Amerigo Scientific
Amerigo Scientific
4-Chlorobenzoic acid is a degradation product of indomethacin. It is degraded by Acinetobacter sp. strain ST-1 and causes its dehalogenation to yield 4-hydroxybenzoic acid under both aerobic and anaerobic conditions.
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Amerigo Scientific
4-Chlorobenzyl benzoate can be synthesized from the reaction between 4-chlorobenzyl chloride and sodium benzoate in the presence of tri-n-butylamine (catalyst). It can also be obtained by reacting sodium benzoate and 4-chlorotoluene.
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Amerigo Scientific
4-Chlorobenzyl bromide undergoes carbonylation in the presence of dimer of chloro(1,5-cyclooctadiene)rhodium(I) to yield the corresponding phenylacetic acid. It can be synthesized by reacting 4-chlorobenzyl alcohol with bromodimethylsulfonium bromide (BDMS) It can also be synthesized by refluxing a mixture of 4-chlorobenzaldehyde, chlorotrimethylsilane, 1,1,3,3-tetramethyldisiloxane and lithium bromide.
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Amerigo Scientific
Amerigo Scientific
4-chlorocatechol was a major degradation product of 4-chloro-2-aminophenol (4C2AP). The degradation of 4-chlorocatechol was catalyzed by cphA-I enzyme.
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Amerigo Scientific
4-Chlorochalcone is a chalcone derivative. Its crystals exhibit monoclinic system with space group P21/c. It can undergo conjugate addition reaction with pyrrole in the presence of AlKIT-5 (mesoporous 3D aluminosilicate catalyst) to form the corresponding C2-alkylated pyrrole derivatives.
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Amerigo Scientific
4-Chlorodiphenyl ether is halogenated diphenyl ether. It is an estrogenic contaminant and its effect on the growth of endometrial implants has been investigated. Dehalogenations of 4-chlorodiphenyl ether at 375°C over CaO/Ca(OH)2 has been reported.
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Amerigo Scientific
Amerigo Scientific
4-Chloromethyl-2,2-dimethyl-1,3-dioxolane is a ketal that can be synthesized by the reaction of 3-chloro-propane-1,2-diol (3-MCPD) with acetone in the presence of p-toluene sulfonic acid.
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Amerigo Scientific
Amerigo Scientific
Generation of highly basic stilbene dianions of 4-chloromethylstilbene by electrochemical reduction in ionic liquids at room temperature has been reported.
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Amerigo Scientific
4-Chlorophenol undergoes dechlorination to phenol rapidly on palladized graphite electrodes. Mechanism of 4-chlorophenol oxidation has been investigated by radiolytic and photocatalytic techniques.
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