1. Asgharinezhad AA, Esmaeilpour M, Ghahraman Afshar M. Synthesis of magnetic Fe3O4@SiO2 nanoparticles decorated with polyvinyl alcohol for Cu(II) and Cd(II) ions removal from aqueous solution, Chemical Papers. 2024; 78:3799-3814.
2. Musielak M, Gagor A, Zawisza B, Talik E, Sitko R. Graphene Oxide/Carbon Nanotube Membranes for Highly Efficient Removal of Metal Ions from Water, ACS Applied Materials & Interfaces. 2019; 11: 28582-28590
3. Huang X, Wang G, Yang M, Guo W, Gao H. Synthesis of polyaniline-modified Fe3O4/SiO2/TiO2 composite microspheres and their photocatalytic application, Materials Letters. 2011; 65: 2887-2890
4. Azadi S, Sardarian AR, Esmaeilpour M. Nano Cr (III) Schiff-base complex supported on magnetic Fe3O4@SiO2: efficient, heterogeneous, and recoverable nanocatalyst for chemoselective synthesis of 1, 2-disubstituted benzimidazoles, Monatshefte für Chemie-Chemical Monthly. 2023; 154: 887-903
5. Zhang N, Peng H, Hu B. Light-induced pH change and its application to solid phase extraction of trace heavy metals by high-magnetization Fe3O4@SiO2@TiO2 nanoparticles followed by inductively coupled plasma mass spectrometry detection, Talanta. 2012; 94: 278-283.
6. Afshar MG, Crespo GA, Bakker E. Thin‐Layer Chemical Modulations by a Combined Selective Proton Pump and pH Probe for Direct Alkalinity Detection. Angewandte Chemie. 2015;127(28):8228-8231.
7. Crespo GA, Afshar MG, Bakker E. Reversible sensing of the anticoagulant heparin with protamine permselective membranes. Angewandte Chemie. 2012;124(50):12743-6.
8. Esmaeilpour M, Ghahraman Afshar M. Magnetic Nanoadsorbent: Preparation, characterization, and Adsorption Properties for Removal of Copper (II) from Aqueous Solutions. Applied Chemistry Today. 2023;18(69):11-20.
9. Esmaeilpour M, Ghahraman Afshar M, Kazemnejadi M. Preparation, characterization, and adsorption properties of bis-salophen schiff base ligand immobilized on Fe3O4@ SiO2 nanoparticles for removal of lead (II) from aqueous solutions. Applied Chemistry Today. 2023;18(66):125-46.
10. de Aragao Umbuzeiro G, Freeman HS, Warren SH, De Oliveira DP, Terao Y, Watanabe T, Claxton LD. The contribution of azo dyes to the mutagenic activity of the Cristais River. Chemosphere. 2005;60(1):55-64.
11. Zhang S, Zhang Y, Liu J, Xu Q, Xiao H, Wang X, et al. Thiol modified Fe3O4@SiO2 as a robust, high effective, and recycling magnetic sorbent for mercury removal. Chemical Engineering Journal. 2013;226:30-8.
12. Fu F, Wang Q. Removal of heavy metal ions from wastewaters: a review. Journal of Environmental Management. 2011;92(3):407-18.
13. Zhang F, Lan J, Zhao Z, Yang Y, Tan R, Song W. Removal of heavy metal ions from aqueous solution using Fe3O4-SiO2-poly (1, 2-diaminobenzene) core–shell sub-micron particles. Journal of colloid and interface science. 2012;387(1):205-12.
14. Esmaeilpour M, Ghahraman Afshar M, Noroozi Tisseh Z, Ghahremanzadeh R. Removal of copper and chromium ions from aqueous solutions with magnetic nanoparticles functionalized with N-phosphonomethyl amino diacetic acid. Journal of Applied Research of Chemical-Polymer Engineering. 2023;7(1):33-46.
