Andrew Supka

Andrew Supka

Central Michigan University

H-index: 13

North America-United States

About Andrew Supka

Andrew Supka, With an exceptional h-index of 13 and a recent h-index of 13 (since 2020), a distinguished researcher at Central Michigan University, specializes in the field of computational material science, cluster computing, high-throughput mat discovery, scientific python.

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

Pseudobinary Approach to the Discovery and Design of Copper-Based Sulfides

Two-layer high-throughput: Effective mass calculations including warping

Advanced modeling of materials with PAOFLOW 2.0: New features and software design

High-Throughput Investigation of the Electron Transport Properties in Si₁-ₓGeₓ Alloys

Key Role of d0 and d10 Cations for the Design of Semiconducting Colusites: Large Thermoelectric ZT in Cu26Ti2Sb6S32 Compounds

Magnetic Weyl semimetal emerging from non-magnetic doping

Origin of Low Thermal Conductivity in In4Se3

First-principles study of two-dimensional ferroelectrics using self-consistent Hubbard parameters

Andrew Supka Information

University

Position

___

Citations(all)

609

Citations(since 2020)

581

Cited By

252

hIndex(all)

13

hIndex(since 2020)

13

i10Index(all)

15

i10Index(since 2020)

15

Email

University Profile Page

Google Scholar

Andrew Supka Skills & Research Interests

computational material science

cluster computing

high-throughput mat discovery

scientific python

Top articles of Andrew Supka

Pseudobinary Approach to the Discovery and Design of Copper-Based Sulfides

Chemistry of Materials

2023/9/14

Two-layer high-throughput: Effective mass calculations including warping

Engineering

2022/3/1

Advanced modeling of materials with PAOFLOW 2.0: New features and software design

Computational Materials Science

2021/12/1

High-Throughput Investigation of the Electron Transport Properties in Si₁-ₓGeₓ Alloys

IEEE Access

2021/10/14

Key Role of d0 and d10 Cations for the Design of Semiconducting Colusites: Large Thermoelectric ZT in Cu26Ti2Sb6S32 Compounds

Chemistry of Materials

2021/4/28

Magnetic Weyl semimetal emerging from non-magnetic doping

APS March Meeting Abstracts

2021

Origin of Low Thermal Conductivity in In4Se3

ACS Applied Energy Materials

2020/12/4

First-principles study of two-dimensional ferroelectrics using self-consistent Hubbard parameters

Physical Review B

2020/10/30

Transport properties and electronic density-of-states of Zn-doped colusite Cu26Cr2Ge6S32

Applied Physics Letters

2020/10/26

Toppling the Transport Properties with Cationic Overstoichiometry in Thermoelectric Colusite: [Cu26Cr2Ge6]1+δS32

ACS Applied Energy Materials

2020/4/30

Jahn–Teller driven electronic instability in thermoelectric tetrahedrite

Advanced Functional Materials

2020/3

Disorder-driven glasslike thermal conductivity in colusite investigated by Mössbauer spectroscopy and inelastic neutron scattering

Physical Review Materials

2020/2/19

See List of Professors in Andrew Supka University(Central Michigan University)