References

  1. Y. Shao, X. Wang, Y. Kang, Y. Shu, L Li, Application of Mn/MCM-41 as an adsorbent to remove methyl blue from aqueous solution, J. Colloid Interface Sci., 429 (2014) 25–33.
  2. H. Karaer, I. Uzun, Adsorption of basic dyestuffs from aqueous solution by modified chitosan, Desal. Wat. Treat., 51 (2013) 2294–2305.
  3. S. Chen, S. Tang, Y. Sun, G. Wang, H. Chen, X. Yu, Y. Su, G. Chen, Preparation of a highly porous carbon material based on quinoa husk and its application for removal of dyes by adsorption, Materials, 11 (2018) 1407–1410.
  4. C. Zhang, P.C. Zhu, L. Tan, J.M. Liu, B.E. Tan, X.L. Yang, H.B. Xu, Triptycene-based hyper-cross-linked polymer sponge for gas storage and water treatment, Macromolecules, 48 (2015) 8509–8514.
  5. N. Sarkar, G. Sahoo, R. Das, Three-dimensional rice strawstructured magnetic nanoclay-decorated tripolymeric nanohydrogels as super adsorbent of dye pollutants, ACS Appl. Nano Mater., 1 (2018) 1188–1203.
  6. C. Li, Y. He, L. Zhou, C.J. Peng, H.L. Liu, Fast adsorption of methylene blue, basic fuchsin, and malachite green by a novel sulfonic-grafted triptycene-based porous organic polymer, RSC Adv., 73 (2018) 41986–41993.
  7. M.M. Khin, A.S. Nair, V.J. Babu, A review on nanomaterials for environmental remediation, Energy Environ. Sci., 5 (2012) 8075–8109.
  8. A. Alsbaiee, B.J. Smith, L. Xiao, Rapid removal of organic micropollutants from water by a porous β-cyclodextrin polymer, Nature, 529 (2016) 190–193.
  9. I. Ali, New generation adsorbents for water treatment, Chem. Rev., 112 (2012) 5073–5091.
  10. R.X. Yang, T.T. Wangand, W.Q. Deng, Extraordinary capability for water treatment achieved by a perfluorous conjugated microporous polymer, Sci. Rep., 5 (2015) 12–15.
  11. M. Zhao, Z. Tang, P. Liu, Removal of methylene blue from aqueous solution with silica nano-sheets derived from vermiculite, J. Hazard. Mater., 158 (2008) 43–51.
  12. L. Huang, M. He, B. Chen, Facile green synthesis of magnetic porous organic polymers for rapid removal and separation of methylene blue, ACS Sustain. Chem. Eng., 5 (2017) 4050–4055.
  13. A. Asfaram, M. Ghaedi, S. Hajati, A. Goudarzi, E.A. Dil, Screening and optimization of highly effective ultrasoundassisted simultaneous adsorption of cationic dyes onto Mn-doped Fe3O4-nanoparticle-loaded activated carbon, Ultrason. Sonochem., 34 (2017) 1–12.
  14. H.N. Abdelhamid, X. Zou, Template-free and room temperature synthesis of hierarchical porous zeolitic imidazolate framework nanoparticles and their dye and CO2 sorption, Green Chem., 20 (2018) 1074–1084.
  15. Y. Wang, J. Xie, Y. Wu, H. Ge, X. Hu, Preparation of a functionalized magnetic metal-organic framework sorbent for the extraction of lead prior to electrothermal atomic absorption spectrometer analysis, J. Mater. Chem. A, 31 (2013) 8782–8789.
  16. S.L. Candelaria, B.B. Garcia, D. Liu, Nitrogen modification of highly porous carbon for improved supercapacitor performance, J. Mater. Chem., 19 (2012) 9884–9889.
  17. L. Yang, S. Jiang, Y. Zhao, Boron-doped carbon nanotubes as metal-free electrocatalysts for the oxygen reduction reaction, Angew. Chem. Int. Ed., 31 (2011) 7270–7273.
  18. Z. Qian, X. Shan, L. Chai, Si-doped carbon quantum dots: a facile and general preparation strategy, bioimaging application, and multifunctional sensor, ACS Appl. Mater. Inter., 9 (2014) 6797–6805.
  19. Y. He, H. Li, L. Zhou, C.J. Peng, H.L. Liu, Removal of methyl orange from aqueous solutions by a novel hyper-cross-linked aromatic triazine porous polymer, Acta Phys.-Chim. Sinica, 35 (2018) 299–306.
  20. D.S. Yang, D. Bhattacharjya, S. Inamdar, Phosphorus-doped ordered mesoporous carbons with different lengths as efficient metal-free electrocatalysts for oxygen reduction reaction in alkaline media, J. Am. Chem. Soc., 39 (2012) 16127–16130.
  21. W. Shen, W. Fan, Nitrogen-containing porous carbons: synthesis and application, J. Mater. Chem. A, 4 (2013) 999–1013.
  22. G. Yang, L. Tang, G. Zeng, Simultaneous removal of lead and phenol contamination from water by nitrogen-functionalized magnetic ordered mesoporous carbon, Chem. Eng. J., 259 (2015) 854–864.
  23. Q. Li, J. Zhang, Q. Lu, Hydrothermal synthesis and characterization of ordered mesoporous magnesium silicate-silica for dyes adsorption, Mater. Lett., 170 (2016) 167–170.
