Salt Effects on Solvolysis Reactions of p-Nitrophenyl Alkanoates Catalyzed by 4-(Dialkylamino)pyridine- Functionalized Polymer in Buffered Water and Aqueous Methanol Solutions
Author:
Affiliation:
1. Contribution from the Department of Chemistry, Indiana University−Purdue University at Indianapolis, 402 North Blackford Street, Indianapolis, Indiana 46202
Publisher
American Chemical Society (ACS)
Subject
Colloid and Surface Chemistry,Biochemistry,General Chemistry,Catalysis
Link
https://pubs.acs.org/doi/pdf/10.1021/ja961505l
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1. Catalytic activity of a thermosensitive hydrophilic diblock copolymer-supported 4-N,N-dialkylaminopyridine in hydrolysis of p-nitrophenyl acetate in aqueous buffers;Polymer;2009-08
2. Thermosensitive polymer brush-supported 4-N,N-dialkylaminopyridine on silica particles as catalyst for hydrolysis of an activated ester in aqueous buffers: Comparison of activity with linear polymer-supported version and effect of LCST transition;Journal of Polymer Science Part A: Polymer Chemistry;2009-06-01
3. Synthesis of fluoroalkyl end-capped co-oligomers containing 8-hydroxyquinolyl segments and application to oligomer-catalyzed solvolysis reactions;Journal of Fluorine Chemistry;2001-01
4. Hydrolysis of p-Nitrophenyl Esters in the Presence of Polymer Micelles. Selectivity and Biphasic Behavior with Increasing Ester Concentration;Langmuir;2000-03-04
5. Control of Substrate Specificity in Polymer-Catalyzed Solvolysis Reactions of p-Nitrophenyl Alkanoates by Changing the Buffer System;Macromolecules;1999-01-14
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