Paul Mayrhofer

About Paul Mayrhofer

Paul Mayrhofer, With an exceptional h-index of 69 and a recent h-index of 43 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of Materials Science, Thin Film Materials Science, Advanced Surface Engineering, Science of Hard Materials, Phase Transformations.

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

A Strategy to Enhance the B-Solubility and Mechanical Properties of Ti–B–N Thin Films

Mechanical properties of VC/ZrC and VC/HfC superlattices

An ab initio guided study on the shear-induced fcc-hcp transition: A case study of (Ti, Al) N/ZrN multilayers

Ab initio supported development of Nb-and Ta-alloyed (Ti, Al) N thin films with improved thermal stability

Machine-learning potentials for nanoscale simulations of tensile deformation and fracture in ceramics

Atomic Radius Mismatch: A Key Parameter for Design and Synthesis of High‐Entropy Physical Vapor Deposition Coatings

Elemental distribution and fracture properties of magnetron sputtered carbon supersaturated tungsten films

Phase stability and mechanical property trends for MAB phases by high-throughput ab initio calculations

Paul Mayrhofer Information

University

Position

University Professor of Materials Science

Citations(all)

16962

Citations(since 2020)

7680

Cited By

11940

hIndex(all)

69

hIndex(since 2020)

43

i10Index(all)

248

i10Index(since 2020)

210

Email

University Profile Page

Google Scholar

Paul Mayrhofer Skills & Research Interests

Materials Science

Thin Film Materials Science

Advanced Surface Engineering

Science of Hard Materials

Phase Transformations

Top articles of Paul Mayrhofer

A Strategy to Enhance the B-Solubility and Mechanical Properties of Ti–B–N Thin Films

Acta Materialia

2024/6/1

Mechanical properties of VC/ZrC and VC/HfC superlattices

Acta Materialia

2024/5/15

An ab initio guided study on the shear-induced fcc-hcp transition: A case study of (Ti, Al) N/ZrN multilayers

Scripta Materialia

2024/5/1

Ab initio supported development of Nb-and Ta-alloyed (Ti, Al) N thin films with improved thermal stability

Surface and Coatings Technology

2024/4/8

Machine-learning potentials for nanoscale simulations of tensile deformation and fracture in ceramics

arXiv preprint arXiv:2309.00996

2023/9/2

Atomic Radius Mismatch: A Key Parameter for Design and Synthesis of High‐Entropy Physical Vapor Deposition Coatings

ADVANCED ENGINEERING MATERIALS

2024/1/29

Elemental distribution and fracture properties of magnetron sputtered carbon supersaturated tungsten films

Surface and Coatings Technology

2024/2/15

Phase stability and mechanical property trends for MAB phases by high-throughput ab initio calculations

arXiv preprint arXiv:2402.04726

2024/2/7

Superior oxidation resistance of the chemically complex but structurally simple Ti-Al-Ta-Ce-Si-La-B-nitride

Materials & Design

2023/3/1

Oxidation protection of TNM alloys with Al-rich γ-TiAl-based coatings

Journal of Alloys and Compounds

2023/12/25

Analysis of (Al, Cr, Nb, Ta, Ti)-nitride and-oxynitride diffusion barriers in Cu-Si interconnects by 3D-Secondary Ion Mass Spectrometry

Materials Characterization

2023/3/1

Explaining the Entropy Forming Ability with the atomic size mismatch

arXiv preprint arXiv:2302.00460

2023/2/1

Large mechanical properties enhancement in ceramics through vacancy-mediated unit cell disturbance

Nature Communications

2023/12/16

Al—Cr-based ceramic coatings with increased thermal stability

2023/1/24

Fatigue crack initiation in the presence of stratified surface layers on rail wheels

International Journal of Fatigue

2023/12/1

Encoding the Electronic Density of States for Machine Learning of Mechanical Properties in Transition Metal Carbides

2023

Machine-learning guided ab-initio exploration of thermal/mechanical properties in transition metal nitrides

2023

Mechanistic study of superlattice effects on the example of hexagonal diboride coatings

2023/11/28

Depth-resolved analysis of technologically relevant materials by simultaneous LA-ICP-MS & LIBS measurements

2023

Comparison of high-temperature tribological properties in different high-entropy sublattice ceramic coatings

2023

See List of Professors in Paul Mayrhofer University(Technische Universität Wien)

Co-Authors

academic-engine