oxide and its adsorption behavior for 17β-estradiol. Chem Eng J 308:597–
605
42. Yu B, Bai Y, Ming Z et al (2017) Adsorption behaviors of tetracycline on magnetic graphene
oxide sponge. Mater Chem Phys 198:283–290
43. Huang B, Liu Y, Li B et al (2017) Effect of Cu(II) ions on the enhancement of tetracycline adsorption by Fe 3 O 4 @SiO 2 -Chitosan/graphene oxide nanocomposite. Carbohydr Polym
157:576–585
44. Raghu MS, Kumar KY, Prashant MK et al (2017) Adsorption and antimicrobial studies of
chemically bonded magnetic graphene oxide-Fe 3 O 4 nanocomposite for water purification. J
Water Proc Eng 17:22–31
45. Yu S, Wei D. Shi L et al (2019) Three-dimensional graphene/titanium dioxide composite
for enhanced U(VI) capture: Insights from batch experiments, XPS spectroscopy and DFT
calculation. Environ Pollut 251:975–983
46. Barathi M, Kumar ASK, Kumar CU et al (2014) Graphene oxide–aluminium oxyhydroxide
interaction and its application for the effective adsorption of fluoride. RSC Adv 4:53711–53721
47. Majia S, Ghosha A, Gupta K (2018) Efficiency evaluation of arsenic(III) adsorption of novel
graphene oxide@ iron-aluminium oxide composite for the contaminated water purification.
Separ Purif Technol 197: 388–400
48. Li X, Wang Z, Li Q et al (2015) Preparation, characterization, and application of mesoporous
silica-grafted graphene oxide for highly selective lead adsorption. Chem Eng J 273:630–637
49. Yang K, Chen B, Zhu L (2015) Graphene-coated materials using silica particles as a framework
for highly efficient removal of aromatic pollutants in water. Sci Reports 5:11641. https://doi.
org/10.1038/srep11641
50. Liu H, Xie S, Liao J et al (2018) Novel graphene oxide/bentonite composite for uranium(VI)
adsorption from aqueous solution. J Radioanal Nucl Chem 317(3):1349–1360
51. Kai H, Chen G, Zeng G et al (2018) Enhanced removal performance for methylene blue by
kaolin with graphene oxide modification. J Taiwan Inst Chem Eng 89:77–85
52. Zhou X, Huang W, Shi J et al (2014) A novel MOF/graphene oxide composite GrO@MIL-101
with high adsorption capacity for acetone. J Mater Chem A 2(13):4722–4730
53. Petit C, Bandosz TJ (2009) Graphite oxide/polyoxometalate nanocomposites as adsorbents of
ammonia. J Phys Chem C 113(9):3800–3809
54. Pourbeyram S (2016) Effective removal of heavy metals from aqueous solutions by graphene
oxide–zirconium phosphate (GO–Zr-P) nanocomposite. Ind Eng Chem Res 55(19):5608–5617
55. Zhimin WuZ, Zhang L, Guan Q (2014) Preparation of a -zirconium phosphate-pillared reduced
graphene oxide. Chem Eng J 258:77–84
56. Dzyazko Y, Volfkovich Y, Perlova O et al (2019) Effect of porosity on ion transport through
polymers and polymer-based composites containing inorganic nanoparticles (review). Springer
Proc Phys 222:235–253
57. Dzyazko YS, Rozhdestvenskaya LM, Zmievskii YG et al (2015) Organic-inorganic materials containing nanoparticles of zirconium hydrophosphate for baromembrane separation.
Nanoscale Res Lett 10:64. https://doi.org/10.1186/s11671-015-0758-x
58. Rouquerol J, Baron G, Denoyel R et al (2012) 2012) Liquid intrusion and alternative methods
for the characterization of macroporous materials (IUPAC Technical Report. Pure Appl Chem
84(1):107–136
59. Kononenko N, Nikonenko V, Grande D et al (2017) Porous structure of ion exchange
membranes investigated by various technique. Adv Colloid Interface Sci 246:196–216
60. Volfkovich YM, Filippov AN, Bagotsky VS (2014) Structural properties of different materials
and powders used in different fields of science and technology. Springer, Heidelberg