15. Larimi A, Asgharinezhad AA, Ghahramanafshar M, Faghihi M. Silica nanoparticles extracted from rice husk and functionalized with dendrimer as an effective recyclable adsorbent to remove divalent cadmium from aqueous solutions. Journal of Applied Research of Chemical-Polymer Engineering. 2022;6(1):63-76.
16. Larimi A, Ghahramanafshar M, Faghihi M. Ethylenediaminetetraacetic acid coated Fe₃O₄@SiO₂ nanocomposite: An effective adsorbent for the removal of copper ions from aqueous system. Applied Chemistry Today. 2023;17(65):45-54.
17. Ghahraman Afshar M, Esmaeilpour M. Preparation, characterization, and adsorption properties of bis-salophen schiff base ligand immobilized on Fe3O4@SiO2 nanoparticles for removal of cadmium(II) from aqueous solutions. Iranian Chemical Engineering Journal. 2023:-.
18. Peng X, Wang Y, Tang X, Liu W. Functionalized magnetic core-shell Fe3O4@SiO2 nanoparticles as selectivity-enhanced chemosensor for Hg(II). Dyes and Pigments. 2011;91(1):26-32.
19. Xiao D, Hao Z, Xiaogang H, Guoqing G, Abuliti A. Facile Preparation of Ion-Imprinted Composite Film for Selective Electrochemical Removal of Nickel(II) Ions. 2014.
20. Y, Li L, Luo C, Wang X, Duan H. Removal of Pb2+ from water environment using a novel magnetic chitosan/graphene oxide imprinted Pb2+. International journal of biological macromolecules. 2016;86:505-11.
21. Bora AJ, Dutta RK. Removal of metals (Pb, Cd, Cu, Cr, Ni, and Co) from drinking water by oxidation-coagulation-absorption at optimized pH. Journal of Water Process Engineering. 2019;31:100839.
22. Ghahraman Afshar M, Esmaeilpour M, Ghaseminejad H, Esmaeili N. Detection and Analysis of Microbial Influenced Corrosion in Cooling Tower of Shahid Mofateh Power Plant. journal of New Materials. 2023;13(50):46-59.
23. Ghahraman Afshar M, Esmaeilpour M, Larimi A, Asgharinezhad A. Core-shell Nanoparticles Functionalized with Polyvinyl Alcohol Molecules: Effective Magnetic Nanoadsorbent for Removing Zn2+ Ions from Aqueous Solutions. Iranian Chemical Engineering Journal. 2024: Article in Press.
24. Ghahraman Afshar M, Ghaseminejad H, Esmaeilpour M. Microbial Corrosion in Cooling Water of Lushan Shahid Beheshti Power Plant. journal of New Materials. 2022;13(49):26-15.
25. Ghahraman Afshar M, Payehghadr M, Bahrami Panah N, Akbari M. Fe3O4@SiO2 magnetic core-shell nanoparticles functionalized with 1,4-dihydroxyanthraquinone as an effective and recyclable adsorbent for the removal of divalent nickel from aqueous solutions. Iranian Chemical Engineering Journal. 2024 Article in Press.
26. Musielak M, Gagor A, Zawisza B, Talik E, Sitko R. Graphene oxide/carbon nanotube membranes for highly efficient removal of metal ions from water. ACS applied materials & interfaces. 2019;11(31):28582-28590.
27. Kazemnejadi M, Alavi G SA, Rezazadeh Z, Nasseri MA, Allahresani A, Esmaeilpour M. Fe3O4@ SiO2 nanoparticles-functionalized Cu (II) Schiff base complex with an imidazolium moiety as an efficient and eco‐friendly bifunctional magnetically recoverable catalyst for the Strecker synthesis in aqueous media at room temperature. Applied Organometallic Chemistry. 2020;34(2):e5388.
28. Ghahramanafshar M, Noroozi TZ, Ghahremanzadeh R, Esmaeilpour M. Evaluation of the Performance of MnFe2O4 Nanoparticles Functionalized with N-Phosphonomethyl Amino Diacetic Acid as an Effective Magnetic Nanosorbent for the Removal of Ni(II), Pb(II), V(V) Ions from Aqueous Solutions. 2023.