  24. M.J. Frisch, G.W. Trucks, H.B. Schlegel, G.E. Scuseria, M.A. Robb, J.R. Cheeseman, G. Scalmani, V. Barone, B. Mennucci, G.A. Petersson, Gaussian 09; Gaussian Inc., Wallingford, CT, 2009.
  25. T. Xu, Y. He, Y. Qin, C.J. Peng, H.L. Liu, Facile preparation of porous organic copolymer based on triptycene and crown ether for efficient organic dye adsorption, RSC Adv., 8 (2018) 4963–4968.
  26. Y. Li, Q. Meng, S.M. Zhu, Z.H. Sun, H. Yang, Z.X. Chen, C.L. Zhu, Z.P. Guo, D. Zhang,. A Fe/Fe3O4/N-carbon composite with hierarchical porous structure and in situ formed N-doped graphene-like layers for high-performance lithium ion batteries, Dalton Trans., 10 (2015) 4594–4600.
  27. B.H. Kim, N. Lee, H. Kim, K. An, Y.I. Park, Y. Choi, K. Shin, Y. Lee, S.G. Kwon, H.B. Na, J.G. Park, T.Y. Ahn, Y.W. Kim, W.K. Moon, S.H. Choi, T. Hyeon, Large-scale synthesis of uniform and extremely small-sized iron oxide nanoparticles for high-resolution T 1 magnetic resonance imaging contrast agents, J. Am. Chem. Soc., 133 (2011) 12624–12631.
  28. D.H. Liu, Y. Guo, L.H. Zhang, W.C. Li, T. Sun, A.H. Lu, Switchable transport strategy to deposit active Fe/Fe3C cores into hollow microporous carbons for efficient chromium removal, Small, 22 (2013) 3852–3857.
  29. Y. Ma, G. Ji, J.Y. Lee, Synthesis of mixed-conducting carbon coated porous γ-Fe2O3 microparticles and their properties for reversible lithium ion storage, J. Mater. Chem., 21 (2011) 13009–13014.
  30. M. Descostes, F. Mercier, N. Thromat, Use of XPS in the determination of chemical environment and oxidation state of iron and sulfur samples: constitution of a data basis in binding energies for Fe and S reference compounds and applications to the evidence of surface species of an oxidized pyrite in a carbonate medium, Appl. Surf. Sci., 165 (2000) 288–302.
  31. X.M. Sun, Y.D. Li, Colloidal carbon spheres and their core/shell structures with noble metal nanoparticles, Angew. Chem. Int. Ed., 43 (2004) 597–601.
  32. S. Wang, Y.Y. Zhai, Q. Gao, Highly efficient removal of acid red 18 from aqueous solution by magnetically retrievable chitosan/carbon nanotube: batch study, isotherms, kinetics, and thermodynamics, J. Chem. Eng. Data, 59 (2013) 39–51.
  33. Y.S. Ho Review of second-order models for adsorption systems, J. Hazard. Mater., 136 (2006) 681–689.
  34. B.H. Hameed, A.T.M. Din, A.L. Ahmad, Adsorption of methylene blue onto bamboo-based activated carbon: kinetics and equilibrium studies, J. Hazard. Mater., 141 (2007) 819–825.
  35. S. Altenor, B. Carene, E. Emmanuel, J. Lambert, J.J. Ehrhardt, S. Gaspard, Adsorption studies of methylene blue and phenol onto vetiver roots activated carbon prepared by chemical activation, J. Hazard. Mater., 165 (2009) 1029–1039.
  36. D.E. Kong, X.Y. Zheng, Y. Tao, W. Lv, Y. Gao, L.J. Zhi, Q.H. Yang, Porous graphene oxide-based carbon artefact with high capacity for methylene blue adsorption, Adsorption, 22 (2016) 1043–1050.
  37. A. Pourjavadi, M. Nazari, B. Kabiri, S.H. Hosseini, C. Bennett, Preparation of porous graphene oxide/hydrogel nanocomposites and their ability for efficient adsorption of methylene blue, RSC Adv., 13 (2016) 10430–10437.
  38. Z.G. Zhu, G.H. Li, G.F. Zeng, X.Q. Chen, D. Hu, Y.F. Zhang, Y.H. Sun. Fast capture of methyl-dyes over hierarchical amino-Co0.3Ni0.7Fe2O4@SiO2 nanofibrous membranes, J. Mater. Chem. A, 44 (2015) 22000–22004.
  39. P. Kuhn, K. Krüge, A. Thomas, M. Antonietti, “Everything is surface”: tunable polymer organic frameworks with ultrahigh dye sorption capacity, Chem. Commun., 44 (2008) 5815–5817.
  40. J. Gong, J. Liu, X.C. Chen, Z.W. Jiang, X. Wen, E. Mijowska, T. Tang, Converting real-world mixed waste plastics into porous carbon nanosheets with excellent performance in the adsorption of an organic dye from wastewater, J. Mater. Chem. A, 3 (2015) 341–351.
  41. Z.C. Xing, J.Q. Tian, Q. Liu, A.M. Asiri, P. Jiang, X.P. Sun, Holey graphene nanosheets: large-scale rapid preparation and their application toward highly-effective water cleaning, Nanoscale, 20 (2014) 11659–11663.