Avanish Mishra

Avanish Mishra

University of Connecticut

H-index: 13

North America-United States

About Avanish Mishra

Avanish Mishra, With an exceptional h-index of 13 and a recent h-index of 13 (since 2020), a distinguished researcher at University of Connecticut, specializes in the field of Materials Modeling, Materials Informatics, Quantum Computing.

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

Data-driven search for promising intercalating ions and layered materials for metal-ion batteries

Role of microscopic degrees of freedom in mechanical response of bicrystal nanopillars

Interface microstructure effects on dynamic failure behavior of layered Cu/Ta microstructures

Large scale benchmark of materials design methods

Modeling shock-induced void collapse in single-crystal Ta systems at the mesoscales

Modeling laser interactions with aluminum and tantalum targets using a hybrid atomistic-continuum model

Virtual diffraction simulations using the quasi-coarse-grained dynamics method to understand and interpret plasticity contributions during in situ shock experiments

Virtual texture analysis to investigate the deformation mechanisms in metal microstructures at the atomic scale

Avanish Mishra Information

University

Position

Postdoctoral Research Associate

Citations(all)

1417

Citations(since 2020)

1346

Cited By

459

hIndex(all)

13

hIndex(since 2020)

13

i10Index(all)

13

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Avanish Mishra Skills & Research Interests

Materials Modeling

Materials Informatics

Quantum Computing

Top articles of Avanish Mishra

Data-driven search for promising intercalating ions and layered materials for metal-ion batteries

Journal of Materials Science

2024/1/9

Role of microscopic degrees of freedom in mechanical response of bicrystal nanopillars

Materials Research Letters

2023/10/3

Interface microstructure effects on dynamic failure behavior of layered Cu/Ta microstructures

Scientific Reports

2023/7/13

Modeling shock-induced void collapse in single-crystal Ta systems at the mesoscales

International Journal of Plasticity

2023/5/1

Modeling laser interactions with aluminum and tantalum targets using a hybrid atomistic-continuum model

Journal of Applied Physics

2023/3/14

Virtual diffraction simulations using the quasi-coarse-grained dynamics method to understand and interpret plasticity contributions during in situ shock experiments

Journal of Materials Science

2022/7

Virtual texture analysis to investigate the deformation mechanisms in metal microstructures at the atomic scale

Journal of Materials Science

2022/6

Understanding the phase transformation mechanisms that affect the dynamic response of Fe-based microstructures at the atomic scales

Journal of Applied Physics

2021/11/5

Understanding the plasticity contributions during laser-shock loading and spall failure of Cu microstructures at the atomic scales

Computational Materials Science

2021/10/1

Feature blending: An approach toward generalized machine learning models for property prediction

ACS Physical Chemistry Au

2021/9/17

Fingerprinting shock-induced deformations via diffraction

Scientific reports

2021/5/10

Origin of high interfacial resistance in solid‐state batteries: LLTO/LCO half‐cells

ChemElectroChem

2021/4/12

Exploration of exfoliation, functionalization and properties of MXenes via first-principles and machine learning

2020/12/18

Sulfur-Doped Titanium Carbide MXenes for Room Temperature Gas Sensing

ACS Sens.

2020/8/17

Vertically Stacked 2H‐1T Dual‐Phase MoS2 Microstructures during Lithium Intercalation: A First Principles Study

Journal of American Ceramic Society

2020/7/19

Ultralow Thermal Conductivity and High Thermoelectric Figure of Merit in Mixed Valence In5X5Br (X = S, and Se) Compounds

ACS Applied Energy Materials

2020/8/31

See List of Professors in Avanish Mishra University(University of Connecticut)

Co-Authors

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