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:: مقالات ارائه شده در مجلات بین المللی - دکتر وحید صفری فرد ::
 | تاریخ ارسال: 1396/5/9 | 
  1. N. Khosroshahi, M. Karimi, T. Taghvaei, V. Safarifard, Ultrasound-assisted synthesis of CoFe۲O۴/Ce-UiO-۶۶ nanocomposite ‎for photocatalytic aerobic oxidation of aliphatic alcohols. Materials Today Chemistry ۲۰۲۱, ۲۲, ۱۰۰۵۸۲
  2. S. M. Hosseini, M. Karimi, V. Safarifard, Metal–organic framework/carbon nitride nanosheets composites (TMU-۴۹/CNNSs): efficient photocatalyst for aerobic oxidation of alcohols under visible light. New Journal of Chemistry ۲۰۲۱, ۴۵, ۱۷۶۷۴
  3. M. Rad, S. Borhani, M. Moradi, V. Safarifard, Tuning the crystallinity of ZrO۲ nanostructures derived from thermolysis of Zr-based aspartic acid/succinic acid MOFs for energy storage application. Physica E: Low-dimensional Systems and Nanostructures ۲۰۲۱, ۱۳۴, ۱۱۴۹۲۱.
  4. B. Jeyhoon; Y. Davoudabadi Farahani; V. Safarifard, Application of nanoporous metal-organic frameworks as chemical sensors. Journal of Applied Research in Chemistry ۲۰۲۱, ۱۵, ۱.
  5. Y. Li, M. Karimi, Y.-N.Gong, N. Dai, V. Safarifard, H.-L. Jiang, Integration of metal-organic frameworks and covalent organic frameworks: Design, synthesis, and applications. Matter ۲۰۲۱, ۴, ۲۲۳۰.
  6. G. A. M. Ali, Z. H. Bakr, V. Safarifard, K. F. Chong, Recycled Nanomaterials for Energy Storage (Supercapacitor) Applications. Waste Recycling Technologies for Nanomaterials Manufacturing, Springer ۲۰۲۱, ۱۷۵-۲۰۲.
  7. M. Karimi, H. Mohebali, S. Sadeghi, V. Safarifard, A. R. Mahjoub, A. Heydari, Additive-free aerobic C-H oxidation through a defect-engineered Ce-MOF catalytic system. Microporous and Mesoporous Materials ۲۰۲۱, ۳۲۲, ۱۱۱۰۵۴.
  8. M. Karimi, S. Sadeghi, H. Mohebali, Z. Azarkhosh, V. Safarifard, A. R. Mahjoub, A. Heydari, Fluorinated Solvent-Assisted Photocatalytic Aerobic Oxidative Amidation of Alcohols via Visible-Light-Mediated ‎ HKUST-۱/Cs-POMoW Catalysis. New Journal of Chemistry ۲۰۲۱, Accepted Manuscript.
  9. H. Shayegan, V. Safarifard, H. Taherkhani, M. A. RezvaniAn amine/imine functionalized microporous MOF as a new fluorescent probe exhibiting selective sensing of Fe۳+ and Al۳+ over mixed metal ionsIranian Chemical Communication ۲۰۲۰, ۸, ۱۹۰.
  10. S. Azadi, R. Zare-Dorabei, F. Hamidi , V. Safarifard, Synthesis of GQDZIF-۸ nano hybrids and its application as a lead optical sensor. Journal of Applied Chemistry ۲۰۲۰, ۱۵, ۳۲۷.
  11. H. Shayegan, G. A.M. Ali, V. Safarifard, Amide‑Functionalized Metal–Organic Framework for High Efficiency and Fast Removal of Pb(II) from Aqueous Solution. Journal of Inorganic and Organometallic Polymers and Materials ۲۰۲۰, ۳۰, ۳۱۷۰.
  12. Y. D. Farahani, V. SafarifardAn amine/imine functionalized microporous MOF as a new fluorescent probe exhibiting selective sensing of Fe۳+ and Al۳+ over mixed metal ionsIranian Chemical Communication ۲۰۲۰, ۸, ۱۰۹.
  13. E Naghian, E. M. Khosrowshahi, E. Sohouli, F. Ahmadi, M. R. Nasrabadi, V. Safarifard, A new electrochemical sensor for the detection of fentanyl lethal drug by a screen-printed carbon electrode modified with the open-ended channels of Zn(II)-MOF. New Journal of Chemistry ۲۰۲۰, ۴۴, ۹۲۷۱.
