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The following discussion was organized according to the reaction types of the previously mentioned reaction scheme.
These catalysts are sodium ethoxide, triethylamine, copper triflate, copper triflate/triethyl amine, which were selected to promote the mentioned reaction.
The above mentioned reaction can be monitored by measuring this absorbance in the presence of samples containing antioxidants.
The results show that values of thermodynamic parameters in the mentioned reaction (Eq. 1) depend on the dielectric constant solvent.
All synthesized materials tested as catalysts for the above mentioned reaction proved comparable efficiency providing the desired adducts in short reaction times and with high yields.
Figure 2 shows the activity profiles obtained by use of increasing amounts of commercial lipases from Candida antarctica B and Thermomyces lanuginosa in the mentioned reaction.
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The above mentioned reactions were established by using both conventional methods and microwave-assisted irradiation.
The study of the mentioned reactions is complicated by the presence of respectively two or three phases in the reactor.
The above mentioned reactions steps of the catalytic cycle are pH dependent and work best under acidic conditions.
For all the above mentioned reactions, both experimental as well as theoretical spectrum average cross-sections (σsp.av.cs) are deduced and compared.
In addition to the above mentioned reactions, iodate (IO3 −), is the most common form of iodine in oxic water [24, 25].
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