详细信息
CONTROLLED/'LIVING' RADICAL POLYMERIZATION OF STYRENE IN AN AQUEOUS DISPERSION SYSTEM
文献类型:期刊文献
中文题名:CONTROLLED/'LIVING' RADICAL POLYMERIZATION OF STYRENE IN AN AQUEOUS DISPERSION SYSTEM
英文题名:CONTROLLED/'LIVING' RADICAL POLYMERIZATION OF STYRENE IN AN AQUEOUS DISPERSION SYSTEM
作者:Bin Zhang Zhao-bin Zhang Xiao-long Wan Chun-pu Hu Sheng-kang Ying[1];
机构:[1]Lab of Living Polymerization, East China University of Science and Technology, Shanghai 200237, China Lab of Living Polymerization, East China University of Science and Technology, Shanghai 200237, China Lab of Living Polymerization, East China University of Science and Technology, Shanghai 200237, China Lab of Living Polymerization, East China University of Science and Technology, Shanghai 200237, China Lab of Living Polymerization, East China University of Science and Technology, Shanghai 200237, China;
年份:2002
卷号:20
期号:5
起止页码:445
中文期刊名:高分子科学:英文版
外文期刊名:Chinese Journal of Polymer Science
收录:CSTPCD;;Scopus;CSCD:【CSCD2011_2012】;
语种:英文
中文关键词:Controlled/'Living';radical;polymerization,;Polystyrene,;Water;dispersed;polymerization,;1,10-Phenanthroline
外文关键词:controlled/'living' radical polymerization; polystyrene; water dispersed polymerization; 1,10-Phenanthroline
摘要:Atom transfer radical polymerization (ATRP) of styrene catalyzed by cuprous (CuX)/1,10-phenanthroline (Phen)and CuX/CuX2/Phen was conducted in an aqueous dispersed system. A stable latex was obtained by using ionic surfactant sodium lauryl sulfonate (SLS) or composite surfactants, such as SLS/polyoxyethylene nonyl phenyl ether (OP-10),SLS/hexadecanol and SLS/OP-10/hexadecanol. Among which SLS and SLS/OP-10/hexadecanol systems established better dispersed effect during the polymerization. It was found that Phen was a more suitable ligand than N,N,N',N',N'-pentamethyldiethylenetriamine (PMDETA) to maintain an appropriate equilibrium of the activator Cu(Ⅰ) and the deactivator Cu(Ⅱ) between the organic phase and the water phase. The effect of several initiators (such as EBiB, CCl4 and 1-PEBr) and the temperature on such a kind of ATRP system was also observed. The number-average molar mass (Mn) of polystyrene (PS)increased with the conversion and the molar mass distribution (Mw/Mn) remained narrow. These experimental data show that the polymerization could be controlled except for the quick increase of monomer conversion and the number-average molar mass of PS in the initial stage of polymerization. Furthermore, the initiator efficiency was found to be low (~57%) in CuX/Phen catalyzed system. To overcome this problem, Cu(Ⅱ )X2 (20 mol%-50 mol% based on CuX) was introduced into the polymerization system. In this case, higher initiator efficiency (60%-90%), low Mw/Mn of PS (as low as 1.08) were achieved and the molar masses of the PS fit with the theoretical ones.
Atom transfer radical polymerization (ATRP) of styrene catalyzed by cuprous (CuX)/1,10-phenanthroline (Phen) and CuX/CuX2/Phen was conducted in an aqueous dispersed system. A stable latex was obtained by using ionic surfactant sodium lauryl sulfonate (SLS) or composite surfactants, such as SLS/polyoxyethylene nonyl phenyl ether (OP-10), SLS/hexadecanol and SLS/OP-10/hexadecanol, Among which SLS and SLS/OP-10/hexadecanol systems established better dispersed effect during the polymerization, It was found that Phen was a more suitable ligand than N,N,N',N',N'-pentamethyldiethylenetriamine (PMDETA) to maintain an appropriate equilibrium of the activator Cu(I) and the deactivator Cu(II) between the organic phase and the water phase, The effect of several initiators (such as EBiB, CCl4 and 1-PEBr) and the temperature on such a kind of ATRP system was also observed. The number-average molar mass (M-n) of polystyrene (PS) increased with the conversion and the molar mass distribution (M-w/M-n) remained narrow. These experimental data show that the polymerization could be controlled except for the quick increase of monomer conversion and the number-average molar mass of PS in the initial stage of polymerization. Furthermore, the initiator efficiency was found to be low (similar to57%) in CuX/Phen catalyzed system. To overcome this problem, Cu(II)X-2 (20 mol%-50 mol% based on CuX) was introduced into the polymerization system. In this case, higher initiator efficiency (60%-90%), low M-w/M-n of PS (as low as 1.08) were achieved and the molar masses of the PS fit with the theoretical ones.
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