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1 neous catalysis while goethite mainly caused catalytic oxidation.
2 rogen peroxide adducts formed in situ during catalytic oxidation act as substrate oxidizing agents.
3                       The TiO2 pellet's dark-catalytic oxidation activity was confirmed on the pharma
4 ganic compounds directly into electricity by catalytic oxidation, and although MFCs have attracted co
5 s in the last decades, several protocols for catalytic oxidation are today available, which are based
6 n anoxic conditions; infinity in the case of catalytic oxidation by H2O2 with nCuO.
7                                          The catalytic oxidation current allows the stable and select
8             A linear correlation between the catalytic oxidation current of AA and the activity of M.
9 lasmic domain were purified and subjected to catalytic oxidation in mixed micelles.
10                                          The catalytic oxidation mechanism exhibits an oxidative deac
11 n nanocrystalline gamma-Al(2)O(3) during the catalytic oxidation of 2-propanol using X-ray absorption
12 consequent reuptake of Fe(III) by apoTF] and catalytic oxidation of 6-OHDA by ceruloplasmin.
13 of Au nanoparticles as active species in the catalytic oxidation of alcohols, even in solution.
14                               Chemoselective catalytic oxidation of beta-O-4 linkages promoted by the
15                  Electricity was produced by catalytic oxidation of carbon monoxide (CO) by using gol
16 nge by a novel approach to investigating the catalytic oxidation of carbon monoxide (CO) over palladi
17 vealed ambient temperature mechanism for the catalytic oxidation of carbon monoxide by oxygen over a
18                 Kinetic measurements for the catalytic oxidation of carbon monoxide show that the gol
19  the nanoalloys for oxygen activation in the catalytic oxidation of carbon monoxide.
20 usual size dependence of the low-temperature catalytic oxidation of carbon monoxide.
21              In this review, results for the catalytic oxidation of CO obtained by these techniques a
22 ulfidation is shown to enhance heterogeneous catalytic oxidation of contaminants.
23            The kinetic constant kcat for the catalytic oxidation of Cys was evaluated by chronoampero
24 process with added peroxynitrite, leading to catalytic oxidation of ferrocytochrome c to ferricytochr
25 ed silica NP label; (2) Ru(bpy)3(2+)-induced catalytic oxidation of guanine, which results in great e
26                                              Catalytic oxidation of H2 produces electrons which reduc
27                                          The catalytic oxidation of H2 was established by electrochem
28 rtant in catalytic hydrogenations and in the catalytic oxidation of H2.
29                                          The catalytic oxidation of H2S by hemoglobin explains how RB
30 rophilic or radical species generated in the catalytic oxidation of halides, pseudohalides, carboxyli
31 d diiron site that activates dioxygen in the catalytic oxidation of hydrocarbon substrates.
32  The surface structure of Pt(557) during the catalytic oxidation of hydrogen was studied with in situ
33 n of microscopic steps immediately preceding catalytic oxidation of mannitol, consistent with the not
34                                          The catalytic oxidation of methane to carbon dioxide and wat
35 y oxidizing MH2Q under anaerobic conditions, catalytic oxidation of MH2Q was observed in the presence
36                       Kinetic studies of the catalytic oxidation of primary and secondary benzylic al
37 can promote the formation of sulfate through catalytic oxidation of SO2.
38  are used to elucidate the mechanism for the catalytic oxidation of styrenes using aqueous hydrogen p
39  did not have a significant effect on CYP2E1 catalytic oxidation of substrates or CYP2E1 mRNA levels.
40 SA-methylselenol redox cycle resulted in the catalytic oxidation of sulfhydryls even with nanomolar c
41                      Pyrolysis, coupled with catalytic oxidation of the fuels and their fragments upo
42                         The mechanism of the catalytic oxidation of water by cis,cis-[(bpy)(2)Ru(OH(2
43 tion of organic substrates as well as in the catalytic oxidation of water that evolves molecular oxyg
44               For this set of reactions, the catalytic oxidation of water to dioxygen is one of the c
45 hat the roles of AuCl3 are 3-fold, including catalytic oxidations of N-hydroxyaniline derivatives to
46 n Krevelen process is invoked to explain the catalytic oxidation process.
47 droperoxide (T-HYDRO ) is a highly effective catalytic oxidation protocol for the selective C-H oxida
48 ivation of O(2) is the most critical step in catalytic oxidation reactions involving gold and remains
49                                          The catalytic oxidation reactions supply sufficient thermal
50 solar intensity) and thermal energy to drive catalytic oxidation reactions--such as ethylene epoxidat
51 ered to be "green" solvents, for homogeneous catalytic oxidation reactions.
52                                        These catalytic "oxidation-reduction condensation" reactions a
53 in pollution control applications (selective catalytic oxidation/reduction) and during some industria
54                                          The catalytic oxidation responses were studied and the react
55 urthermore, connections among these distinct catalytic oxidation systems are highlighted, to gain ins
56 environmentally benign oxidant, in synthetic catalytic oxidation systems.
57                                              Catalytic oxidation using 50 microM Ru(bpy)3(2+) (bpy =
58 ed by square wave voltammetry (SWV) by using catalytic oxidation with Ru(bpy)(3)(2+) (bpy = 2,2'-bipy
59 n the wider context of designing sustainable catalytic oxidations with porous solids.

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