Kathryn Walden Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
grad_student
Research Areas
Biography and Research Information
OverviewAI-generated summary
Kathryn Walden is a graduate student at the University of Central Arkansas whose research encompasses advanced biosensing and bioanalysis techniques, as well as DNA and nucleic acid chemistry. Her work extends to advanced chemical physics studies, catalytic processes in materials science, and nanopore/nanochannel transport phenomena. Walden's investigations incorporate both experimental and computational methods, as demonstrated by her recent work on the hydration and charge-transfer effects of alkaline earth metal ions binding to carboxylate, phosphate, and guanine. She also has studied near-thermal reactions of gold ions with methyl halides. Her primary research interests lie in the intersection of chemistry, physics, and materials science at the nanoscale.
Metrics
- h-index: 1
- Publications: 2
- Citations: 10
Selected Publications
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Hydration and Charge-Transfer Effects of Alkaline Earth Metal Ions Binding to a Carboxylate Anion, Phosphate Anion, and Guanine Nucleobase (2021)
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Near-Thermal Reactions of Au<sup>+</sup>(<sup>1</sup>S,<sup>3</sup>D) and AuX<sup>+</sup> with CH<sub>3</sub>X (X = Br, I): A Combined Experimental and Computational Analysis (2021)
Collaboration Network
Top Collaborators
- Hydration and Charge-Transfer Effects of Alkaline Earth Metal Ions Binding to a Carboxylate Anion, Phosphate Anion, and Guanine Nucleobase
- Near-Thermal Reactions of Au<sup>+</sup>(<sup>1</sup>S,<sup>3</sup>D) and AuX<sup>+</sup> with CH<sub>3</sub>X (X = Br, I): A Combined Experimental and Computational Analysis
- Near-Thermal Reactions of Au<sup>+</sup>(<sup>1</sup>S,<sup>3</sup>D) and AuX<sup>+</sup> with CH<sub>3</sub>X (X = Br, I): A Combined Experimental and Computational Analysis
- Near-Thermal Reactions of Au<sup>+</sup>(<sup>1</sup>S,<sup>3</sup>D) and AuX<sup>+</sup> with CH<sub>3</sub>X (X = Br, I): A Combined Experimental and Computational Analysis
- Near-Thermal Reactions of Au<sup>+</sup>(<sup>1</sup>S,<sup>3</sup>D) and AuX<sup>+</sup> with CH<sub>3</sub>X (X = Br, I): A Combined Experimental and Computational Analysis
- Near-Thermal Reactions of Au<sup>+</sup>(<sup>1</sup>S,<sup>3</sup>D) and AuX<sup>+</sup> with CH<sub>3</sub>X (X = Br, I): A Combined Experimental and Computational Analysis
- Hydration and Charge-Transfer Effects of Alkaline Earth Metal Ions Binding to a Carboxylate Anion, Phosphate Anion, and Guanine Nucleobase
- Hydration and Charge-Transfer Effects of Alkaline Earth Metal Ions Binding to a Carboxylate Anion, Phosphate Anion, and Guanine Nucleobase