29. Khanmohammadi M, Soleimani M, Afshar M, Bagheri Garmarudi A. Partial least squares for simultaneous determination of Fe(III) and Hg(II) in water and pharmaceutical preparations by rp-hplc using 1, 4-bis-(4-pyridil)-2, 3-diazo-1, 3-butadiene chelating agent. Journal of the Chilean Chemical Society. 2011;56(3):774-7.
30. Esmaeilpour M, Ghahramanafshar M, Faghihi M, Asgharinezhad A. EDTA-functionalized Fe3O4@ SiO2 magnetic nanoadsorbent for divalent cadmium removal from aqueous solutions. Journal of Applied Research of Chemical-Polymer Engineering. 2021;5(3):95-106.
31. Moradi M, Hasanvandian F, Afshar MG, Larimi A, Khorasheh F, Niknam E, Rahman Setayesh S. Incorporation of Fe in mixed CoCu-alkoxide hollow sphere for enhancing the electrochemical water oxidation performance. Materials Today Chemistry. 2021;22:100586.
32. Eslahi H, Sardarian AR, Esmaeilpour M. Green and sustainable palladium nanomagnetic catalyst stabilized by glucosamine‐functionalized Fe3O4@ SiO2 nanoparticles for Suzuki and Heck reactions. Applied Organometallic Chemistry. 2021;35(7):e6260.
33. Esmaeilpour M, Zahmatkesh S, Javidi J, Rezaei E. A green one-pot three-component synthesis of α-aminophosphonates under solvent-free conditions and ultrasonic irradiation using Fe3O4@SiO2-imid-PMAn as magnetic catalyst. Phosphorus, Sulfur, and Silicon and the Related Elements. 2017;192(5):530-7.
34. Sardarian A, Kazemnejadi M, Esmaeilpour M. Functionalization of superparamagnetic Fe3O4@SiO2 nanoparticles with a Cu(II) binuclear Schiff base complex as an efficient and reusable nanomagnetic catalyst for N‐arylation of α‐amino acids and nitrogen‐containing heterocycles with aryl halides. Applied Organometallic Chemistry. 2021;35(1):e6051.
35. Niknam E, Ghahraman Afshar M, Ghaseminejad H, Esamaeilpour M. Pharmaceutical Pollutants Removal by Using Electrochemical Oxidation Technique. Journal of Water and Wastewater; Ab va Fazilab (in persian). 2022;33(4):71-81.
36. Niknam E, Naffakh-Moosavy H, Afshar MG. Electrochemical performance of Nickel foam electrode in Potassium Hydroxide and Sodium Sulfate electrolytes for supercapacitor applications. Journal of Composites and Compounds. 2022;4(12):149-52.
37. Niknam E, Naffakh-Moosavy H, Moosavifard SE, Afshar MG. Multi-shelled bimetal V-doped Co3O4 hollow spheres derived from metal organic framework for high performance supercapacitors. Journal of Energy Storage. 2021;44:103508.
38. Pankratova N, Crespo GA, Afshar MG, Crespi MC, Jeanneret S, Cherubini T, Tercier-Waeber ML, Pomati F, Bakker E. Potentiometric sensing array for monitoring aquatic systems. Environmental Science: Processes & Impacts. 2015;17(5):906-14.
39. Safir I, Ngo KX, Abraham JN, Afshar MG, Pavlova E, Nardin C. Synthesis and structure formation in dilute aqueous solution of a chitosan-DNA hybrid. Polymer. 2015; 79: 29-36.
40. Zhang J, Sun W, Bergman L, Rosenholm JM, Lindén M, Wu G, et al. Magnetic mesoporous silica nanospheres as DNA/drug carrier. Materials Letters. 2012;67(1):379-82.
