Gregory A. Sotzing
Professor/Chemistry
Storrs Mansfield
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Scholarly Contributions
85 Scholarly Contributions
Ultrathin, all-organic, fabric-based ferroelectret loudspeaker for wearable electronics
2022
Research Type: Journal Article
Tin-Polyester/Polyimide Hybrid System As Flexible Free- Standing Film with Tunable Dielectric Constant for Energy Storage Application
2018
Research Type: Poster/Presentation
Tin polyesters: Polyimide blends as a dielectric material for energy storage application
2019
Research Type: Poster/Presentation
Synthetically tunable polymers, free volume element size distributions, and dielectric breakdown field strengths
2023
Research Type: Journal Article
Structure-property relationship of polyimides based on pyromellitic dianhydride and short-chain aliphatic diamines for dielectric material applications
2013
Research Type: Journal Article
Structural and Magnetic Properties of CoFe2O4 and Co0.5Zn0.5Fe2O4 Nanoparticles for the Magnetoelectric Composite Films
2011
Research Type: Journal Article
Sn‐Polyester/Polyimide Hybrid Flexible Free‐Standing Film as a Tunable Dielectric Material
2018
Research Type: Journal Article
Sn-Polyester/Polyimide Hybrid Flexible Free-Standing Film as a Tunable Dielectric Material
2019
Research Type: Journal Article
Screen-Printed PEDOT:PSS Electrodes on Commercial Finished Textiles for Electrocardiography
2017
Research Type: Journal Article
Remarks on the Design of Flexible High-Temperature Polymer Dielectrics for Emerging Grand Electrification-Exemplified by Poly (oxa) norbornenes
2021
Research Type: Journal Article
Remarks on the Design of Flexible High-Temperature Polymer Dielectrics for Emerging Grand Electrification – Exemplified by Poly(oxa)norbornenes
Research Type: Journal Article
Rational design of all-organic flexible high-temperature polymer dielectrics
2022
Research Type: Journal Article
Preparation of conductive graphene/graphite infused fabrics using an interface trapping method
2015
Research Type: Journal Article
Preparation of Conductive Graphene/Graphite Infused Fabrics Using Interface Trapping Method
2015
Research Type: Journal Article