Dr. Fatemeh Sadeghi earned her B.Sc. in Heat & Fluid Mechanics (2007), M.Sc. in Solid Mechanics (2011), and Ph.D. in Applied Design with a specialization in nano-mechanics (2016), all from the University of Guilan. She consistently graduated with distinction, earning top honors throughout her education and is a member of the National Elite Foundation of Iran. Since 2020, Dr. Sadeghi has been appointed as a faculty member at University of Mohaghegh Ardabili in Ardabil. Currently, she serves as an Associate professor in the Department of Mechanical Engineering, within the Faculty of Advanced Technologies. Her research focuses on computational nano-mechanics, including continuum methods and atomistic simulations. She has extensively studied the mathematical modeling of high-frequency nano-oscillators and is currently collaborating on modeling drug delivery mechanisms using efficient nano-carriers. Dr. Sadeghi has authored over 50 publications in reputable international journals and conferences with the h-index of 16. She is an invited peer reviewer for several high-impact journals. Additionally, she has authored three books on engineering mathematics, numerical calculations, and the application of variational calculus in engineering. For a compressive list of her publications, please refer to her profile on google scholar.
PhD: Mechanical Engineering-Applied Design (2011-2016)
MSc: Mechanical
Engineering-Applied Design (2008-2011)
BSc: Mechanical Engineering-Heat & Fluid Mechanics (2003-2007)
Top
graduate student in BSc, MSc and PhD
Member of the National Foundation of Elites
Member of the Young Researchers and Elites Club of Islamic Azad University
Earning the title of distinguished Professor at Ahrar Institute of Higher Education
Earning the highest average evaluation score among faculty members in the first and second semesters of 1399-1400
Computational nano-mechanics
Nano-physics
Nano-bio-physics
Drug delivery
High-frequency nano-oscillators
44 - Kia A, Sadeghi F, Ansari R. Continuum modeling of fullerene encapsulation inside two-section carbon and boron nitride nanotubes. Bulletin of Materials Science. 2024; 47(2): 105.
43 - Ajori S, Eghbalian M, Sadeghi F. Graphullerene: a fully atomistic analysis of the tensile characteristics under temperature variation. Advanced Engineering Materials. 2024; 26(5): 2301128.
42 - Ajori S, Sadeghi F. Design of high-frequency carbon nanotube–carbon nanotorus oscillators for energy harvesting: A molecular dynamics study. Langmuir. 2024; 40(9):4811-4823.
41 - Gholami Y, Ansari R, Gholami R, Sadeghi F. Size-dependent free vibration and buckling analysis of magneto-electro-thermo-elastic nanoplates based on the third-order shear deformable nonlocal plate model. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science. 2022; 236(14): 8116-8133.
40 - Sadeghi F. Encapsulation of immobilized lysozyme enzyme inside various types of nanotubes: a continuum study. The European Physical Journal Plus, 2022; 137(7): 1-14.
39 - Sadeghi F, Ajori S. Dynamic behavior of lysozyme enzyme inside titania nanotubes: a continuum approach. The European Physical Journal Plus. 2022; 137(10): 1178.
38 - Ajori S, Sadeghi F, Ansari R. Dynamic behavior of chloride ion-electrically charged open carbon nanocone oscillators: A molecular dynamics study. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science. 2021; 235 (21): 5709-5717.
37 - Sheikhlou M, Sadeghi F, Najafi S, Azimloo H. Surface and nonlocal effects on the thermoelastic damping in axisymmetric vibration of circular graphene nanoresonators. Acta Mechanica Solida Sinica. 2021; 29:1-14.
36 - Sadeghi F, Ansari R. Van der Waals interactions and oscillatory behaviour of carbon onions interacting with a fully constrained graphene sheet. Bulletin of Materials Science. 2021;44(1):1-10.
35 - Sadeghi F, Ajori S, Ansari R. Continuum modeling of ion-selective membranes constructed from functionalized carbon nanotubes. European Physical Journal Plus. 2020; 135, 553.
34 - Ajori S, Sadeghi F, Ansari R. Nano-oscillators based on a C60 fullerene inside open carbon nanocones: a molecular dynamics study. Journal of the Brazilian Society of Mechanical Science and Engineering. 2020; 42 (9), 1-10.
