Research Areas
Biography and Research Information
OverviewAI-generated summary
Jessica A. Killenbeck's research focuses on the characterization of solvent-induced inversions in colloidal aggregation during electrophoretic deposition, as detailed in her 2022 publications. Her work investigates the physical and chemical processes that govern the behavior of colloidal suspensions under specific environmental conditions, particularly the influence of solvents on aggregation patterns. Killenbeck collaborates with a team of researchers at the University of Arkansas at Fayetteville, including Robert H. Coridan, Babloo Sharma, Susanne Striegler, and Justin Reed DeMoulpied, with whom she has co-authored multiple publications. Her academic profile indicates a recent activity level and an h-index of 1, with a total of two publications and two citations.
Metrics
- h-index: 1
- Publications: 2
- Citations: 2
Selected Publications
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Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition (2022)
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Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition (2022)
Collaboration Network
Top Collaborators
- Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition