William J. Bowman

William J. Bowman

University of California, Irvine

H-index: 15

North America-United States

About William J. Bowman

William J. Bowman, With an exceptional h-index of 15 and a recent h-index of 15 (since 2020), a distinguished researcher at University of California, Irvine, specializes in the field of Materials Science and Engineering, Energy Materials, Electron Microscopy.

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

Tuning grain boundary cation segregation with oxygen deficiency and atomic structure in a perovskite compositionally complex oxide thin film

Precision Calcination Mechanism of CaCO3 to High‐Porosity Nanoscale CaO CO2 Sorbent Revealed by Direct In Situ Observations

Reversible Enhancement of Electronic Conduction Caused by Phase Transformation and Interfacial Segregation in an Entropy‐Stabilized Oxide

Designing nanostructure exsolution-self-assembly in a complex concentrated oxide

Direct Observation of Solid-Phase Crystallization of an Amorphous Complex Oxide in the Transmission Electron Microscope

Designing Multidimensional and Interconnected Multi-Element Nanostructures by Exsolution-Self-Assembly in a Complex Concentrated Oxide

Which Interfaces Matter Most? Variability in Grain Boundary Defect Chemistry and Conductivity in a Concentrated Solid Electrolyte

Mixed Ionic Electronic Conduction Caused by Phase Transformation and Interfacial Segregation in an Entropy Stabilized Oxide

William J. Bowman Information

University

Position

___

Citations(all)

781

Citations(since 2020)

683

Cited By

321

hIndex(all)

15

hIndex(since 2020)

15

i10Index(all)

19

i10Index(since 2020)

19

Email

University Profile Page

Google Scholar

William J. Bowman Skills & Research Interests

Materials Science and Engineering

Energy Materials

Electron Microscopy

Top articles of William J. Bowman

Tuning grain boundary cation segregation with oxygen deficiency and atomic structure in a perovskite compositionally complex oxide thin film

2024/2/2

Precision Calcination Mechanism of CaCO3 to High‐Porosity Nanoscale CaO CO2 Sorbent Revealed by Direct In Situ Observations

Advanced Materials Interfaces

2024/4/5

Reversible Enhancement of Electronic Conduction Caused by Phase Transformation and Interfacial Segregation in an Entropy‐Stabilized Oxide

Advanced Functional Materials

2024/2/4

Designing nanostructure exsolution-self-assembly in a complex concentrated oxide

Matter

2024/1/11

Direct Observation of Solid-Phase Crystallization of an Amorphous Complex Oxide in the Transmission Electron Microscope

Electrochemical Society Meeting Abstracts 244

2023/12/22

Designing Multidimensional and Interconnected Multi-Element Nanostructures by Exsolution-Self-Assembly in a Complex Concentrated Oxide

Electrochemical Society Meeting Abstracts 244

2023/12/22

Which Interfaces Matter Most? Variability in Grain Boundary Defect Chemistry and Conductivity in a Concentrated Solid Electrolyte

Electrochemical Society Meeting Abstracts 244

2023/12/22

Mixed Ionic Electronic Conduction Caused by Phase Transformation and Interfacial Segregation in an Entropy Stabilized Oxide

Electrochemical Society Meeting Abstracts 244

2023/12/22

Human Perception-Inspired Grain Segmentation Refinement Using Conditional Random Fields

arXiv preprint arXiv:2312.09968

2023/12/15

A Correlated STEM/APT Study of Multidimensional and Interconnected Multi-element Nanostructures Derived from a Complex Concentrated Oxide

2023/8/1

Compositionally complex perovskite oxides: Discovering a new class of solid electrolytes with interface-enabled conductivity improvements

Matter

2023/7/5

High entropy oxide (Co, Cu, Mg, Ni, Zn) O exhibits grain size dependent room temperature deformation

Materials Research Letters

2023/3/4

Nanoscale Iron Redistribution during Thermochemical Decomposition of CaTi1–xFexO3−δ Alters the Electrical Transport Pathway: Implications for Oxygen …

ACS Applied Nano Materials

2023/1/20

Growth of nanoporous high-entropy oxide thin films by pulsed laser deposition

Journal of Materials Research

2022/1/14

Bulk and surface exsolution produces a variety of Fe-rich and Fe-depleted ellipsoidal nanostructures in La 0.6 Sr 0.4 FeO 3 thin films

Nanoscale

2022

Compositionally Complex Perovskite Oxides as a New Class of Li-Ion Solid Electrolytes

arXiv preprint arXiv:2212.13451

2022/12/27

Bulk and Surface Exsolution Produce a Variety of Fe-Rich and Fe-Depleted Ellipsoidal Nanostructures in Functional Perovskite Thin Films

Microscopy and Microanalysis

2022/8

In Situ Solid Phase Crystallization of Functional Ceramics in the Transmission Electron Microscope

Microscopy and Microanalysis

2022/8

Exsolution of Core-Shell Nanoparticles in a Complex Concentrated Perovskite Oxide Thin Film Synthesized in One Step

Microscopy and Microanalysis

2022/8

See List of Professors in William J. Bowman University(University of California, Irvine)