Matches in SemOpenAlex for { <https://semopenalex.org/work/W2029016349> ?p ?o ?g. }
- W2029016349 endingPage "3059" @default.
- W2029016349 startingPage "3054" @default.
- W2029016349 abstract "The recently developed living free-radical polymerization system, atom transfer radical polymerization using activators generated by electron transfer for atom transfer radical polymerization (AGET ATRP), was used for methyl methacrylate (MMA) polymerization in the presence of a limited amount of air, using a novel catalyst system based on iron (FeCl3) complexes with iminodiacetic acid (IDA) and using ascorbic acid (VC) as a reducing agent. The kinetics of AGET ATRPs of MMA with different amounts of VC in the presence of air was investigated. The results of the polymerizations demonstrated the features of “living”/controlled free-radical polymerization such as the number-average molecular weights increasing linearly with monomer conversion and narrow molecular weight distributions (Mw/Mn = 1.31–1.44)." @default.
- W2029016349 created "2016-06-24" @default.
- W2029016349 creator A5013617244 @default.
- W2029016349 creator A5034663296 @default.
- W2029016349 creator A5056427835 @default.
- W2029016349 creator A5072459924 @default.
- W2029016349 creator A5090895420 @default.
- W2029016349 date "2008-06-01" @default.
- W2029016349 modified "2023-10-16" @default.
- W2029016349 title "AGET ATRP of methyl methacrylate catalyzed by FeCl3/iminodiacetic acid in the presence of air" @default.
- W2029016349 cites W1526604088 @default.
- W2029016349 cites W1966863664 @default.
- W2029016349 cites W1972834390 @default.
- W2029016349 cites W1975153926 @default.
- W2029016349 cites W1977261087 @default.
- W2029016349 cites W1982631393 @default.
- W2029016349 cites W1991004317 @default.
- W2029016349 cites W1992707547 @default.
- W2029016349 cites W1993791419 @default.
- W2029016349 cites W2001878039 @default.
- W2029016349 cites W2010738800 @default.
- W2029016349 cites W2012229697 @default.
- W2029016349 cites W2012884255 @default.
- W2029016349 cites W2013583197 @default.
- W2029016349 cites W2017200011 @default.
- W2029016349 cites W2023059370 @default.
- W2029016349 cites W2025622250 @default.
- W2029016349 cites W2026982792 @default.
- W2029016349 cites W2029958261 @default.
- W2029016349 cites W2030279339 @default.
- W2029016349 cites W2030714364 @default.
- W2029016349 cites W2033293187 @default.
- W2029016349 cites W2038083459 @default.
- W2029016349 cites W2040414097 @default.
- W2029016349 cites W2041225974 @default.
- W2029016349 cites W2041850198 @default.
- W2029016349 cites W2043052699 @default.
- W2029016349 cites W2044215369 @default.
- W2029016349 cites W2054704498 @default.
- W2029016349 cites W2055393399 @default.
- W2029016349 cites W2055403469 @default.
- W2029016349 cites W2059719361 @default.
- W2029016349 cites W2060979151 @default.
- W2029016349 cites W2063508787 @default.
- W2029016349 cites W2070774090 @default.
- W2029016349 cites W2074554162 @default.
- W2029016349 cites W2080837087 @default.
- W2029016349 cites W2083732824 @default.
- W2029016349 cites W2085251672 @default.
- W2029016349 cites W2085945763 @default.
- W2029016349 cites W2087177903 @default.
- W2029016349 cites W2088890545 @default.
- W2029016349 cites W2089169078 @default.
- W2029016349 cites W2089792360 @default.
- W2029016349 cites W2094125851 @default.
- W2029016349 cites W2095273659 @default.
- W2029016349 cites W2099236286 @default.
- W2029016349 cites W2103312623 @default.
- W2029016349 cites W2119132515 @default.
- W2029016349 cites W2134463946 @default.
- W2029016349 cites W2146414781 @default.
- W2029016349 cites W2148120763 @default.
- W2029016349 cites W2150438469 @default.
- W2029016349 cites W2150833694 @default.
- W2029016349 cites W2496174369 @default.
- W2029016349 cites W2523569737 @default.
- W2029016349 cites W4249499643 @default.
- W2029016349 doi "https://doi.org/10.1016/j.polymer.2008.04.057" @default.
- W2029016349 hasPublicationYear "2008" @default.
- W2029016349 type Work @default.
- W2029016349 sameAs 2029016349 @default.
- W2029016349 citedByCount "110" @default.
- W2029016349 countsByYear W20290163492012 @default.
- W2029016349 countsByYear W20290163492013 @default.
- W2029016349 countsByYear W20290163492014 @default.
- W2029016349 countsByYear W20290163492015 @default.
- W2029016349 countsByYear W20290163492016 @default.
- W2029016349 countsByYear W20290163492017 @default.
- W2029016349 countsByYear W20290163492018 @default.
- W2029016349 countsByYear W20290163492019 @default.
- W2029016349 countsByYear W20290163492020 @default.
- W2029016349 countsByYear W20290163492021 @default.
- W2029016349 countsByYear W20290163492022 @default.
- W2029016349 countsByYear W20290163492023 @default.
- W2029016349 crossrefType "journal-article" @default.
- W2029016349 hasAuthorship W2029016349A5013617244 @default.
- W2029016349 hasAuthorship W2029016349A5034663296 @default.
- W2029016349 hasAuthorship W2029016349A5056427835 @default.
- W2029016349 hasAuthorship W2029016349A5072459924 @default.
- W2029016349 hasAuthorship W2029016349A5090895420 @default.
- W2029016349 hasConcept C111998727 @default.
- W2029016349 hasConcept C150539798 @default.
- W2029016349 hasConcept C161790260 @default.
- W2029016349 hasConcept C166940927 @default.
- W2029016349 hasConcept C178790620 @default.
- W2029016349 hasConcept C185592680 @default.
- W2029016349 hasConcept C188027245 @default.
- W2029016349 hasConcept C197404232 @default.