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Journal ArticleDOI

Rate constants for the reactions of free radicals with oxygen in solution

B. Maillard, +2 more
- 27 Jul 1983 - 
- Vol. 105, Iss: 15, pp 5095-5099
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TLDR
In this paper, the kinetics of free radicals with oxygen were examined in solution at 300 K using laser flash photolysis techniques, and the reaction of butyl-tin (n-Bu/sub 3/Sn.) radicals was unusually fast.
Abstract
The kinetics of the rections of several free radicals with oxygen have been examined in solution at 300 K using laser flash photolysis techniques. The reactions of resonance-stabilized radicals are only slightly slower than those of nonstabilized radicals: for example, for tert-butyl (in cyclohexane), 4.93 x 10/sup 9/; benzyl, 2.36 x 10/sup 9/ (in cyclohexane); cyclohexadienyl (in benzene), 1.64 x 10/sup 9/ M/sup -1/ s/sup -1/. The reaction of butyl-tin (n-Bu/sub 3/Sn.) radicals is unusually fast (7.5 x 10/sup 9/ M/sup -1/ s/sup -1/), a fact that has been tentatively attributed to a relaxation of spin selection rules due to heavy atom effects. 1 table.

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Beta-carotene: an unusual type of lipid antioxidant

TL;DR: New experiments in vitro show that beta-carotene belongs to a previously unknown class of biological antioxidants, and exhibits good radical-trapping antioxidant behavior only at partial pressures of oxygen significantly less than 150 torr, the pressure of oxygen in normal air.
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The chemistry and antioxidant properties of tocopherols and tocotrienols

TL;DR: Some possible reasons for the observed differences between the tocopherols (α-, β-, γ-, and δ-) in relation to their interactions with the important chemical species involved in lipid peroxidation, specifically trace metal ions, singlet oxygen, nitrogen oxides, and antioxidant synergists are highlighted.
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Photoinitiated Polymerization: Advances, Challenges, and Opportunities

TL;DR: The use of photoinitiated polymerization is continuously growing in industry as reflected by the large number of applications in not only conventional areas such as coatings, inks, and adhesives but also high-tech domains, optoelectronics, laser imaging, stereolithography, and nanotechnology as mentioned in this paper.
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