  14. M. Aghayi-Anaraki, V. Safarifard, Fe۳O۴MOF Magnetic Nanocomposites: Synthesis and Applications. European Journal of Inorganic Chemistry ۲۰۲۰, ۲۰, ۱۹۱۶.
  15. E. Moradi, R. Rahimi, V. Safarifard, Ultrasound-assisted preparation nanostructures of Cu۲(BDC)۲(BPY)-MOF: Highly selective and sensitive luminescent sensing of THF small molecule and Cu۲+ and Pb۲+ ions. Journal of Solid State Chemistry ۲۰۲۰, ۲۸۸, ۱۲۱۳۹۷.
  16. E Naghian, F. Shahdost-fardd, E. Sohoulif, V. Safarifard, M. Najafih, M. Rahimi-Nasrabadi, A. Sobhani-Nasabi, Electrochemical determination of levodopa on a reduced graphene oxide paste electrode modified with a metal-organic framework. Microchemical Journal ۲۰۲۰, ۱۵۶, ۱۰۴۸۸۸.
  17. Z. S. Rozveh, S. Kazemia, M. Karimi, G. A.M. Ali, S. Kazemi, V. Safarifard, Effect of functionalization of metal-organic frameworks on anion sensing. Polyhedron ۲۰۲۰, ۱۸۳, ۱۱۴۵۱۴
  18. E. Moradi, R. Rahimi, V. Safarifard, Porphyrinic zirconium-based MOF with exposed pyrrole Lewis base site as an efficient fluorescence sensing for Hg۲+ ions, DMF small molecule, and adsorption of Hg۲+ ions from water solution. Journal of Solid State Chemistry ۲۰۲۰, ۲۸۶, ۱۲۱۲۷۷
  19. H. Shayegan, G. A.M. Ali, V. Safarifard, Recent Progress in the Removal of Heavy Metal Ions from Water Using Metal-Organic Frameworks. ChemistrySelect ۲۰۲۰, ۵, ۱۲۴.
  20. A. Amini, S. Kazemi, V. Safarifard, Metal-organic framework-based nanocomposites for sensing applications - A Review. Polyhedron ۲۰۲۰, ۱۷۷, ۱۱۴۲۶۰.
  21. Z. Seyfi Hasankola, R. Rahimi, H. Shayegan, E. Moradi, V. Safarifard, Removal of Hg۲+ heavy metal ion using a highly stable mesoporous porphyrinic zirconium metal-organic framework. Inorganica Chimica Acta ۲۰۲۰, ۵۰۱, ۱۱۹۲۶۴.
  22. E. Moradi, R. Rahimi, Y. D. Farahani, V. Safarifard, Porphyrinic zirconium-based MOF with exposed pyrrole Lewis base site as a luminescent sensor for highly selective sensing of Cd۲+ and Br- ions and THF small molecule. Journal of Solid State Chemistry ۲۰۱۹, ۲۸۲, ۱۲۱۱۰۳.
  23. H. Shayegan, Y. D. Farahani, V. Safarifard, A pillar-layer metal-organic framework as a turn-on luminescent sensor for highly selective and sensitive detection of Zn(II) ion. Journal of Solid State Chemistry ۲۰۱۹, ۲۷۹, ۱۲۰۹۶۸.
  24. Z. Seyfi Hasankola, R. Rahimi, V. SafarifardRapid and efficient ultrasonic-assisted removal of lead(II) in water using two copper- and zinc-based metal-organic frameworksInorganic Chemistry Communications ۲۰۱۹, ۱۰۷, ۱۰۷۴۷۴.
  25. M. Ehsani Besheli, R. Rahimi, Y. D. Farahani, V. Safarifard, A porous Ni-based metal-organic framework as a selective luminescent probe to Fe۳+ metal ion and MeOH. Inorganica Chimica Acta ۲۰۱۹, ۴۹۵, ۱۱۸۹۵۶.
  26. Y. D. Farahani, V. SafarifardHighly selective detection of Fe۳+, Cd۲+ and CH۲Cl۲ based on a fluorescent Zn-MOF with azine-decorated pores. Journal of Solid State Chemistry ۲۰۱۹, ۲۷۵, ۱۳۱.
  27. E. Khezerloo, S.M. Mousavi-khoshdel, V. SafarifardSensitive and selective detection of metal ions and small molecules in aqueous media using a hydrolytically stable amide-functionalized metal–organic framework. Polyhedron ۲۰۱۹, ۱۶۶, ۱۶۶.
