بخش پژوهشکده علوم پایه و فناوری‌های نوین
مقالات
Physics Department

    2017

  1. S. Mobarakabadi, N. Adrang, M. Habibi, and E. N. Oskoee, Segregation of a binary granular mixture in a vibrating sawtooth base container, Eur. Phys. J. E 40, 79 (2017).
  2. M. M. Najafpour, S. Salimi, Z. Zand, M. Hołyńska, T. Tomo, J. P. Singh, K. H. Chae, and S. I. Allakhverdiev, Nanosized manganese oxide/holmium oxide: a new composite for water oxidation, New J. Chem., 41, 13732 (2017).
  3. S. Barati, and S. H. Abedinpour Optical conductivity of three and two dimensional topological nodal-line semimetals, Phys. Rev. B., 96, 155150 (2017).
  4. R. Khasseh, S. H. Abedinpour, and B. Tanatar Phase diagram and dynamics of Rydberg-dressed fermions in two dimensions, Phys. Rev. A., 96, 053611 (2017).
  5. M. Mir, S. H. Abedinpour Coupled spin-charge dynamics in helical Fermi liquids beyond the random phase approximation, Phys. Rev. B., 96, 245110 (2017).
  6. M. Farrokhi D. G. , and H. Safa,Subgroups with Large Relative Commutativity Degree, Quaestiones Mathematicae, 40,973–979 (2017).
  7. F. Varmaghani, M. Hassan, D. Nematollahiand S. Mallakpour, Electrochemical synthesis of diverse sulfonamide derivatives depending on the potential electrode and their antimicrobial activity evaluation, New J. Chem., 41,8279 (2017).
  8. 2018

  9. Z. Fazli and A. Najafi Long-wavelength instabilities in a system of interacting active particles, J. Stat. Mech, , 023201 (2018).
  10. A. Mazloom, S. H. Abedinpour Interplay of interlayer pairing and many-body screening in a bilayer of dipolar fermions, Phys. Rev. B., 98, 014513 (2018).
  11. F. Saeedi and M. Farrokhi Derakhshandeh Ghouchan Finite groups with a given number of relative centralizers, COMMUNICATIONS IN ALGEBRA, 46, 378–385 (2018).
  12. M. Farrokhi D. G., M. Rajabian, and A. Erfanian Relative Cayley graphs of finite groups, Asian-European Journal of Mathematics, 13,2050003 (2018).
  13. H. Safa, M. Farrokhi D. G. and M. R. R. Moghaddam Some Properties of 2-auto-engel Groups, Houston Journal of Mathematics, 44,31-48 (2018).
  14. M. Malzoumati-Khiaban, A. Foroush Bastani, and M. R. Yaghouti, Long-term adaptive symplectic numerical integration of linear stochastic oscillators driven by additive whitenoise, Numer. Algor., (2018).
  15. M. Iman, Z. Narimani, I. Hamraz, and E. Ansari, Network based identification of different mechanisms underlying pathogenesis of human papilloma virus-active and human papilloma virus-negative oropharyngeal squamous cell carcinoma , J. Chin. Chem. Soc. , 1-10 (2018).
  16. E. Ansari, M. Keshtkaran,R. Wallace, S. M. H. Mirsadeghi, and F. Ansari, OOPAP and OPVD: Two Innovative Improvements for Hiding Secret Data Into Images, Iran. J. Sci. Technol. Trans. Electr. Eng., ,1-11 (2018).
  17. F. Varmaghani, B. Karimi, and S. Mallakpour Stabilization of 4-phenylurazole by electrografting on a nano-fibrillated mesoporous carbon modified electrode. Reactivity of anchored triazolinedione groups against Michael-type addition at electrode/electrolyte interface, Electrochimica Acta, 269,312-320 (2018).
  18. M. M. Najafpour, and H. Feizi Water oxidation catalyzed by two cobalt complexes: new challenges and questions, Catal. Sci. Technol., 8,1840 (2018).
