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August 16, 2010 - Volume 88, Number 33
- pp. 40-41
- DOI: 10.1021/CEN080310110731
Science & Technology Concentrates
More Science & Technology Concentrates
- Peptide Rounds Up Amyloid-β
- Potential Alzheimer's drug renders toxic amyloid-β oligomers into innocuous clumps.
- Fullerene-like Boron Analog Reevaluated
- B80 is likely to have an unsymmetrical core-shell structure, not a symmetrical hollow cage structure as previously thought.
- Isotopes Help Home In On Ancient Rock
- Arctic region lava samples provide an unprecedented view of nascent Earth's geochemical evolution.
- Computations Clarify Oxidation Pathways
- Radical oxidation of vinyl alcohol follows different routes in atmospheric and combustion processes.
- Drug Design Leads To Desired Enzyme Inhibitors
- Non-bisphosphonate inhibitors of farnesyl pyrophosphate synthase could lead to cancer treatments.
- SANE Approach To Soft Lithography
- Method offers an easy way to make many different patterns starting with a single master pattern.
- Role Of Iron Regulatory Proteins Ironed Out
- On top of other functions, IRPs make it possible for cell mitochondria to maintain proper iron balance.
- Scaffolding Ligand Directs Quaternary Carbon Synthesis
- A bifunctional amine-phosphine ligand is proving to be a versatile directing group for organic syntheses.
Topics Covered
Donald Truhlar
A computational study of the reaction between a hydroxyl radical and a vinyl alcohol molecule shows that the reaction likely proceeds by one pathway at low temperature and a quite different pathway at high temperature, report Oksana Tishchenko, Sonia Ilieva, and Donald G. Truhlar of the University of Minnesota, Minneapolis (J. Chem. Phys. 2010, 133, 021102). Understanding hydrocarbon oxidation mechanisms is important for modeling atmospheric chemistry and combustion processes, both of which involve enol intermediates. Mechanisms involving compounds with double bonds such as vinyl alcohols can be particularly hard to model, Truhlar says, because the often small energy difference between the highest occupied and lowest unoccupied molecular orbitals necessitates consideration of multiple orbital occupancies in the starting wave function. Truhlar’s group investigated hydroxyl radical addition across the carbon-carbon double bond of vinyl alcohol and hydrogen abstraction from the carbons and oxygen. They found that the addition reaction is more likely to occur at atmospheric temperatures, but hydrogen abstraction is more likely at the high temperatures of combustion. Abstraction from the β carbon is particularly favored, the researchers note, because a hydrogen bond between the hydroxyl oxygen and alcoholic hydrogen stabilizes the transition state.
- Chemical & Engineering News
- ISSN 0009-2347
- Copyright © 2011 American Chemical Society
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