Title: Green Oxidation
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2INTRODUCTION Green, sustainable
chemistry involves the design of
chemicalprocesses with a view to reduce or even
eliminate the use andproduction of hazardous
materials. Recent endeavors havefocused on
limiting the use of organic solvents and
replacingthem with new, environmentally benign
reaction media. Thechemical industry is
interested in these cost-effective,
alternativesolvents and processes based on the
green route. Manytechnologies such as the use of
metal catalysts, supercritical CO2, microwave
technology, ultrasound technology,
electrochemistry, and the use of ionic liquids
have been explored in the past to make the
chemical processes green. These processes have
been used either alone or in combination.
3Electron Transfer Reactions
- Oxidation LOSS of one or more electrons.
- Reduction GAIN of one or more electrons
4Electron Transfer Reactions
- Oxidation reduction always occur together.
- Electrons travel from what is oxidized towards
- what is reduced.
- One atom loses e-, the other gains e-
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8Pillared Clay Catalysts in Green Oxidation
9Methods for the encapsulation of Mn(III) salen
complex into an alumina-pillaredclay.
10Styrene epoxidation
11Epoxidation of alkene
12Two oxidation mechanismswere taking place with
synthetic saponite catalysts, and that there was
a competitionbetween the metal-oxo and the
radical species
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14Oxidative ketonization of olefins
15synthetic saponite with Mg2 as octahedralcation
in an important oxidationreaction, the
BaeyerVilliger oxidation of ketones.
16Benzaldehyde, benzoic acid, and benzyl
benzoate can be obtained from benzylalcohol
oxidation. Benzaldehyde is used in the
pharmaceutical industry and maybe utilized as raw
material i n t he manufacture of
herbicides.
17Amine Oxidation
18Sulfoxidation
19Tetraamido macrocyclic ligands (TAML)
that,coordinated with a transition metal,
effectively catalyze hydrogen peroxide oxidation
20Using the TAMLcatalysts lowers
temperature and time requirements for the
bleaching process. For the pulp and paper
industry, this adds up to huge energy savings.
21The TAML oxidant activators have beenskillfully
developed over the past 20 years to optimize the
oxidation of compounds by hydrogen peroxid.
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24TAML complex FeIIIC6H4-1,2-(NCOCMe2NCO)2CMe2OH2
- is oxidized by H2O2 or tBuOOH in water at pH
lt 10 into the corresponding iron(IV)
µ-oxo-bridged dimer , which oxidizes readily
ring-substituted thioanisoles.
25Oxidation of methyl aryl sulfides by TAML
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27Oxidation of hydrosilanes catalyzed by MnO2Au
NPs.
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29Cyclodimeric copper(II) complexes
containing1,4-bis(dimethyl(quinolin-3-yl)silyl)ben
zene for catechol oxidation
30Ultrasound-Accelerated Green and Selective
Oxidation of Sulfides to Sulfoxides
31Silica-Based Magnetic Manganese Nanocatalyst -
Applications in the Oxidation of Organic Halides
and Alcohols
32Oxidation of Organic Halides to Corresponding
Aldehydes/Ketones
33. Oxidation of Alcohols to Corresponding
Aldehydes/Ketones
34Plausible mechanism for the oxidation of
benzyl bromidewith H2O2 catalyzed by Mn
-Ac_at_ASMNP
35Green Oxidation of Menthol Enantiomers
36Aerobic Alcohol Oxidation Using a Copper(I)/TEMPO
CatalystSystem
37Simplified Catalytic Cycle for the
AerobicOxidation of Benzyl Alcohols Using a
Cu/TEMPOCatalyst System
38The traditional route for the synthesis of
adipic acid and the new greener method, with
less waste and recycling. In the second method W
salts are used which can be recycled.
39Cyclohexanone and cyclohexanol are oxidized to
adipic acid in high yield with aqueous 30 H2O2
in the presence of H2WO4 as a catalyst under
organic solvent
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