Patrick J. Desrochers
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
professor, chair (since 2014)
Also affiliated: University of North Carolina at Charlotte (2007); Florida State University (2006); University of Alabama (2006); Coastal Carolina University (2008); National High Magnetic Field Laboratory (2006); Conway School of Landscape Design (1999–2022); Illinois State University (2008)
Faculty Researcher
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Patrick J. Desrochers' research focuses on the study of organometallic compounds, particularly the design and characterization of iron spin-crossover complexes. He has investigated the use of hetero-scorpionate chelates in the rational design of these complexes. His work involves employing techniques such as spectrophotometry and electron spin resonance spectroscopy to understand molecular properties. Desrochers has also contributed to the determination of experimental crystal structures for various compounds. His scholarship includes 26 publications with 843 citations and an h-index of 12. He has served as professor and chair at the University of Central Arkansas since 2014 and collaborates with colleagues such as Madison E. Martin and Jamie D. Freeman.
Metrics
- h-index: 12
- Publications: 26
- Citations: 845
Selected Publications
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Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates (2022)
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Rapid Synthesis of a Functional Resin‐Supported Scorpionate and Its Copper(I, II), Rhodium(I), and Chromium(III) Complexes (2016)
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Beyond Ordinary Undergraduate Experiences: Routine Measurements with Heteronuclear, Heterogeneous, and Paramagnetic Samples (2013)
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Electronic Structure of Nickel(II) and Zinc(II) Borohydrides from Spectroscopic Measurements and Computational Modeling (2012)
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Iron(I)-carbonyl clusters tethered to (trifluoromethyl)thiophenolates (2012)
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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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Catalytic Dioxygen Activation by (Nitro)(<i>meso</i>-tetrakis(2-<i>N</i>-methylpyridyl)porphyrinato)cobalt(III) Cation Derivatives Electrostatically Immobilized in Nafion Films: An Experimental and DFT Investigation (2008)
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Nickel−Cysteine Binding Supported by Phosphine Chelates (2007)
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Electronic Structure of Four-Coordinate <i>C</i><sub>3</sub><i><sub>v</sub></i> Nickel(II) Scorpionate Complexes: Investigation by High-Frequency and -Field Electron Paramagnetic Resonance and Electronic Absorption Spectroscopies (2006)
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Ligand Redox Effects in the Synthesis, Electronic Structure, and Reactivity of an Alkyl−Alkyl Cross-Coupling Catalyst (2006)
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Bis[hydrotris(4-chloro-3,5-dimethylpyrazolyl)borato]nickel(II) (2005)
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A Stable Monomeric Nickel Borohydride (2003)
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Characteristics of Five-Coordinate Nickel−Cysteine Centers (1999)
Collaboration Network
Top Collaborators
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
- Rational Design of Iron Spin-Crossover Complexes Using Heteroscorpionate Chelates
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