Bryan Huey
Professor & Department Head/Material Science and Engr
Storrs Mansfield
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Scholarly Contributions
261 Scholarly Contributions
Three Dimensional Nanoscale Properties of Electrically Functional Materials
2022
Research Type: Poster/Presentation
Nanoscale volumetric mapping of functional properties at microstructural interfaces and defects
2022
Research Type: Poster/Presentation
Ultra-Resolution Volumetric Properties of Piezoelectrics and Dielectrics via Tomographic AFM
2022
Research Type: Poster/Presentation
Three Dimensional Nanoscale Properties for Photovoltaic and Electronically Functional Materials
2022
Research Type: Poster/Presentation
Interfacial‐Strain‐Controlled Ferroelectricity in Self‐Assembled BiFeO3 Nanostructures
2021
Research Type: Journal Article
Charge injection and decay of nanoscale dielectric films resolved via dynamic scanning probe microscopy
2021
Research Type: Journal Article
3D structure–property correlations of electronic and energy materials by tomographic atomic force microscopy
2021
Research Type: Journal Article
Reviving the “Schottky” barrier for flexible polymer dielectrics with a superior 2D nanoassembly coating
2021
Research Type: Journal Article
Multiscale Characterization of Photovoltaic Modules—Case Studies of Contact and Interconnect Degradation
2021
Research Type: Journal Article
3D Nanoscale Properties of Ferroelectric and Photovoltaic Devices
2021
Research Type: Poster/Presentation
Tomographic AFM for Nanoscale Volumetric Materials Properties
2021
Research Type: Poster/Presentation
Single-phase and biphasic magnetoelectric multiferroic materials by solution technique
2021
Research Type: Poster/Presentation
Direct Nanoscale Mapping of Open Circuit Voltages at Local Back Surface Fields for PERC Solar Cells
2020
Research Type: Journal Article
Iridium oxide top electrodes for piezo-and pyroelectric performance enhancements in lead zirconate titanate thin-film devices
2020
Research Type: Journal Article
Anomalous 3D Nanoscale Photoconduction in Hybrid Perovskite Semiconductors Revealed by Tomographic Atomic Force Microscopy
2020
Research Type: Journal Article