Michael G. Gutierrez Data-verified
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Researcher
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Biography and Research Information
OverviewAI-generated summary
Michael G. Gutierrez's research focuses on the kinetics of chemical reactions, particularly those mediated by metal ions. His work investigates the mechanisms underlying these reactions, including the observation of two-state reactivity (TSR) and hydrogen tunneling. He has published on the Co+ mediated decomposition of acetaldehyde, measuring reaction kinetics and time-dependent product branching ratios. Gutierrez's scholarly output includes four publications with a total of 15 citations and an h-index of 3. He remains an active researcher.
Metrics
- h-index: 3
- Publications: 4
- Citations: 16
Selected Publications
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Two state reactivity (TSR) and hydrogen tunneling reaction kinetics measured in the Co<sup>+</sup> mediated decomposition of CH<sub>3</sub>CHO (2023)
Collaboration Network
Top Collaborators
- Measurement of time dependent product branching ratios indicates two-state reactivity in metal mediated chemical reactions
- Two state reactivity (TSR) and hydrogen tunneling reaction kinetics measured in the Co<sup>+</sup> mediated decomposition of CH<sub>3</sub>CHO
- Measurement of time dependent product branching ratios indicates two-state reactivity in metal mediated chemical reactions
- Two state reactivity (TSR) and hydrogen tunneling reaction kinetics measured in the Co<sup>+</sup> mediated decomposition of CH<sub>3</sub>CHO
- Measurement of time dependent product branching ratios indicates two-state reactivity in metal mediated chemical reactions
- Two state reactivity (TSR) and hydrogen tunneling reaction kinetics measured in the Co<sup>+</sup> mediated decomposition of CH<sub>3</sub>CHO
- Measurement of time dependent product branching ratios indicates two-state reactivity in metal mediated chemical reactions
- Two state reactivity (TSR) and hydrogen tunneling reaction kinetics measured in the Co<sup>+</sup> mediated decomposition of CH<sub>3</sub>CHO
- Two state reactivity (TSR) and hydrogen tunneling reaction kinetics measured in the Co<sup>+</sup> mediated decomposition of CH<sub>3</sub>CHO
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