Matthew Beck

Matthew Beck

University of Kentucky

H-index: 23

North America-United States

About Matthew Beck

Matthew Beck, With an exceptional h-index of 23 and a recent h-index of 14 (since 2020), a distinguished researcher at University of Kentucky, specializes in the field of Computational Materials Science.

His recent articles reflect a diverse array of research interests and contributions to the field:

Crystallographic faceting of bulk tungsten surfaces observed during in situ heating in an environmental scanning electron microscope

Stochastic mechanical modeling of metallic foams to determine onset of mesoscale behavior

Crack modeling in charring ablation materials

Sc-containing (scandate) thermionic cathodes: Fabrication, microstructure, and emission performance

Stochastic mechanical modeling of Duocel foam from micro-to macro-length scales

Relative thermodynamic stabilities of Sc-containing surface configurations in scandate cathodes

Stochastic approach for determining properties of randomly structured materials: Effects of network connectivity

Characterization of the materials, phases and morphology typical of high-performance scandate cathodes

Matthew Beck Information

University

Position

Chemical and Materials Engineering

Citations(all)

1752

Citations(since 2020)

783

Cited By

1237

hIndex(all)

23

hIndex(since 2020)

14

i10Index(all)

36

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Matthew Beck Skills & Research Interests

Computational Materials Science

Top articles of Matthew Beck

Title

Journal

Author(s)

Publication Date

Crystallographic faceting of bulk tungsten surfaces observed during in situ heating in an environmental scanning electron microscope

Materials Characterization

Huanhuan Bai

Nicolas J Briot

Matthew J Beck

T John Balk

2024/4/23

Stochastic mechanical modeling of metallic foams to determine onset of mesoscale behavior

arXiv preprint arXiv:2302.14715

Mujan N Seif

Jake Puppo

Metodi Zlatinov

Denver Schaffarzick

Alexandre Martin

...

2023/2/28

Crack modeling in charring ablation materials

Rui Fu

Alexandre Martin

2023

Sc-containing (scandate) thermionic cathodes: Fabrication, microstructure, and emission performance

Mujan N Seif

Qunfei Zhou

Xiaotao Liu

T John Balk

Matthew J Beck

2022/5/12

Stochastic mechanical modeling of Duocel foam from micro-to macro-length scales

Mujan Seif

Jake Puppo

Metodi Zlatinov

Denver Schaffarzick

Alexandre Martin

...

2022

Relative thermodynamic stabilities of Sc-containing surface configurations in scandate cathodes

Mujan N Seif

T John Balk

Matthew J Beck

2022/4/25

Stochastic approach for determining properties of randomly structured materials: Effects of network connectivity

Acta Materialia

Mujan N Seif

Dorothy J Richardson

Katherine M Moody

Mary Martin

Matthew Turner

...

2022/1/1

Characterization of the materials, phases and morphology typical of high-performance scandate cathodes

T John Balk

Michael J Detisch

Huanhuan Bai

Xiaotao Liu

Mujan N Seif

...

2022/4/25

Deducing surface chemistry and annealing conditions from observed nanoparticle shapes: A study of scandate cathodes

Applied Surface Science

Mujan N Seif

T John Balk

Matthew J Beck

2022/12/15

Scandium wetting of tungsten surfaces in “scandate” thermionic cathodes

Surfaces and Interfaces

Shankar Miller-Murthy

Mujan Seif

Matthew J Beck

2022/12/1

A Review of Sc-containing" Scandate" Thermionic Cathodes

Mujan N Seif

Qunfei Zhou

Xiaotao Liu

T John Balk

Matthew J Beck

2022/2/9

Sc-containing (scandate) thermionic cathodes: Mechanisms for Sc enhancement of emission

Mujan N Seif

Qunfei Zhou

Xiaotao Liu

T John Balk

Matthew J Beck

2022/5/24

Stochastic mechanical modeling of MMOD impact-inspired cylindrical cavities in Duocel foam

Mujan Seif

Jake Puppo

Metodi Zlatinov

Denver Schaffarzick

Alexandre Martin

...

2022

Stochastic Modeling of Elastic Behavior of Fibrous Ablators

Mujan Seif

Sean McDaniel

Matthew Beck

Alexandre Martin

2021

The characterization of purified citrate-coated cerium oxide nanoparticles prepared via hydrothermal synthesis

Applied Surface Science

Matthew L Hancock

Robert A Yokel

Matthew J Beck

Julie L Calahan

Travis W Jarrells

...

2021/1/1

Surface excess free energies and equilibrium Wulff shapes in variable chemical environments at finite temperatures

Applied Surface Science

Mujan N Seif

Matthew J Beck

2021/2/28

Fluid Behavior in Stochastic Porous Structures

Michel Ho

Mujan Seif

Sean McDaniel

Sebastien Leclaire

Marcelo Reggio

...

2021

Development of Stochastic Model for Fibrous Ablators

Sean McDaniel

Mujan Seif

Rui Fu

Matthew Beck

Alexandre Martin

2021

Deposition of tungsten nanoparticles for potential use in dispenser cathodes

Huanhuan Bai

Matthew J Beck

Thomas John Balk

2020/10/19

Temperature effects on desorption behavior and characteristic wulff shapes of scandate cathodes

Mujan N Seif

Thomas John Balk

Matthew J Beck

2020/10/19

See List of Professors in Matthew Beck University(University of Kentucky)