  28. M. Tanhaeia, A. R. Mahjoub, V. Safarifard, Energy-efficient sonochemical approach for the preparation of nanohybrid composites from graphene oxide and metal-organic framework. Inorganic Chemistry Communications ۲۰۱۹, ۱۰۲, ۱۸۵.
  29. Y. D. Farahani, V. Safarifard, A luminescent metal-organic framework with pre-designed functionalized ligands as an efficient fluorescence sensing for Fe۳+ ions. Journal of Solid State Chemistry ۲۰۱۹, ۲۷۰, ۴۲۸.
  30. E. Moradi, R. Rahimi, V. Safarifard, Sonochemically synthesized microporous metal–organic framework representing unique selectivity for detection of Fe۳+ ions. Polyhedron ۲۰۱۹, ۱۵۴, ۲۵۱.
  31. Y. D. Farahani, M. Tanhaei, V. Safarifard, Nanoporous coordination polymers: design, synthesis, and application. Iran Polymer Technology; Research and Development ۲۰۱۹, ۴, ۱۹.
  32. S. Kazemi, V. Safarifard, Carbon dioxide capture in MOFs: The effect of ligand functionalizationPolyhedron ۲۰۱۸, ۱۵۴, ۲۳۶-۲۵۱
  33. S. Kazemi, V. Safarifard, Carbon Dioxide Capture on Metal-organic Frameworks with Amide-decorated Pores. Nanochemistry Research ۲۰۱۸, ۳, ۶۲-۷۸
  34. M. Tanhaeia, A. R. Mahjoub, V. Safarifard, Ultrasonic-assisted synthesis and characterization of nanocomposites from azine-decorated metal-organic framework and graphene oxide layers. Materials Letters ۲۰۱۸, ۲۲۷, ۳۱۸–۳۲۱
  35. S. Beheshti, V. Safarifard, A. Morsali, Isoreticular interpenetrated pillared-layer microporous metal-organic framework as a highly effective catalyst for three-component synthesis of pyrano[۲,۳-d]pyrimidines. Inorganic Chemistry Communications ۲۰۱۸, ۹۴, ۸۰–۸۴
  36. L. Esrafili, V. Safarifard, E. Tahmasebi, M. D. Esrafili, A. Morsali, Functional group effect of isoreticular metal–organic frameworks on heavy metal ion adsorption. New Journal of Chemistry ۲۰۱۸, ۴۲, ۸۸۶۴-۸۸۷۳
  37. M. GharibV. Safarifard, A. Morsali, Ultrasound assisted synthesis of amide functionalized metal-organic framework for nitroaromatic sensing. Ultrasonics - Sonochemistry ۲۰۱۸, ۴۲, ۱۱۲–۱۱۸
  38. M. Tanhaeia, A. R. Mahjoub, V. SafarifardSonochemical synthesis of amide-functionalized metal-organic framework/graphene oxide nanocomposite for the adsorption of methylene blue from aqueous solutionUltrasonics - Sonochemistry ۲۰۱۸, ۴۱, ۱۸۹–۱۹۵
  39. V. Safarifard, A. Morsali, Facile preparation of nanocubes zinc-based metal-organic framework by an ultrasound-assisted synthesis method; precursor for the fabrication of zinc oxide octahedral nanostructures. Ultrasonics - Sonochemistry ۲۰۱۸, ۴۰, ۹۲۱-۹۲۸
  40. M.-L. Hu, V. Safarifard, E. Doustkhah, S. Rostamnia, A. Morsali, N. Nouruzi, S. Beheshtid, K. Akhbari, Taking Organic Reactions Over Metal-Organic Frameworks as Heterogeneous Catalysis. Microporous and Mesoporous Materials ۲۰۱۸, ۲۵۶, ۱۱۱-۱۲۷
  41. M. Ghorbanloo, V. Safarifard, A. Morsali, Heterogeneous Catalysis with Coordination Modulation Synthesized MOF: Morphology-Dependent Catalytic Activity. New Journal of Chemistry ۲۰۱۷, ۴۱, ۳۹۵۷-۳۹۶۵
  42. V. Safarifard, S. Rodríguez-Hermida, V. Guillerm, I. Imaz, M. Bigdeli, A. Azhdari Tehrani, J. Juanhuix, A. Morsali, M. E. Casco, J. Silvestre-Albero, E. V. Ramos-Fernandezd, Daniel Maspoch, The influence of the amide groups in the CO۲/N۲ selectivity of a series of isoreticular, interpenetrated metal-organic frameworks. Crystal Growth & Design ۲۰۱۶, ۱۶, ۶۰۱۶−۶۰۲۳
  43. Z. Saedi, V. Safarifard, A. Morsali, Dative and covalent-dative postsynthetic modification of a two-fold interpenetration pillared-layer MOF for heterogeneous catalysis: A comparison of catalytic activities and reusability. Microporous and Mesoporous Materials ۲۰۱۶, ۲۲۹, ۵۱-۵۸