  19. S. Heidari, M. M. Najafpour, M. Hołyńska, J. P. Singh, K. H. Chae, and M. Khatamian Water oxidation by simple manganese salts in the presence of cerium(IV) ammonium nitrate: towards a complete picture, Dalton Trans., 47,1557 (2018).
  20. M. M. Najafpour, S. Mehrabani, R. Bagheri, Z. Song, J. Shen, and S. I. Allakhverdiev An aluminum/cobalt/iron/nickel alloy as a precatalyst for water oxidation, Int. J. of Hydrogen Energy 43,2083-2090 (2018).
  21. M. M. Najafpour, S. Madadkhani, S. Akbarian, Z. Zand, M. Hołyńska, M. Kompany-Zareh, T. Tatsuya, J. P. Singh, K. H. Chae and S. I. Allakhverdiev Links between peptides and Mn oxide: nano-sized manganese oxide embedded in a peptide matrix, New J. Chem., 42,10067 (2018).
  22. M. M. Najafpour, Hadi Feizi Water oxidation by Ni(1,4,8,11-tetraazacyclotetradecane)2+ in the presence of carbonate: new findings and an alternative mechanism, Dalton Trans., 47,6519 (2018).
  23. M. M. Najafpour, N. J. Moghaddam, L. Hassani, R. Bagheri, Z. Song, and S. I. Allakhverdiev Toward Escherichia coli bacteria machine for water oxidation, Photosynthesis Research, 136,257–267 (2018).
  24. H. Feizi, F. Shiri, R. Bagheri, J. P. Singh, K. H. Chae, Z. Song, and M. M. Najafpour The application of a nickel(II) Schiff base complex in water oxidation: the importance of nanosized materials, Catal. Sci. Technol., 8,3954 (2018).
  25. M. M. Najafpour, S. Mehrabani, Y. Mousazadea, and M. Hołyńska Water oxidation by a copper(II) complex: new findings, questions, challenges and a new hypothesis, Dalton Trans., 47,9021 (2018).
  26. Z. Zand, M. M. Najafpour, R. Bagheri, and Z. Song Nanosized silver bromide: an efficient catalyst for alcohol oxidation in the presence of a multinuclear silver complex, New J. Chem., 42, 12172 (2018).
  27. B. Karimi, M. Ghahremani, R. Ciriminna, and M. PagliaroNew Stable Catalytic Electrodes Functionalized with TEMPO for the Waste-Free Oxidation of Alcohol , Org. Process Res. Dev., , (2018).
  28. M. Rafiee, B. Karimi, and H. ShirmohammadiGraphitized Nitrogen-Doped Ordered Mesoporous Carbon Derived from Ionic Liquid; Catalytic Performance Toward ORR, Electrocatalysis, 9, 632–639 (2018).
  29. B. Karimi, M. Tavakolian, M. Akbari, and F. MansouriIonic Liquids in Asymmetric Synthesis: An Overall View from Reaction Media to Supported Ionic Liquid Catalysis, Chem. Cat.Chem., (2018).
  30. B. Karimi, O. Yari, M. Khorasani, H. Vali, and F. MansouriAerobic Oxidative Dehydrogenation of Amines Catalyzed by a Recoverable Ruthenium Catalyst under Mild Reaction Conditions, Chem. Cat.Chem., 10,1783–1787 (2018).
  31. B. Karimi, H. Barzegar, and H. Vali,Au–Pd bimetallic nanoparticles supported on a high nitrogen-rich ordered mesoporous carbon as an efficient catalyst for room temperature Ullmann coupling of aryl chlorides in aqueous media , Chem. Commun., 54, 7155 (2018).
  32. H. Khanjani, and A. G. Moghaddam,Anomalous quantum interference effects in graphene SNS junctions due to strain-induced gauge fields , Phys. Rev. B, 98, 195421 (2018).