41. Chen H, Deng C, Zhang X. Synthesis of Fe3O4@ SiO2@PMMA core-shell-shell magnetic microspheres for highly efficient enrichment of peptides and proteins for MALDI‐TOF MS analysis. Angewandte Chemie International Edition. 2010;3(49):607-611.
42. Zhang YF, Qiu LG, Yuan YP, Zhu YJ, Jiang X, Xiao JD. Magnetic Fe3O4@C/Cu and Fe3O4@CuO core–shell composites constructed from MOF-based materials and their photocatalytic properties under visible light. Applied Catalysis B: Environmental. 2014;144:863-869.
43. Sardarian AR, Zohourian-Mashmoul N, Esmaeilpour M. Salen complex of Cu(II) supported on superparamagnetic Fe3O4@SiO2 nanoparticles: an efficient and magnetically recoverable catalyst for N-arylation of imidazole with aryl halides. Monatshefte für Chemie-Chemical Monthly. 2018;149:1101-1109.
44. Deng Y, Qi D, Deng C, Zhang X, Zhao D. Superparamagnetic high-magnetization microspheres with an Fe3O4@SiO2 core and perpendicularly aligned mesoporous SiO2 shell for removal of microcystins. Journal of the American Chemical Society. 2008;130(1):28-29.
45. Soleimani M, Afshar MG. Octaethylporphyrin as an ionophore for aluminum potentiometric sensor based on carbon paste electrode. Russian Journal of Electrochemistry. 2014;50:554-560.
46. Soleimani M, Afshar MG. Highly selective solid phase extraction of mercury ion based on novel ion imprinted polymer and its application to water and fish samples. Journal of Analytical Chemistry. 2015;70:5-12.
47. Soleimani M, Ghaderi S, Afshar MG, Soleimani S. Synthesis of molecularly imprinted polymer as a sorbent for solid phase extraction of bovine albumin from whey, milk, urine and serum. Microchemical Journal. 2012;100:1-7.
48. Soleimani M, Ghahraman Afshar M, Sedghi A. Amino‐Functionalization of Multiwall Carbon Nanotubes and Its Use for Solid Phase Extraction of Mercury Ions from Fish Sample. International Scholarly Research Notices. 2013;2013(1):674289.
49. Zandbaaf S, Khorrami MRK, Afshar MG. Genetic algorithm based artificial neural network and partial least squares regression methods to predict of breakdown voltage for transformer oils samples in power industry using ATR-FTIR spectroscopy. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. 2022;273:120999.
50. Azadi S, Sardarian AR, Esmaeilpour M. Magnetically‐recoverable Schiff base complex of Pd (II) immobilized on Fe3O4@SiO2 nanoparticles: an efficient catalyst for the reduction of aromatic nitro compounds to aniline derivatives. Monatshefte für Chemie-Chemical Monthly. 2021;152:809-821.
51. Esmaeilpour M, Zahmatkesh S. Palladium nanoparticles immobilized on EDTA-modified Fe3O4@SiO2: a highly stable and efficient magnetically recoverable catalyst for the Heck-Mizoroki coupling reactions. Inorganic and Nano-Metal Chemistry. 2019;49(8):267-276.
52. Eslahi H, Sardarian AR, Esmaeilpour M. Green Approach for Preparation of New Hybrids of 5‐Substituted‐1H‐Tetrazoles Using Novel Recyclable Nanocatalyst based on Copper(II) Anchored onto Glucosamine Grafted to Fe3O4@SiO2. ChemistrySelect. 2021;6(9):1984-1993.
53. Inaloo ID, Majnooni S, Esmaeilpour M. Superparamagnetic Fe3O4 nanoparticles in a deep eutectic solvent: An efficient and recyclable catalytic system for the synthesis of primary carbamates and monosubstituted ureas. European Journal of Organic Chemistry. 2018;2018(26):3481-3488.
54. Kazemnejadi M, Shakeri A, Nikookar M, Mohammadi M, Esmaeilpour M. Co(II) Schiff base complex decorated on polysalicylaldehyde as an efficient, selective, heterogeneous and reusable catalyst for epoxidation of olefins in mild and self-coreductant conditions. Research on Chemical Intermediates. 2017;43:6889-6910.
