“Jalal Sarabadani”

Tel:  021-22835061
Fax:  021-22835058
Email: 

IPM Positions

Faculty Member , School of Nano Science
(2018 - Present )

Related Papers

1. s. M. K.. Manzoorolajdad, H. Hamzehpour and J. Sarabadani
Electro-osmotic flow in different phosphorus nanochannels
Phys. Fluids 35 (2023), 042006  [abstract]
2. H. Khalilian, J. Sarabadani and T. Ala-Nissila
Polymer translocation in an environment of active rods
PHYSICAL REVIEW RESEARCH 5 (2023), 023107   [abstract]
3. A. Rezaie-Dereshgi, H. Khalilian and J. Sarabadani
Translocation of an active polymer into a two dimensional circular nano-container
Journal of Physics: Condensed Matter 35 (2023), 355101  [abstract]
4. J. Sarabadani, R. Metzler and T. Ala-Nissila
Driven polymer translocation into a channel: Isoflux tension propagation theory and Langevin dynamics simulations
PHYSICAL REVIEW RESEARCH 4 (2022), 033003  [abstract]
5. H. Khalilian, J. Sarabadani and T. Ala-Nissila
Polymer translocation through nanopore assisted by an environment of active rods
Phys. Rev. Research 3 (2021), 013080  [abstract]
6. J. Sarabadani, S. Buyukdagli and T. Ala-Nissila
Pulling a DNA molecule through a nanopore embedded in an anionic membrane: tension propagation coupled to electrostatics
J. Physics: Condens. Matter 32 (2020), 385101  [abstract]
7. B. Ghosh, J. Sarabadani, S. Chaudhury and T. Ala-Nissila
Pulling a folded polymer through a nanopore
J. Physics: Condens. Matter 33 (2020), 015101  [abstract]
8. J. Sarabadani
Interaction between two ring polymers inside a 2D channel
IJPR 19 (2019), 58  [abstract]
9. S. Buyukdagli, J. Sarabadani and T. Ala Nissila
Theoretical Modeling of Polymer Translocation: From the Electrohydrodynamics of Short Polymers to the Fluctuating Long Polymers
polymers 11 (2019),   [abstract]
10. S. Buyukdagli, J. Sarabadani and T. Ala-Nissila
Dielectric Trapping of Biopolymers Translocating through Insulating Membranes
polymers 10 (2018), 1242  [abstract]
11. J. Sarabadani, B. Ghosh, S. Chaudhury and T. Ala-Nissila
Dynamics of end-pulled polymer translocation through a nanopore
EPL (Europhysics Letters) 120 (2018),   [abstract]
12. J. Sarabadani and T. Ala-Nissila
Theory of pore-driven and end-pulled polymer translocation dynamics through a nanopore: an overview
J. Physics: Condens. Matter 30 (2018), 274002  [abstract]
[Back]   
scroll left or right