2004
DOI: 10.1016/j.memsci.2003.12.013
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Gate effect of theophylline-imprinted polymers grafted to the cellulose by living radical polymerization

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Cited by 66 publications
(36 citation statements)
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“…Living radical polymerization can also be used in grafting: living polymers retain their ability to propagate for a long time and grow to desired maximum size due to the low rate of termination or chain transfer (Hattori et al, 2004;). E.g.…”
Section: Grafting Techniquesmentioning
confidence: 99%
“…Living radical polymerization can also be used in grafting: living polymers retain their ability to propagate for a long time and grow to desired maximum size due to the low rate of termination or chain transfer (Hattori et al, 2004;). E.g.…”
Section: Grafting Techniquesmentioning
confidence: 99%
“…Living radical polymerization is induced by "iniferter" (initiator-transfer agent-terminator), which acts as an initiator, retarder, terminator and other transfer reactions. The degree of polymerization and the primary structure of the synthesized polymer can be conventionally controlled by reaction time and the degree of branching by the time of ultraviolet (UV) irradiation [54]. Living polymerization was employed for the grafting of a polymer imprinted with the bronchodilator theophylline using photoactive iniferter immobilized on the cellulose dialysis membrane surface.…”
Section: Pharmaceutical and Food Applicationsmentioning
confidence: 99%
“…Важным аспектом примене-ния молекулярно импринтированных полимеров в качестве чувствительных мембран химических сенсо-ров, которые несколько ограничивают их более широкое использование в данной области, является инте-грация полимера с трансдъюсером. Данная проблема может быть решена за счет графтинга импринтиро-ванного полимера на поверхность сенсора, что позволяет получать высокостабильные слои с контроли-руемой толщиной [19,20].…”
Section: Introductionunclassified