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Mohammad Nasr Esfahani
Mohammad Nasr Esfahani
Associate Professor (UK Senior Lecturer), The University of York
york.ac.uk의 이메일 확인됨 - 홈페이지
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Numerical analysis of lithium-ion battery thermal management system using phase change material assisted by liquid cooling method
R Wang, Z Liang, M Souri, MN Esfahani, M Jabbari
International Journal of Heat and Mass Transfer 183, 122095, 2022
1062022
A Review on Size‐Dependent Mechanical Properties of Nanowires
M Nasr Esfahani, BE Alaca
Advanced Engineering Materials 21 (8), 1900192, 2019
1012019
Systematic evaluation of a flat-heat-pipe-based thermal management: Cell-to-cell variations and battery ageing
Z Liang, R Wang, AH Malt, M Souri, MN Esfahani, M Jabbari
Applied Thermal Engineering 192, 116934, 2021
592021
Sulfide stress corrosion cracking and hydrogen induced cracking of A216-WCC wellhead flow control valve body
SMR Ziaei, AH Kokabi, M Nasr-Esfehani
Case Studies in Engineering Failure Analysis 1 (3), 223-234, 2013
322013
A computational simulation platform for designing real-time monitoring systems with application to COVID-19
F Shahbazi, M Jabbari, MN Esfahani, A Keshmiri
Biosensors and Bioelectronics 171, 112716, 2021
312021
A new method for internal cooling of a large format lithium-ion battery pouch cell
O Elsewify, M Souri, MN Esfahani, E Hosseinzadeh, M Jabbari
Energy 225, 120139, 2021
282021
Effect of nanoscale defects on the thermal conductivity of graphene
MN Esfahani, M Jabbari, Y Xu, C Soutis
Materials Today Communications 26, 101856, 2021
272021
Piezoresistive silicon nanowire resonators as embedded building blocks in thick SOI
MN Esfahani, Y Kilinc, MÇ Karakan, E Orhan, MS Hanay, Y Leblebici, ...
Journal of Micromechanics and Microengineering 28 (4), 045006, 2018
272018
Piezoresistive silicon nanowire resonators as embedded building blocks in thick SOI
MN Esfahani, Y Kilinc, MÇ Karakan, E Orhan, MS Hanay, Y Leblebici, ...
Journal of Micromechanics and Microengineering 28 (4), 045006, 2018
272018
Surface Stress Effect on Silicon Nanowire Mechanical Behavior: Size and Orientation Dependence
MN Esfahani, BE Alaca
Mechanics of Materials 127, 112-123, 2018
202018
Numerical Simulation of a Core–Shell Polymer Strand in Material Extrusion Additive Manufacturing
H Narei, M Fatehifar, AH Malt, J Bissell, M Souri, M Nasr Esfahani, ...
Polymers 13 (3), 476, 2021
192021
A monolithic approach to downscaling silicon piezoresistive sensors
MN Esfahani, Y Leblebici, BE Alaca
Journal of Microelectromechanical Systems 26 (3), 624-631, 2017
192017
Effect of Native Oxide on Stress in Silicon Nanowires: Implications for Nanoelectromechanical Systems
M Nasr Esfahani, S Zare Pakzad, T Li, XF Li, Z Tasdemir, ...
ACS Applied Nano Materials 5 (9), 13276-13285, 2022
172022
Surface stress effects on the mechanical properties of silicon nanowires: a molecular dynamics simulation
M Nasr Esfahani
Journal of Applied Physics 125 (13), 2019
162019
A new characterization approach to study the mechanical behavior of silicon nanowires
S Zare Pakzad, M Nasr Esfahani, Z Tasdemir, N Wollschlaeger, XF Li, T Li, ...
Mrs Advances 6, 500-505, 2021
142021
Monolithic technology for silicon nanowires in high-topography architectures
MN Esfahani, M Yilmaz, N Wollschläger, IW Rangelow, Y Leblebici, ...
Microelectronic Engineering 183, 42-47, 2017
142017
Numerical modelling of nanocomposite conductive plate for battery thermal management using a novel multi-domain approach
M Jabbari, R Wang, Z Liang, MN Esfahani, E Hosseinzadeh
Applied Thermal Engineering 182, 116067, 2021
132021
Nanomechanical modeling of the bending response of silicon nanowires
S Zare Pakzad, M Nasr Esfahani, Z Tasdemir, N Wollschläger, T Li, ...
ACS Applied Nano Materials 6 (17), 15465-15478, 2023
122023
Thermo-coupled Surface Cauchy–Born theory: An engineering finite element approach to modeling of nanowire thermomechanical response
MN Esfahani, MR Sonne, JH Hattel, BE Alaca
Mechanics of Materials 94, 46-52, 2016
122016
The role of native oxide on the mechanical behavior of silicon nanowires
SZ Pakzad, MN Esfahani, BE Alaca
Materials Today Communications 34, 105002, 2023
112023
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