  33. V. Derakhshan, A. G. Moghaddam, and D. Ceresoli, Tailoring topological states in silicene using different halogen-passivated Si(111) substrates , Phys. Rev. B, 97, 125301 (2018).
  34. F. Varmaghani, and M. Taleghan Ghafari, On the Proton-Coupled Electron Transfer of Urazole Derivatives in pH-Unbuffered Protic and Aprotic Solutions: The Substituent Effect, J. Electrochem. Soc., 165 (14) G155-G162 (2018).
  35. B. Nemati Saray, M. Lakestani, and C. Cattani, Evaluation of mixed Crank–Nicolson scheme and Tau method for the solution of Klein–Gordon equation, Applied Mathematics and Computation, 331 169-181 (2018).
  36. B. Nemati Saray, and J. Manafian, Sparse representation of delay differential equation of Pantograph type using multi-wavelets Galerkin method, Engineering Computations, 35 887 - 903 (2018).
  37. M. Shahriari, B. Nemati Saray, M. Lakestani, and J. Manafian, Numerical treatment of the Benjamin-Bona-Mahony equation using Alpert multiwavelets, Eur. Phys. J. Plus, 133 201 (2018).
  38. I. Seydi, S. H. Abedinpour, R. Asgari, and B. Tanatar, Composite quasiparticles in strongly correlated dipolar Fermi liquids, Phys. Rev. A., 98, 063623 (2018).
  39. M. Gholinejad, N. Dasvarza, and C. Nájera Novel oxime-palladacycle supported on clay composite as an efficient heterogeneous catalyst for Sonogashira reaction, Inorganica Chimica Acta, 483, 262–270 (2018).
  40. M. Gholinejad, M. Bahrami, C. Nájera, and B. Pullithadathil, Magnesium oxide supported bimetallic Pd/Cu nanoparticles as an efficient catalyst for Sonogashira reaction, Journal of Catalysis, 363, 81-89 (2018).
  41. M. Gholinejad, R. Bonyasi, C. Najera, F. Saadati, M. Bahrami, and N. Dasvarz Gold Nanoparticles Supported on Imidazole-Modified Bentonite: Environmentally Benign Heterogeneous Catalyst for the Three-Component Synthesis of Propargylamines in Water, Chem. Plus Chem., 83, 431-438 (2018).
  42. M. Gholinejad, M. Afrasi, N. Nikfarjam, and C. Nájerac Magnetic crosslinked copoly(ionic liquid) nanohydrogel supported palladium nanoparticles as efficient catalysts for the selective aerobic oxidation of alcohols, Applied Catalysis A, General, 563, 185-194 (2018).
  43. M. Gholinejad, F. Zareh, and C. Najera, Iron oxide modified with pyridyl‐triazole ligand for stabilization of gold nanoparticles: An efficient heterogeneous catalyst for A3 coupling reaction in water , Appl. Organometal Chem., 32 e4454 (2018).
  44. R. Mokhtar-Ahmadabadi, Z. Madadi, S. Akbari-Birgani, C. Grillon, L. Hasani, S. Hosseinkhani, and S. Zareian, Developing a circularly permuted variant of Renilla luciferase as a bioluminescent sensor for measuring Caspase-9 activity in the cell-free and cell-based systems , Biochemical and Biophysical Research Communications, 506 1032-1039 (2018).
  45. B. Kaboudin, F. Saghatchi, F. Kazemi, and Shiva Akbari-Birgani, A Novel Magnetic Carbon Nanotubes Functionalized with Pyridine Groups: Synthesis, Characterization and Their Application as an Efficient Carrier for Plasmid DNA and Aptamer , Chemistry Select, 3 6743 – 6749 (2018).
  46. 2019

  47. M. Mashkoori, A. G. Moghaddam, M. H. Hajibabaee, A. M. Black-Schaffer, and F. Parhizgar, Impact of topology on the impurity effects in extended s-wave superconductorswith spin-orbit coupling , Phys. Rev. B, 99, 014508 (2019).
