Marco Esters

Marco Esters

University of Oregon

H-index: 18

North America-United States

About Marco Esters

Marco Esters, With an exceptional h-index of 18 and a recent h-index of 15 (since 2020), a distinguished researcher at University of Oregon, specializes in the field of Solid State Physics, Solid State Chemistry, Density Functional Theory.

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

The AFLOW Library of Crystallographic Prototypes: Part 4

Disordered enthalpy–entropy descriptor for high-entropy ceramics discovery

Influence of processing on the microstructural evolution and multiscale hardness in titanium carbonitrides (TiCN) produced via field assisted sintering technology

QH-POCC: taming tiling entropy in thermal expansion calculations of disordered materials

aflow plus plus: AC plus plus framework for autonomous materials design

aflow++: A C++ framework for autonomous materials design

aflow. org: A web ecosystem of databases, software and tools

Plasmonic high-entropy carbides

Marco Esters Information

University

Position

___

Citations(all)

806

Citations(since 2020)

693

Cited By

259

hIndex(all)

18

hIndex(since 2020)

15

i10Index(all)

28

i10Index(since 2020)

24

Email

University Profile Page

Google Scholar

Marco Esters Skills & Research Interests

Solid State Physics

Solid State Chemistry

Density Functional Theory

Top articles of Marco Esters

The AFLOW Library of Crystallographic Prototypes: Part 4

arXiv preprint arXiv:2401.06875

2024/1/12

Disordered enthalpy–entropy descriptor for high-entropy ceramics discovery

Nature

2024/1/4

Influence of processing on the microstructural evolution and multiscale hardness in titanium carbonitrides (TiCN) produced via field assisted sintering technology

Materialia

2023/3/1

QH-POCC: taming tiling entropy in thermal expansion calculations of disordered materials

Acta Materialia

2023/2/15

aflow. org: A web ecosystem of databases, software and tools

Computational Materials Science

2023/1/5

Plasmonic high-entropy carbides

APS March Meeting Abstracts

2023

Front Cover: Automated Bonding Analysis with Crystal Orbital Hamilton Populations (ChemPlusChem 11/2022)

ChemPlusChem

2022/11

Automated bonding analysis with crystal orbital hamilton populations

ChemPlusChem

2022/11

High-entropy ceramics: Propelling applications through disorder

2022/2

Automated coordination corrected enthalpies with AFLOW-CCE

Physical Review Materials

2021/4/15

Acceleration of Crystallization Kinetics in Ge‐Sb‐Te‐Based Phase‐Change Materials by Substitution of Ge by Sn

Advanced Functional Materials

2021/1

Marco Esters
Marco Esters

H-Index: 9

Wolfgang Bensch
Wolfgang Bensch

H-Index: 24

Entropy landscaping of high‐entropy carbides

Advanced Materials

2021/10

Settling the matter of the role of vibrations in the stability of high-entropy carbides

Nature communications

2021/9/30

Tin-pest problem as a test of density functionals using high-throughput calculations

Physical Review Materials

2021/8/30

Carbon stoichiometry and mechanical properties of high entropy carbides

Acta Materialia

2021/8/15

See List of Professors in Marco Esters University(University of Oregon)