2015
DOI: 10.1039/c4cp03568b
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Catalytic oxygen activation versus autoxidation for industrial applications: a physicochemical approach

Abstract: The activation and use of oxygen for the oxidation and functionalization of organic substrates is among the most important reactions in a chemist's toolbox. Nevertheless, despite the vast literature on catalytic oxidation, the phenomenon of autoxidation, an ever-present background reaction that occurs in virtually every oxidation process, is often neglected. In contrast, autoxidation can affect the selectivity to a desired product, to those dictated by pure freeradical chain pathways, thus affecting the activi… Show more

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Cited by 32 publications
(42 citation statements)
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References 208 publications
(246 reference statements)
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“…To explain this experimental observation, we need to consider the free‐radical nature of cyclohexane oxidation. In fact, cyclohexane oxidation is a radical‐based process and our mechanistic study (see below) also supports this mechanism when AgPd/MgO catalysts are used. In the case of a radical process, the initiation step is the removal of a H .…”
Section: Resultssupporting
confidence: 71%
“…To explain this experimental observation, we need to consider the free‐radical nature of cyclohexane oxidation. In fact, cyclohexane oxidation is a radical‐based process and our mechanistic study (see below) also supports this mechanism when AgPd/MgO catalysts are used. In the case of a radical process, the initiation step is the removal of a H .…”
Section: Resultssupporting
confidence: 71%
“…However, in our case these experiments were not directly carried out for the oxidation of by means of autoxidation [40] that is an unselective oxidation route where the selectivity is purely dictated by the reactivity of free radicals in solution and not by the catalyst.…”
Section: Nature Of the Oxidation Reaction Of Cyclohexane In Presence mentioning
confidence: 99%
“…Thus, it is important to know all physicochemical factors determining the O 2 ( g a∆ 1 ) lifetime in various environments, especially in biological solvents [40,59]. Extensive experimental studies during last five decades [1][2][3] provide huge information and its systematization attempts occur often in various reviews [1,19,27,32,40,[61][62][63][64]. But some key electronic mechanisms of O 2 ( g a ∆…”
Section: Discussionmentioning
confidence: 99%
“…The realm of chemical phenomena in which the singlet g a ∆ 1 oxygen participates is now great and wonderful [39,40,57] with most applications in medicine [58][59][60][61][62]. Thus, it is important to know all physicochemical factors determining the O 2 ( g a∆ 1 ) lifetime in various environments, especially in biological solvents [40,59].…”
Section: Discussionmentioning
confidence: 99%