  48. F. Varmaghani, Competition of Electrocatalytic Activity and Oxidative Ring Cleavage of Unstable Triazolinediones: The Substituent Effect , J. Electrochem. Soc., 166 (10) G103-G109 (2019).
  49. A. Atakhani, F. Mohammad-Rafiee, A. Gholami, Influence of cross-linking and retrograde flow on formation and dynamics of lamellipodium , PLoS ONE, 14 (3) e0213810 (2019).
  50. B. Nemati Saray, An efficient algorithm for solving Volterra integro-differential equations based on Alpert’s multi-wavelets Galerkin method, J. Compu. and Applied Math., 348 453-465 (2019).
  51. P. Bayati, M. N. Popescu, W. E. Uspal, S. Dietrich, and A. Najafi, Dynamics near planar walls for various model self-phoretic particles , Soft Matter, (2019).
  52. P. Bayati, and A. Najafi, Electrophoresis of active Janus particles , J. Chem. Phys, 234902 234902 (2019).
  53. M. R. Nejad, and A. Najafi, Chemotaxis mediated interactions can stabilize the hydrodynamic instabilities in active suspensions , Soft Matter, 15 3248-3255 (2019).
  54. M. Gholinejad, Z. Naghshbandi, and C. Nájera, Carbon-Derived Supports for Palladium Nanoparticles as Catalysts for Carbon-Carbon Bonds Formation , Chem. Cat. Chem., 11 1792-1823 (2019).
  55. M. Gholinejad, M. Afrasi, and C. Najera, Caffeine gold complex supported on magnetic nanoparticles as a green and high turnover frequency catalyst for room temperature A3 coupling reaction in water , Appl. Organometal Chem., 33 e4760 (2019).
  56. S. Mohammadi, S. Akbari-Birgani, M. Borji, B. Kaboudin, and M. Vaezi, Diethyl [(3-phenoxy-2-oxo-4-phenyl-azetidin-1-yl)-phenyl-methyl]- phosphonate as a potent anticancer agent in chemo-differentiation therapy of acute promyelocytic leukemia , European Journal of Pharmacology, 846 79-85 (2019).
  57. S. Akbari-Birgani, M. Khademy, M. Mohseni-Dargah, Z. Madadi, R. Mokhtar-Ahmadabadi, and P. Davoodi-Monfared, Caspases interplay with kinases and phosphatases to determine cell fate , European Journal of Pharmacology, 855 20-29 (2019).
  58. M. Mohseni-Dargah, S. Akbari-Birgani, Z. Madadi, F. Saghatchi, and B. Kaboudin, Carbon nanotube-delivered iC9 suicide gene therapy for killing breast cancer cells in vitro , Nanomedicine, 14 (2019).
  59. Z. Madadi, S. Akbari-Birgani, P. Davoodi-Monfared, and S. Mohammadi, The non-apoptotic role of caspase-9 promotes differentiation in leukemic cells , BBA - Molecular Cell Research, 1866 118524 (2019).
  60. A. Khosravanizadeh, P. Sens, and F. M. Rafiee, Wrapping of a nanowire by a supported lipid membrane , Soft matte , 15 7490-7500 (2019).
  61. M. Gholinejad, N. Dasvarz, M. Shojafar,and J. M. Sansano, Starch Functionalized Creatine for Stabilization of Gold Nanoparticles: Efficient Heterogeneous Catalyst for the Reduction of Nitroarenes , Inorganica Chimica Acta , 495 118965 (2019).
  62. M. Gholinejad, E. Oftadeh, and J. M. Sansano, Clinochlore-Supported Copper Nanoparticles as Green and Efficient Catalyst for Room-Temperature Synthesis of 1,2,3-Triazoles in Water, Chemistry Select , 4 3151 –3160 (2019).
