Tarek Ragab
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: New York University (2012); University at Buffalo, State University of New York (2009–2016); University of Tabuk (2011–2015); Alexandria University (1958–2020)
Faculty Researcher
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Tarek Ragab's research investigates the behavior of materials at the atomic and nanoscale. His work includes studies on the interfacial shear strength and stick-slip mechanisms between specific molecular coatings and graphene, as well as the effects of graphene nanoplatelet size and polymer chain length on composite thermal conductivity. Ragab also conducts numerical modeling of interparticle interactions, specifically Van der Waals forces between spherical particles and rough surfaces with varying asperity distributions. Additionally, his research explores the influence of grain number on the tensile properties of polycrystalline nickel nanowires. Ragab has authored 43 publications with 701 citations and maintains an h-index of 16.
Metrics
- h-index: 16
- Publications: 43
- Citations: 707
Selected Publications
-
A self-healing, conductive coating with hierarchical micro-nano structure for passive lunar dust mitigation (2026)
-
Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors (2026)
-
An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism (2024)
-
Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite (2023)
-
Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions (2023)
-
Effect of grain number on the uniaxial tensile properties of polycrystalline nickel nanowires (2021)
-
High current density electron wind forces in metallic graphene nanoribbons (2020)
-
Impact of electrostatic doping level on the dissipative transport in graphene nanoribbons tunnel field-effect transistors (2019)
-
Anisotropy of Graphene Nanoflake Diamond Interface Frictional Properties (2019)
-
Electrostatic Doping-Based All GNR Tunnel FET: An Energy-Efficient Design for Power Electronics (2019)
-
Mechanical and electronic properties of graphene nanomesh heterojunctions (2018)
-
Shear Strength of Square Graphene Nanoribbons beyond Wrinkling (2018)
-
Electron-phonon scattering and Joule heating in copper at extreme cold temperatures (2018)
-
Comparison of fracture behavior of defective armchair and zigzag graphene nanoribbons (2018)
-
Impact of geometry on transport properties of armchair graphene nanoribbon heterojunction (2017)
Collaboration Network
Top Collaborators
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions
- Effect of grain number on the uniaxial tensile properties of polycrystalline nickel nanowires
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions
- Effect of grain number on the uniaxial tensile properties of polycrystalline nickel nanowires
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- Effect of grain number on the uniaxial tensile properties of polycrystalline nickel nanowires
- Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions
- Numerical modeling of Van der Waals interaction between a spherical particle and rough surfaces with different planar asperity distributions
- Effect of graphene nanoplatelets relative size and polyethylene chain length on the enhancement of thermal conductivity of their composite
- An Atomistic Level Investigation of the PFDTES–Graphene Interfacial Shear Strength and the Stick–Slip Mechanism
- Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors
- Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors
- Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors
- Surface Effects in Irradiation Damage: A Review of Underlying Multi-Scale Mechanisms and Cross-System Behaviors
Similar Researchers
Based on overlapping research topics