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50. Liu B, Tian L, Wang R et al (2017) Pyrrolic-N-doped graphene oxide/Fe2O3 mesocrystal
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51. Guo S, Zhang G, Guo Y et al (2013) Graphene oxide-Fe2O3 hybrid material as highly efficient
heterogeneous catalyst for degradation of organic contaminants. Carbon 60:437–444
52. Han S, Hu L, Liang Z et al (2014) One-step hydrothermal synthesis of 2D hexagonal nanoplates
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53. Liu Y, Jin W, Zhao Y et al (2017) Enhanced catalytic degradation of methylene blue by
α-Fe2O3/graphene oxide via heterogeneous photo-Fenton reactions. Appl Catal B-Environ
206:642–652
54. Qiu B, Xing M, Zhang J (2015) Stöber-like method to synthesize ultralight, porous, stretchable
Fe2O3/graphene aerogels for excellent performance in photo-Fenton reaction and electrochemical capacitors. J Mater Chem A 3(24):12820–12827
55. Santhosh C, Kollu P, Doshi S et al (2014) Adsorption, photodegradation and antibacterial study
of graphene-Fe3O4 nanocomposite for multipurpose water purification application. RSC Adv 4
(54):28300–28308
56. Shen J, Li Y, Zhu Y et al (2016) Aerosol synthesis of Graphene-Fe3O4 hollow hybrid
microspheres for heterogeneous Fenton and electro-Fenton reaction. J Environ Chem Eng 4
(2):2469–2476
57. Hua Y, Wang S, Xiao J et al (2017) Preparation and characterization of Fe3O4/gallic acid/
graphene oxide magnetic nanocomposites as highly efficient Fenton catalysts. RSC Adv 7
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58. Zubir NA, Yacou C, Zhang X et al (2014) Optimisation of graphene oxide–iron oxide
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Eng 2(3):1881–1888
59. Chang YH, Yao YF, Luo H et al (2014) Magnetic Fe3O4-GO nanocomposites as highly
efficient Fenton-like catalyst for the degradation of dyes. Int J Nanomanuf 10(1–2):132–141
60. Liu W, Qian J, Wang K et al (2013) Magnetically separable Fe3O4 nanoparticles-decorated
reduced graphene oxide nanocomposite for catalytic wet hydrogen peroxide oxidation. J Inorg
Organomet P 23(4):907–916
61. Zhou Z, Su M, Shih K (2017) Highly efficient and recyclable graphene oxide-magnetite
composites for isatin mineralization. J Alloy Compd 725:302–309
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strength of monolayer graphene. Science 321(5887):385–388
43. Zheng Y, Wei N, Fan Z et al (2011) Mechanical properties of grafold: a demonstration of
strengthened graphene. Nanotechnology 22(40):405701
44. Geim AK, MacDonald AH (2007) Graphene: exploring carbon flatland. Phys Today 60
(8):35–41
45. Liu Q, Guo Y, Chen Z et al (2016) Constructing a novel ternary Fe (III)/graphene/gC3N4
composite photocatalyst with enhanced visible-light driven photocatalytic activity via interfacial charge transfer effect. Appl Catal B-Environ 183:231–241
46. Zubir NA, Motuzas J, Yacou C et al (2016) Graphene oxide with zinc partially substituted
magnetite (GO–Fe1ÀxZnxOy) for the UV-assisted heterogeneous Fenton-like reaction. RSC
Adv 6(50):44749–44757
47. Lee YC, Chang SJ, Choi MH et al (2013) Self-assembled graphene oxide with organo-building
blocks of Fe-aminoclay for heterogeneous Fenton-like reaction at near-neutral pH: a batch
experiment. Appl Catal B-Environ 142:494–503
48. Xiao F, Li W, Fang L et al (2016) Synthesis of akageneite (beta-FeOOH)/reduced graphene
oxide nanocomposites for oxidative decomposition of 2-chlorophenol by Fenton-like reaction. J
Hazard Mater 308:11–20
49. Mishra M, Chun DM (2015) α-Fe2O3 as a photocatalytic material: a review. Appl Catal A-Gen
498:126–141
50. Liu B, Tian L, Wang R et al (2017) Pyrrolic-N-doped graphene oxide/Fe2O3 mesocrystal
nanocomposite: efficient charge transfer and enhanced photo-Fenton catalytic activity. Appl
Surf Sci 2017 412:207–213
51. Guo S, Zhang G, Guo Y et al (2013) Graphene oxide-Fe2O3 hybrid material as highly efficient
heterogeneous catalyst for degradation of organic contaminants. Carbon 60:437–444
52. Han S, Hu L, Liang Z et al (2014) One-step hydrothermal synthesis of 2D hexagonal nanoplates
of α-Fe2O3/graphene composites with enhanced photocatalytic activity. Adv Funct Mater 24
(36):5719–5727
53. Liu Y, Jin W, Zhao Y et al (2017) Enhanced catalytic degradation of methylene blue by
α-Fe2O3/graphene oxide via heterogeneous photo-Fenton reactions. Appl Catal B-Environ
206:642–652
54. Qiu B, Xing M, Zhang J (2015) Stöber-like method to synthesize ultralight, porous, stretchable
Fe2O3/graphene aerogels for excellent performance in photo-Fenton reaction and electrochemical capacitors. J Mater Chem A 3(24):12820–12827
55. Santhosh C, Kollu P, Doshi S et al (2014) Adsorption, photodegradation and antibacterial study
of graphene-Fe3O4 nanocomposite for multipurpose water purification application. RSC Adv 4
(54):28300–28308
56. Shen J, Li Y, Zhu Y et al (2016) Aerosol synthesis of Graphene-Fe3O4 hollow hybrid
microspheres for heterogeneous Fenton and electro-Fenton reaction. J Environ Chem Eng 4
(2):2469–2476
57. Hua Y, Wang S, Xiao J et al (2017) Preparation and characterization of Fe3O4/gallic acid/
graphene oxide magnetic nanocomposites as highly efficient Fenton catalysts. RSC Adv 7
(46):28979–28986
58. Zubir NA, Yacou C, Zhang X et al (2014) Optimisation of graphene oxide–iron oxide
nanocomposite in heterogeneous Fenton-like oxidation of Acid Orange 7. J Environ Chem
Eng 2(3):1881–1888
59. Chang YH, Yao YF, Luo H et al (2014) Magnetic Fe3O4-GO nanocomposites as highly
efficient Fenton-like catalyst for the degradation of dyes. Int J Nanomanuf 10(1–2):132–141
60. Liu W, Qian J, Wang K et al (2013) Magnetically separable Fe3O4 nanoparticles-decorated
reduced graphene oxide nanocomposite for catalytic wet hydrogen peroxide oxidation. J Inorg
Organomet P 23(4):907–916
61. Zhou Z, Su M, Shih K (2017) Highly efficient and recyclable graphene oxide-magnetite
composites for isatin mineralization. J Alloy Compd 725:302–309
References
257
