Richard M. Tarkka
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: University of North Carolina at Charlotte (2007); University of Illinois Urbana-Champaign (1993–1994); George Washington University (1997–1998); Queen's University (1990); Conway School of Landscape Design (2005–2022); University of Rochester (1995–1997)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Richard M. Tarkka's research activities include the study of chelating agents and their interactions with metal ions, as well as the application of various spectroscopic techniques. He has investigated the use of magnetic resonance spectroscopy, ultraviolet spectrophotometry, and Fourier transform infrared spectroscopy in chemical analysis. His work also encompasses chromatographic methods, such as gel chromatography, for separating and analyzing compounds. Tarkka has explored the properties of phosphines and coumarins in his research. His scholarly output includes 23 publications with approximately 480 citations, and he holds an h-index of 11. He has collaborated with colleagues at the University of Central Arkansas, including Stephany D. Crabtrey, Samantha R. Hewett, and Kari Naylor.
Metrics
- h-index: 11
- Publications: 23
- Citations: 481
Selected Publications
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Both Manuka and Non-Manuka Honey Types Inhibit Antibiotic Resistant Wound-Infecting Bacteria (2022)
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Immobilized Boron-Centered Heteroscorpionates: Heterocycle Metathesis and Coordination Chemistry (2010)
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A Simple Route to Single-Scorpionate Nickel(II) Complexes with Minimum Steric Requirements (2009)
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Nickel−Cysteine Binding Supported by Phosphine Chelates (2007)
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Selective detection of saxitoxin over tetrodotoxin using acridinylmethyl crown ether chemosensor (2005)
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Corrigendum to “Selective detection of saxitoxin over tetrodotoxin using acridinylmethyl crown ether chemosensor”[Toxicon 45 (2005) 783-787]☆ (2005)
Collaboration Network
Top Collaborators
- Both Manuka and Non-Manuka Honey Types Inhibit Antibiotic Resistant Wound-Infecting Bacteria
- Both Manuka and Non-Manuka Honey Types Inhibit Antibiotic Resistant Wound-Infecting Bacteria
- Both Manuka and Non-Manuka Honey Types Inhibit Antibiotic Resistant Wound-Infecting Bacteria
- Both Manuka and Non-Manuka Honey Types Inhibit Antibiotic Resistant Wound-Infecting Bacteria
- Both Manuka and Non-Manuka Honey Types Inhibit Antibiotic Resistant Wound-Infecting Bacteria
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