  63. M. Gholinejad, E. Oftadeh, M. Shojafar, and J. M. Sansano, Synergistic Effects of ppm Levels of Palladium on Natural Clinochlore: a New Reagent for Reductions of Nitroarenes, ChemSusChem , 12 4240-4248 (2019).
  64. M. Gholinejad, Z. Rasouli, C. Najera, and J. M. Sansano, Palladium Nanoparticles on a Creatine-Modified Bentonite Support: An Efficient and Sustainable Catalyst for Nitroarene Reduction, ChemPlusChem , 84 1122-1129 (2019).
  65. F, Khosravi, M, Gholinejad, D. Lledo, G. Grindlay, C. Najera, and J.M. Sansano, 1-Butyl-3-methyl-2-(diphenylphosphino)imidazalolium hexafluorophosphate as an efficient ligand for recoverable palladiumcatalyzed Suzuki-Miyaura reaction in neat water, Journal of Organometallic Chemistry , 901 120941 (2019).
  66. M. Khosravi, H. Feizi, R. Bagheri, Z. Song, B. Haghighi, and M. M. Najafpour, Investigation of the photoelectrochemical properties of layered manganese oxide, New J. Chem., 43, 4049-4058 (2019).
  67. M. M. Najafpour, and H. Feizi A new decomposition mechanism for metal complexes under wateroxidation conditions, Scientific Reports , 9,7483 (2019).
  68. M. Khosravi, H. Feizi, B. Haghighi and M. M. Najafpou, A simple, facile and low-cost method for the preparation of mixed-phase titanium oxide: toward efficient photoelectrochemical water oxidation, New J. Chem., 43, 6989-7000 (2019).
  69. Y. Mousazadeh, M. M. Najafpour, R. Bagheri, Z. Jaglicic, J. P. Singh, K. H. Chae, Z. Song, M. Rodionova, R. Voloshin, J. Shen, S. Ramakrishna and S. I. Allakhverdiev, A manganese (II) phthalocyanine under water-oxidation reaction: New findings, Dalton Trans., 48, 12147-12158 (2019).
  70. M. Tavakoliana, and M. M. Najafpour, Molybdenum carbide as an efficient and durable catalyst for aqueous Knoevenagel condensation, New J. Chem., 43, 164347 (2019).
  71. Z. Abdi, R. Bagheri, Z. Song, and M. M. Najafpour Water oxidation by Ferritin: A semi-natural electrode, Scientific Reports., 9, 1149 (2019).
  72. S. Madadkhani1, R. Aghakhanpour, J. P. Singh, R. Bagheri, K. H. Chae, Z. Song, and M. M. Najafpour, A trimetallic organometallic precursor for efficient water oxidation, Scientific Reports., 9, 3734 (2019).
  73. S. Heidari1, J. P. Singh,H. Feizi,R. Bagheri, K. H. Chae, Z. Song, M. Khatamian1, and M. M. Najafpour, Electrochemical water oxidation by simple manganese salts, Scientific Reports., 9, 7749 (2019).
  74. Z. Zand, P. Salimi, M. R. Mohammadi, R. Bagheri, P. Chernev, Z. Song, H. Dau, M. Görlin, and M. M. Najafpour, Nickel−Vanadium Layered Double Hydroxide under Water-Oxidation Reaction: New Findings and Challenges, ACS Sustainable Chem. Eng., 7, 17252−17262 (2019).
  75. H. Feizi, R. Bagheri, Z. Jagličić, J. P. Singh, K. H. Chae, Z. Song and M. M. Najafpour, A nickel(II) complex under water-oxidation reaction: what is the true catalyst?, Dalton Trans., 48, 547-557 (2019).
  76. G. Azadi, Z. Zand, Y. Mousazade, R. Bagheri, J. Cui, Z. Song, R. Bikas, K. Wozniak, S. I. Allakhverdiev, and M. M. Najafpour, A tetranuclear nickel(II) complex for water oxidation: Meeting new challenges, International Journal of Hydrogen Energy., 44, 2857-2867 (2019).