  44. Y. Hanifehpour, V. Safarifard, A. Morsali, B. Mirtamizdoust, S. W. Joo, Ultrasound-assisted fabrication of a new nano-rods ۳D copper(II)-organic coordination supramolecular compound. Ultrasonics Sonochemistry ۲۰۱۶, ۳۱, ۲۰۱–۲۰۵
  45. A. Azhdari Tehrani, V. Safarifard, A. Morsali, G. Bruno, H. Amiri Rudbari, Ultrasound-assisted synthesis of metal–organic framework nanorods of Zn-HKUST-۱ and their templating effects for facile fabrication of zinc oxide nanorods via solid-state transformation. Inorganic Chemistry Communications ۲۰۱۵, ۵۹, ۴۱–۴۵
  46. A. R. Abbasi, J. Aali, A. Azadbakht, A. Morsali, V. Safarifard, Synthesis and Characterization of TMU-۱۶-NH۲ Metal-organic Framework Nanostructure Upon Silk Fiber: Study of Structure Effect on Morphine and Methyl Orange Adsorption Affinity. Fibers and Polymers ۲۰۱۵, ۱۶, ۱۱۹۳-۱۲۰۰
  47.  S. Khazalpour,  V. Safarifard, A. Morsali, Davood Nematollahi, Electrochemical synthesis of pillared layer mixed ligand metal-organic framework: DMOF-۱–Zn. RSC Advances ۲۰۱۵, ۵, ۳۶۵۴۷-۳۶۵۵۱
  48. V. Safarifard, A. Morsali, Applications of ultrasound to the synthesis of nanoscale metal-organic coordination polymers; a review paper. Coordination Chemistry Review ۲۰۱۵, ۲۹۲, ۱–۱۴
  49. V. Safarifard, S. Beheshti, A. Morsali, An interpenetrating amine-functionalized metal–organic framework as an efficient and reusable catalyst for the selective synthesis of tetrahydro-chromenes. CrystEngComm, ۲۰۱۵, ۱۷, ۱۶۸۰–۱۶۸۵
  50. Y. Hanifehpour, V. Safarifard, A. Morsali, B. Mirtamizdoust, S. W. Joo, Sonochemical syntheses of two new flower-like nano-scale high coordinated lead(II) supramolecular coordination polymers. Ultrasonics Sonochemistry ۲۰۱۵, ۲۳, ۲۸۲–۲۸۸
  51. F. Z. Karizi, V. Safarifard, S. K. Khani, A. Morsali, Ultrasound-assisted synthesis of nanorods ۳D zinc(II) metal-organic polymer: Precursor for the fabrication of ZnO nano-structure. Ultrasonics Sonochemistry ۲۰۱۵, ۲۳, ۲۳۸–۲۴۵
  52. V. Safarifard, A. Morsali, Influence of an amine group on the highly efficient reversible adsorption of iodine in two novel isoreticular interpenetrated pillared-layer microporous metal–organic frameworks. CrystEngComm ۲۰۱۴, ۱۶, ۸۶۶۰–۸۶۶۳
  53. X.-L. Wang, L. Hashemi, L.-H. Tu, S.-Y. Wang, Y. Shen, B.-F. Huang, H.-P. Xiao, V. Safarifard, A. Morsali, Synthesis, crystal structures and photoluminescence properties of three cadmium(II) metal-organic coordination complexes constructed from flexible bis(imidazole) and carboxybenzaldehyde ligands. Journal of Molecular Structure ۲۰۱۴, ۱۰۶۸, ۱۴۹-۱۵۴
  54. H. Wang, V. Safarifard, S-Y. Wang, L-H. Tu, H-P. Xiao, B-F. Huang, X-H. Li, M. Payehghadr, A. Morsali Five copper(II) metal–organic coordination complexes with micro-channels based on flexible bis(imidazole) and carboxybenzaldehyde ligands; structural influence of experimental conditions on their frameworks. RSC Advances ۲۰۱۴, ۴, ۱۱۴۲۳–۱۱۴۲۹
  55. V. Safarifard, A. Morsali, Sonochemical syntheses of a new fibrous-like nano-scale manganese(II) coordination supramolecular compound; precursor for the fabrication of octahedral-like Mn۳O۴ nano-structure. Ultrasonics Sonochemistry ۲۰۱۴, ۲۱, ۲۵۳–۲۶۱
  56. A. Tahmasian, V. Safarifard, A. Morsali, S. W. Joo, Sonochemical syntheses of a new fibrous-like nano-scale strontium(II) ۳D coordination polymer; precursor for the fabrication of a strontium carbonate nanostructure. Polyhedron ۲۰۱۴, ۶۷, ۸۱-۸۸.