33 - Sadeghi F, Ansari R. Continuum study on the mechanics of ion-based carbon nanocones as gigahertz oscillators. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science. 2019; 233 (9), 3259-3276.
32 - Sadeghi F, Ansari R. A detailed parametric study on the operating frequency of chloride ion-electrically charged carbon nanotube oscillators. Bulletin of Materials Science. 2019; 42 (4), 165.
31 - Ansari R, Moradweysi P, Hosseini K, Sadeghi, F. Application of modified Adomian decomposition method to pull-in instability of nano-switches using nonlocal Timoshenko beam theory. Applied Mathematical Modelling. 2018; 54, 594-604.
30 - Ajori S, Ansari R, Sadeghi F. Molecular dynamics study of gigahertz nanomechanical oscillators based on an ion inside a series of electrically charged carbon nanotubes. European Journal of Mechanics-A/Solids. 2018; 69, 45-54.
29 - Hosseinzadeh, M., Sadeghi, F., Ansari, R. Perfect position and oscillation frequency of nanosectors orbiting inside nanotori. Computations and Simulations in Mechanical Science, 2018; 01 (01), 42-52.
28 - Sadeghi F, Ansari R, Darvizeh M. Mechanics of metallic nanoparticles inside lipid nanotubes: Suction and acceptance energies. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science. 2017; 231(13):2540-2553.
27 - Ansari R, Sadeghi F, Ajori S. Oscillation characteristics of carbon nanotori molecules along carbon nanotubes under various system parameters. European Journal of Mechanics-A/Solids. 2017; 62: 67-79.
26 - Sadeghi F, Ansari R. Mechanical oscillatory behavior of a C60 fullerene tunneling through open carbon nanocones. The European Physical Journal Plus. 2017; 132: 309.
25 - Oskouie MF, Ansari R, Sadeghi F. Nonlinear vibration analysis of fractional viscoelastic Euler-Bernoulli nanobeams based on the surface stress theory. Acta Mechanica Solida Sinica. 2017; 30: 416-424.
24 - Gholami R, Darvizeh A, Ansari R, Sadeghi F. Vibration and buckling of first-order shear deformable circular cylindrical micro-/nano-shells based on Mindlin’s strain gradient elasticity theory. European Journal of Mechanics-A/Solids. 2016; 58: 76-88.
23 - Sadeghi F, Ansari R, Darvizeh M. Gigahertz nanomechanical oscillators based on ions inside cyclic peptide nanotubes: A continuum study. Zeitschrift für angewandte Mathematik und Physik. 2016; 67: 1-23.
22 - Ansari R, Sadeghi F, Darvizeh M. Continuum study on the oscillatory characteristics of carbon nanocones inside single-walled carbon nanotubes. Physica B: Condensed Matter. 2016; 482: 28-37.
21 - Ansari R, Oskouie MF, Gholami R, Sadeghi F. Thermo-electro-mechanical vibration of postbuckled piezoelectric Timoshenko nanobeams based on the nonlocal elasticity theory. Composites Part B: Engineering. 2016; 89: 316-327.
20 - Sadeghi F, Ansari R, Darvizeh M. Potential energy, force distribution and oscillatory motion of chloride ion inside electrically charged carbon nanotubes. Physica E: Low-dimensional Systems and Nanostructures. 2016; 80: 69-81.
19 - Sadeghi F, Ansari R, Darvizeh M. Continuum modeling investigation of gigahertz oscillators based on a C60 fullerene inside cyclic peptide nanotubes. The European Physical Journal Plus. 2016; 131 (2): 1-22.
18 - Ansari R, Sadeghi F. Mechanics of nested spherical fullerenes inside multi-walled carbon nanotubes. European Journal of Mechanics-A/Solids. 2015; 49: 283-92.
17 - Ansari R, Sadeghi F. On the mechanics of C60 fullerene inside open carbon nanocones: A continuum study. Physica E: Low-dimensional Systems and Nanostructures. 2015; 69: 1-12.
16 - Ansari R, Mirnezhad M, Sadeghi F. Elastic properties of chiral carbon nanotubes under oxygen adsorption. Physica E: Low-dimensional Systems and Nanostructures. 2015; 70: 129-34.
15 - Ansari R, Ajori S, Sadeghi F. Molecular dynamics investigation into the electric charge effect on the operation of ion-based carbon nanotube oscillators. Journal of Physics and Chemistry of Solids. 2015; 85: 264-272.