  77. S. Akbariana, M. Kompany-Zareha, M. M. Najafpour, T. Tomoe, and S. I. Allakhverdievf, Unsupervised classification of PSII with and without water-oxidizing complex samples by PARAFAC resolution of excitation-emission fluorescence images, Journal of Photochemistry & Photobiology, B: Biology., 195, 58–66 (2019).
  78. B. Nemati Saray, Sparse multiscale representation of Galerkin method for solving linear‐mixed Volterra‐Fredholm integral equations, Math Meth Appl Sci., 43, 2601-2614 (2019).
  79. A. Daneshyar, D. Nematollahi, F. Varmaghani, H. Goljani, and H. Alizadeh, Electrochemical synthesis of a new phosphonium betaine. Kinetic evaluation and antibacterial susceptibility, Electrochimica Acta., 324, 134893 (2019).
  80. 2020

  81. S. H. Abedinpour, and S. Barati, Thermoelectric response of nodal-line semimetals: Probing the Fermi surface topology , Phys. Rev. B , 102 125139 (2020).
  82. M. Mir, and S. H. Abedinpour, Dynamical density response and collective modes of topological-insulator ultrathin films , Phys. Rev. B , 101 115108 (2020).
  83. I. Seydi, S. H. Abedinpour, R. E. Zillich, R. Asgari, and B. Tanatar, Rotons and Bose condensation in Rydberg-dressed Bose gases , Phys. Rev. A , 101 013628 (2020).
  84. A. Razzaghi, J. Mostafavi Amjad, and M. Maleki, Thickness measurement of transparent liquid films with Paraxial Self-Reference Interferometry , Scientific Reports , 10 1-10 (2020).
  85. M. Gholinejad, Z. Naghshbandi, and J. M. Sansano, Co/Cu bimetallic ZIF as New heterogeneous catalyst for reduction of nitroarenes and dyes , Appl Organometal Chem. , 34 e5522 (2020).
  86. M. Gholinejad, M. Shojafar, and J. M. Sansano, Enhanced catalytic activity of natural hematite‑supported ppm levels of Pd in nitroarenes reduction , Journal of the Iranian Chemical Society , 17 2033-2043 (2020).
  87. M. Gholinejad, H. Esmailoghli, and J. M. Sansano, Human Hair Catalyzed Selective Reduction of Nitroarenes to Amines , Canadian Journal of Chemistry , 98 244-249 (2020).
  88. Y. Mousazadeh, M. R. Mohammadi, R. Bagheri, R. Bikas, P. Chernev, Z. Song, T. Lis, M. Siczek, N. Noshiranzadeh, S. mebs, H. Dau, I. Zaharieva, and M. M. Najafpour, Synthetic manganese-calcium cluster similar to the catalyst of Photosystem II: Challenges for biomimetic water oxidation, Dalton Trans., 49, 5597-5605 (2020).
  89. S. Madadkhani, S. I. Allakhverdiev, and M. M. Najafpour, Iridium-based nanocomposite prepared from an iridium complex with a hydrocarbon-based ligand, New J. Chem., 44, 15636-15645 (2020).
  90. S. Madadkhani, S. I. Allakhverdiev, and M. M. Najafpour, Iridium-based nanocomposite prepared from an iridium complex with a hydrocarbon-based ligand, New J. Chem., 44, 15636-15645 (2020).
  91. P. Salimi, and M. M. Najafpour, A simple method for synthesizing highly active amorphous iridium oxide for water-oxidation under acidic conditions, Chem. Eur. J., , (2020).
  92. M. S. Ali Akbari, R. Bagheri, Z. Song, and M. M. Najafpour, Oxygen-evolution reaction by nickel/nickel oxide interface in the presence of ferrate(VI), Scientific Reports., 10, 8757 (2020).
