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It was found to be an efficient catalyst for the selective oxidation of thiols to the corresponding disulfides, without over-oxidation, at room temperature.
An amorphous catalyst prepared from zinc oxide on silica has been found to be an efficient catalyst with excellent catalytic life.
Moreover, among all the catalysts Ni/TiO2 (R) catalyst prepared by reductive deposition method is found to be an efficient catalyst due to high dispersion of Ni with smaller Ni particles (Table 2).
In this study polyoxometalate supported MCM-41 was found to be an efficient catalyst for the oxidation of cyclohexane in the absence of added solvent using H2O2 as oxidant.
The catalytic results revealed that the MCN was found to be an efficient catalyst in transesterifying long and short chain primary alcohols, and cyclic and aromatic alcohols to afford their corresponding β-keto esters in high yields.
The crystalline structure was examined by X-ray diffraction (XRD), shows the cubic phase for both metal oxides in synthesized systems and found to be an efficient catalyst to generate reactive oxygen species (ROS) in presence of UV/Visible light, which tends to degrade various polyaromatic organic dyes into small fractions.
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ZnO-nanoparticles were found to be an efficient, reusable catalyst for the synthesis of 1,4-diaryl dihydropyridines (21) from the reaction between aldehydes (5), alkyl acetoacetate (17/17a) and substituted anilines (20) (Table 5) [74].
Nano silica chloride (nano SiO2Cl) has been found to be an efficient, chemoselective and recyclable catalyst for facile and simple condensation of 4-hydroxycoumarin with aromatic and heteroaromatic aldehydes into bis(4-hydroxycoumarin)methanes 4-hydroxycoumarin methanes
Pure ethanol was found to be an efficient solvent for the catalyst, offering the perspective for first in vivo experiments in conjunction with biomolecules such as nicotinamide.
The as-synthesized α-MnO2/RGO nanocomposite was found to be a highly efficient catalyst to eliminate BPA from water in the presence of ozone.
The new amino acid (S -2 haS -2en found to be a more efficient catalyst thas (S)-1 in the direct asymmetric aldol reaction of acetone with aldehydes.
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found to be an efficient method
found to be an efficient technique
found to be an excellent catalyst
found to be an efficient matrix
found to be an efficient biopolymer
found to be an efficient vibration
found to be an efficient chiral
found to be an efficient promoter
found to be an efficient candidate
found to be an efficient donor
found to be an efficient ozonation
found to be an efficient eluent
found to be an efficient alternative
found to be an efficient scenario
found to be an efficient brominating
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