55. Esmaeilpour M, Sardarian AR, Firouzabadi H. Theophylline supported on modified silica‐coated magnetite nanoparticles as a novel, efficient, reusable catalyst in green one‐Pot synthesis of spirooxindoles and phenazines. ChemistrySelect. 2018;3(32):9236-9248.
56. Kazemnejadi M, Mahmoudi B, Sharafi Z, Nasseri MA, Allahresani A, Esmaeilpour M. Synthesis and characterization of a new poly α-amino acid Co(II)-complex supported on magnetite graphene oxide as an efficient heterogeneous magnetically recyclable catalyst for efficient free-coreductant gram-scale epoxidation of olefins with molecular oxygen. Journal of Organometallic Chemistry. 2019;896:59-69.
57. Sardarian AR, Eslahi H, Esmaeilpour M. Green, cost‐effective and efficient procedure for Heck and Sonogashira coupling reactions using palladium nanoparticles supported on functionalized Fe3O4@ SiO2 by polyvinyl alcohol as a highly active, durable and reusable catalyst. Applied Organometallic Chemistry. 2019;33(7):e4856.
58. Mangaleshwaran L, Thirulogachandar A, Rajasekar V, Muthukumaran C, Rasappan K. Batch and fixed bed column studies on nickel(II) adsorption from aqueous solution by treated polyurethane foam. Journal of the Taiwan Institute of Chemical Engineers. 2015;55: 112-118.
59. Abdel-Ghani NT, El-Chaghaby GA, Helal FS. Individual and competitive adsorption of phenol and nickel onto multiwalled carbon nanotubes. Journal of advanced research. 2015;6(3):405-415.
60. Sočo E, Kalembkiewicz J. Adsorption of nickel(II) and copper(II) ions from aqueous solution by coal fly ash. Journal of Environmental Chemical Engineering. 2013;1(3):581-588.
61. Ndayambaje G, Laatikainen K, Laatikainen M, Beukes E, Fatoba O, van der Walt N, Petrik L, Sainio T. Adsorption of nickel(II) on polyacrylonitrile nanofiber modified with 2-(2′-pyridyl) imidazole. Chemical Engineering Journal. 2016;284:1106-16.
62. Argun ME, Dursun S, Karatas M. Removal of Cd(II), Pb(II), Cu(II) and Ni(II) from water using modified pine bark. Desalination. 2009;249(2):519-27.
63. Heidari A, Younesi H, Mehraban Z, Heikkinen H. Selective adsorption of Pb(II), Cd(II), and Ni(II) ions from aqueous solution using chitosan-MAA nanoparticles. International journal of biological macromolecules. 2013;61:251-263.
64. Abdelrahman EA, Hegazey R. Utilization of waste aluminum cans in the fabrication of hydroxysodalite nanoparticles and their chitosan biopolymer composites for the removal of Ni(II) and Pb(II) ions from aqueous solutions: kinetic, equilibrium, and reusability studies. Microchemical Journal. 2019;145:18-25.
65. Mousavi SV, Bozorgian A, Mokhtari N, Gabris MA, Nodeh HR, Ibrahim WAW. A novel cyanopropylsilane-functionalized titanium oxide magnetic nanoparticle for the adsorption of nickel and lead ions from industrial wastewater: Equilibrium, kinetic and thermodynamic studies. Microchemical Journal. 2019;145:914-920.
66. Irani M, Keshtkar AR, Mousavian MA. Removal of Cd(II) and Ni(II) from aqueous solution by PVA/TEOS/TMPTMS hybrid membrane. Chemical Engineering Journal. 2011; 175: 251-259.
67. Kandah MI, Meunier JL. Removal of nickel ions from water by multi-walled carbon nanotubes. Journal of hazardous materials. 2007;146(1-2):283-288.