  93. B. Kaboudin, L. Behrouzi, F. Kazemi, M. M. Najafpour, and H. Aoyama, Electrochemical Synthesis of Sulfinate Esters: Nickel(II)-Catalyzed Oxidative Esterification of Thiols with Alcohols in an Undivided Cell, ACS Omega., 5, 17947−17954 (2020).
  94. S. Kalantarifard, S. I. Allakhverdiev, and M. M. Najafpour, Water oxidation by a nickel complex: New challenges and analternative mechanism, ScienceDirect., , (2020).
  95. B. Sarvi, S. M. Hosseini, B. Deljoo, A. El-Sawy, A. Shirazi Amin, M. Aindow, S. L. Suib and M. M. Najafpour, New findings and current controversies in the reaction of ruthenium red and ammonium cerium(IV) nitrate: Focus on the precipitated compound, Catal. Sci., 10, 2491-2502 (2020).
  96. T. Safdari, N. Akbari, A. Valizadeh, R. Bagheri, Z. Song, S. I. Allakhverdiev and M. M. Najafpour, Iron-nickel oxide: A promising strategy for water oxidation, New J. Chem., 44, 1517-1523 (2020).
  97. S. Mehrabani, R. Bikas, Z. Zand, Y. Mousazade, S. I. Allakhverdiev, and M. M. Najafpour, Photoelectrochemistry of manganese oxide/mixed phase titanium oxide heterojunction, New J. Chem., 44, 3514-3523 (2020).
  98. M. Khosravi, B. haghighi, H. Feizi, S. I. Allakhverdiev and M. M. Najafpour, Water splitting by a pentanuclear iron complex, International journal o f hydrogen energy., 45, 17434-17443 (2020).
  99. M. M. Najafpour, I. Zaharieva, Z. Zand, S. M. Hosseini, M. Kouzmanova, M. Hołyn´ska, I. Tranca, A. W. Larkum, J. Shen, and S. I. Allakhverdiev, Water-oxidizing complex in Photosystem II: Its structure and relation to manganese-oxide based catalysts, Coordination Chemistry Reviews., 409, 213183 (2020).
  100. R. G. Mohammadi, and A. G. Moghaddam, Anisotropic RKKY interactions mediated by j = 3 2 quasiparticles in half-Heusler topological semimetals, PHYSICAL REVIEW B., 101, 075421 (2020).
  101. B. Nemati Saray, and M. Lakestani, On the sparse multi-scale solution of the delay differential equations by an efficient algorithm, Applied Mathematics and Computation., 381, 125291 (2020).
  102. V. Khakyzadeh, P. Chegini, and F. Varmaghani, Electrochemical investigation of the chloroselenobenzene under its atmosphere-sensitive characteristics, Electrochimica Acta., 360, 137025 (2020).
  103. M. T. Ghafari,F. Varmaghani, B. Karimi, and V. Khakyzadeh, Robust non-covalent and covalent anchored N,N,N’,N’-tetramethyl-p-phenylenediamine derivative on electrode surface via spontaneous physical immobilization and in situ generated aryldiazonium ion electro-grafting: implication for on-surface chemistry and electro-catalytic determinations, Analyst., 145, 596–606 (2020).
  104. M. Biagooi, and E. N. Oskoee, The efects of slit-pore geometry on capacitive properties: a molecular dynamics study, Scientific Reports., 10, 6533 (2020).
  105. E. Madadi, M. Biagooi, F. M. jafari, and S. E. N. Oskoee, Particle size efect on sorting with optical lattice, Scientific Reports., 10, 18294 (2020).
  106. M. Biagooi , M. Samanipour , S. A. Ghasemi, and S. E. N. Oskoee, CAVIAR: A simulation package for charged particles in environments surrounded by conductive boundaries, AIP Advances., 10, 035310 (2020).

Last update: 14/07/2019

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