  57. V. Safarifard, A. Morsali, S. W. Joo, Sonochemical synthesis and characterization of nano-sized lead(II) ۳D coordination polymer: Precursor for the synthesis of lead(II) oxybromide nanoparticles. Ultrasonics Sonochemistry ۲۰۱۳, ۲۰, ۱۲۵۴–۱۲۶۰
  58. V. Safarifard, A. Morsali, Solid state syntheses of nano lead(II) iodide triazole carboxylate coordination polymer from its bromide/thiocyanate/chloride analogs via mechanochemical crystal to crystal transformations. Inorganica Chimica Acta ۲۰۱۳, ۴۰۵, ۲۰۳-۲۰۸
  59. V. Safarifard, A. Morsali, Sonochemical syntheses of nano lead(II) iodide triazole carboxylate coordination polymer: Precursor for facile fabrication of lead(II) oxide/iodide nano-structures. Inorganica Chimica Acta ۲۰۱۳, ۳۹۸, ۱۵۱-۱۵۷
  60. M.-L. Hu, V. Safarifard, A. Morsali, T.-L. Shao, X.-C. Li, Facile fabrication of ruthenium(IV) oxide nanostructures by thermal decomposition of two new organoruthenium(II) complexes. Inorganic Chemistry Communications ۲۰۱۳, ۳۷, ۱۸۹-۱۹۲
  61. J. Wang, V. Safarifard, A.-Y. Wang, Y. Shen, J.-M. Cai, H.-P. Xiao, A. Morsali, pH controlled supramolecular structures of new silver(I) complexes based on ۲-sulfoterephthalic acid and ۴,۴′-bipyridine. Inorganica Chimica Acta ۲۰۱۳, ۴۰۷, ۲۱۶-۲۲۲
  62. V. Safarifard, A. Morsali, Mechanochemical solid-state transformations from a ۳D lead(II) chloride triazole carboxylate coordination polymer to its bromide/thiocyanate analogs via anion-replacements: precursors for the preparation of lead(II) chloride/bromide/sulfide nanoparticles. CrystEngComm ۲۰۱۲, ۱۴, ۵۱۳۰-۵۱۳۲
  63. V. Safarifard, A. Morsali, Sonochemical syntheses of a nano-sized copper(II) supramolecule as a precursor for the synthesis of copper(II) oxide nanoparticles. Ultrasonics Sonochemistry ۲۰۱۲, ۱۹, ۸۲۳-۸۲۹
  64. V. Safarifard, A. Morsali, Sonochemical syntheses of a nanoparticles cadmium(II) supramolecule as a precursor for the synthesis of cadmium(II) oxide nanoparticles. Ultrasonics Sonochemistry ۲۰۱۲, ۱۹, ۱۲۲۷-۱۲۳۳
  65. M. Payehghadr, V. Safarifard, M. Ramazani, A. Morsali, Preparation of Cadmium(II) Oxide Nanoparticles from a New One-Dimensional Cadmium(II) Coordination Polymer Precursor; Spectroscopic and Thermal Analysis Studies. Journal of Inorganic and Organometallic Polymers and Materials ۲۰۱۲, ۲۲, ۵۴۳-۵۴۸.
  66. V. Safarifard, A. Morsali, Reversible crystal-to-crystal transformation of a ۳D-۳D coordination polymer by solid state anion-replacement with no change in nano-particle morphology. CrystEngComm ۲۰۱۱, ۱۳, ۴۸۱۷-۴۸۱۹.
  67. V. Safarifard, A. Morsali, Sonochemical syntheses and characterization of nano-sized lead(II) coordination polymer with ligand ۱H-۱,۲,۴-triazole-۳-carboxylate. Ultrasonics Sonochemistry ۲۰۱۲, ۱۹, ۳۰۰-۳۰۶.
  68. F. Marandi, V. Safarifard, A. Morsali, H.-K. Fun, Sonochemical synthesis and characterization of a nanostructured ۳-D lead(II) coordination polymer with ۴-methoxybenzoyltrifluoroacetone. Journal of Coordination Chemistry ۲۰۱۱, ۶۴, ۳۷۸۱-۳۷۹۱
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