14 - Ansari R, Oskouie MF, Sadeghi F, Bazdid-Vahdati M. Free vibration of fractional viscoelastic Timoshenko nanobeams using the nonlocal elasticity theory. Physica E: Low-dimensional Systems and Nanostructures. 2015; 74: 318-27.
13 - Ansari R, Hasrati E, Gholami R, Sadeghi F. Nonlinear analysis of forced vibration of nonlocal third-order shear deformable beam model of magneto–electro–thermo elastic nanobeams. Composites Part B: Engineering. 2015; 83: 226-41.
12 - Sadeghi F, Ansari R, Darvizeh M. Oscillatory characteristics of metallic nanoparticles inside lipid nanotubes. The European Physical Journal D. 2015; 69 (12): 285-300.
11 - Ansari R, Sadeghi F, Shojaei MF. On the mechanics of ellipsoidal fullerenes inside open carbon nanocones: A novel numerical approach. Nano. 2014; 9 (03): 1450034.
10 - Ansari R, Shojaei MF, Mohammadi V, Gholami R, Sadeghi F. Nonlinear forced vibration analysis of functionally graded carbon nanotube-reinforced composite Timoshenko beams. Composite Structures. 2014; 113: 316-27.
9 - Hosseini K, Sadeghi F, Ansari R. First integral method for solving nonlinear physical systems of partial differential equations. Journal of Nature Science and Sustainable Technology. 2014; 8 (3): 391.
8 - Ansari R, Mahmoudinezhad E, Sadeghi F. A new equivalent spring model for determining the G-band mode frequency of single-walled carbon nanotubes. Carbon. 2013; 55: 44-52.
7 - Ansari R, Sadeghi F, Alipour A. Oscillation of C60 fullerene in carbon nanotube bundles. Journal of Vibration and Acoustics. 2013; 135 (5): 051009.
6 - Ansari R, Sadeghi F, Motevalli B. A comprehensive study on the oscillation frequency of spherical fullerenes in carbon nanotubes under different system parameters. Communications in Nonlinear Science and Numerical Simulation. 2013; 18 (3): 769-84.
5 - Ansari R, Sadeghi F, Ajori S. Continuum and molecular dynamics study of C60 fullerene–carbon nanotube oscillators. Mechanics Research Communications. 2013; 47: 18-23.
4 - Ansari R, Alipour A, Sadeghi F. Oscillatory characteristics of carbon nanotubes inside carbon nanotube bundles. Journal of Applied Physics. 2012; 112 (12):124310.
3 - Sadeghi F, Ansari R. Mechanics of ellipsoidal carbon onions inside multiwalled carbon nanotubes. Journal of Nanotechnology in Engineering and Medicine. 2012; 3 (1): 011002.
2 - Ansari R, Sadeghi F. On the oscillation frequency of ellipsoidal fullerene–carbon nanotube oscillators. Journal of Nanotechnology in Engineering and Medicine. 2012; 3 (1): 011001.
1 - Ansari R, Kazemi E, Mahmoudinezhad E, Sadeghi F. Preferred position and orientation of anticancer drug cisplatin during encapsulation into single-walled carbon nanotubes. Journal of Nanotechnology in Engineering and Medicine. 2012; 3 (1):010903.
Academic advisor for undergraduate students in the field of Energy Engineering, Faculty of Advanced Technologies, University of Mohaghegh Ardabili, Namin, Iran (2020-2024)
Academic advisor of Student Scientific Association in the field of Engineering Sciences, Faculty of Advanced Technologies, University of Mohaghegh Ardabili, Namin, Iran (2020-2021)
Head of Engineering Department, Faculty of Advanced Technologies, University of Mohaghegh Ardabili, Namin, Iran (since 2024)
برنامه هفتگی استاد در ترم جاری
نام درس | مقطع | زمان و مکان ارائه |
---|---|---|
روشهای اجزای محدود | کارشناسی ارشد |
یکشنبه - کلاس 6 - 13-16 |
ارتعاشات پیشرفته | کارشناسی ارشد |
یکشنبه - کلاس 6 - 16-19 |
مکانیک سیالات | کارشناسی |
دوشنبه - کلاس 6 - 9-12 |
محاسبات عددی | کارشناسی |
دوشنبه - کلاس 4 - 13-15 |