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NEW INITIATION SYSTEMS FOR ATOM TRANSFER RADICAL POLYMERIZATION
作者姓名:Kun-yuanQiu  PengLi
作者单位:DepartmentofPolymerScience&Engineering,CollegeofChemistry&MolecularEngineering,PekingUniversity,Beijing100871,China
摘    要:This review summarizes our achievements in designing new initiation systems for atom transfer radical polymerization (ATRP). First-order kinetics and extension experiments revealed the living nature of these reactions. Tailormade vinyl polymers with functional end groups were characterized by ^1H-NMR and UV-vis spectroscopic analyses. Replacing traditional radical initiators AIBN and BPO, carbon-carbon bond compounds, 1,1,2,2-tetraphenyl-l,2-ethanediol, diethyl 2,3-dicyano-2,3-diphenylsuccinate and diethyl 2,3-dicyano-2,3-di(p-tolyl)succinate, were utilized in reverse ATRP to produce the initiating radical. Sulfur-sulfur bond iniferter, tetraethylthiuram disulfide (TD), in conjunction with CuBr/bpy or NiCI2/PPh3 complex could control the styrene polymerization via redox reaction. Pseudo-halogen transfer reaction was demonstrated to maintain the dormant-active species equilibrium in normal and reverse ATRP with Cu(S2CNEt2), Cu(S2CNEt2)CI and Fe(S2CNEt2)3 as catalysts. The organic halide initiator and reduced transition metal compound that started the living polymerization were produced in situ from the components of TD/FeCI3/PPh3, TD/CuBr2/bpy and Fe(S2CNEt2)3/FeCI3/PPh3 systems. Accurate control of UV irradiation time favored the radical generation process in photo ATRP with the 2,2-dimethoxy-2-phenylacetophenone/Fe(S2CNEt2)3 initiation system.

关 键 词:原子转变游离基聚合  开始系统  ATRP  Pseudo-卤素转变
收稿时间:2003-03-03
修稿时间:2003-04-23

NEW INITIATION SYSTEMS FOR ATOM TRANSFER RADICAL POLYMERIZATION
Kun-yuanQiu PengLi.NEW INITIATION SYSTEMS FOR ATOM TRANSFER RADICAL POLYMERIZATION[J].Chinese Journal of Polymer Science,2004,0(2):99-110.
Authors:Kun-yuan Qiu  Peng Li
Institution:Department of Polymer Science & Engineering, College of Chemistry & Molecular Engineering,Peking University, Beijing 100871, China
Abstract:This review summarizes our achievements in designing new initiation systems for atom transfer radical polymerization (ATRP). First-order kinetics and extension experiments revealed the living nature of these reactions. Tailormade vinyl polymers with functional end groups were characterized by 1H-NMR and UV-vis spectroscopic analyses.Replacing traditional radical initiators AIBN and BPO, carbon-carbon bond compounds, 1,1,2,2-tetraphenyl-l,2-ethanediol,diethyl 2,3-dicyano-2,3-diphenylsuccinate and diethyl 2,3-dicyano-2,3-di(p-tolyl)succinate, were utilized in reverse ATRP to produce the initiating radical. Sulfur-sulfur bond iniferter, tetraethylthiuram disulfide (TD), in conjunction with CuBr/bpy or NiC12/PPh3 complex could control the styrene polymerization via redox reaction. Pseudo-halogen transfer reaction was demonstrated to maintain the dormant-active species equilibrium in normal and reverse ATRP with Cu(S2CNEt2),Cu(S2CNEt2)CI and Fe(S2CNEt2)3 as catalysts. The organic halide initiator and reduced transition metal compound that started the living polymerization were produced in situ from the components of TD/FeCl3/PPh3, TD/CuBr2/bpy and Fe(S2CNEt2)3/FeCI3/PPh3 systems. Accurate control of UV irradiation time favored the radical generation process in photo ATRP with the 2,2-dimethoxy-2-phenylacetophenone/Fe(S2CNEt2)3 initiation system.
Keywords:Atom transfer radical polymerization (ATRP)  Initiation system  Pseudo-halogen transfer  In situ ATRP  Photo ATRP  RADICAL POLYMERIZATION  TRANSFER  ATOM  SYSTEMS  initiation system  Accurate  irradiation  time  generation  process  photo ATRP  organic  halide  initiator  transition metal  compound  living polymerization  in situ  components  catalysts
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