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国家自然科学基金(50903003)

作品数:2 被引量:16H指数:2
相关作者:零萍赵姜维吴一弦朱寒白志欣更多>>
相关机构:北京化工大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划更多>>
相关领域:化学工程理学更多>>

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稀土催化制备窄分子量分布高顺式聚异戊二烯及聚合反应动力学被引量:15
2012年
由稀土羧酸钕盐(Nd)、三异丁基铝(Al)、含氯活化剂(CE)及醇(OH)组成的均相稀土羧酸盐催化体系,用于异戊二烯(Ip)定向聚合,其中含氯活化剂(CE)为氯代烃(CE1)或氯代羧酸酯(CE2).研究了CE和OH的化学结构及Al用量对Ip聚合及聚异戊二烯(PIp)微观结构、分子量及分子量分布的影响,将原位全反射傅立叶红外光谱(in situ ATR-FTIR)技术应用于研究稀土催化Ip配位聚合反应过程及聚合反应动力学,采用FTIR、GPC、NMR及DSC等测试手段表征PIp的微观结构、分子量及其分布、序列分布及热性能.实验结果表明,在稀土催化异戊二烯聚合反应中,少量的CE2和OH有助于提高催化活性、降低分子量分布和提高顺式含量.聚合速率对单体浓度呈现一级动力学关系,表观增长活化能(Ea)为69.5 kJ/mol.通过调节催化剂组分配比及聚合工艺条件,可制备出顺-1,4结构含量可达98%以上、窄分子量分布(Mw/Mn=1.6~2.4)的高顺式聚异戊二烯.
朱寒白志欣赵姜维零萍吴一弦
关键词:稀土催化剂聚异戊二烯
IN SITU MONITORING OF COORDINATION COPOLYMERIZATION OF BUTADIENE AND ISOPRENE VIA ATR-FTIR SPECTROSCOPY被引量:2
2010年
FTIR spectroscopy in combination with a diamond tipped attenuated total reflectance (ATR) immersion probe was utilized to study in situ the copolymerization of butadiene (Bd) and isoprene (Ip) with neodymium-based catalyst in hexane. The relationship between the signal intensity of monomer and its concentration was investigated. The kinetic study of copolymerization of Bd and Ip was further conducted, and the monomer reactivity ratios were determined via in situ ATR FTIR. The signal band at 1010 cm^-1 was assigned to wagging vibration of Bd and its intensity was proportional to Bd concentration ([Bd]) in the range of 0.46-3.88 mol.L^-1. The signal bands at 890 and 989 cm^-1 were assigned to wagging vibration of Ip and the signal intensity was also proportional to Ip concentration ([Ip]) in the range of 0.08-4.73 mol·L^-1 at 890 cm^-1 and 0.08-7.49 mol·L^-1 at 989 cm^-1, respectively. Thus the signal band at 1010 cm^-1 was chosen to monitor Bd concentration and bands at 989 and 890 cm^-1 to monitor Ip concentration during the copolymerization, respectively. It was demonstrated that the conversions of Bd and Ip calculated from FTIR data agreed very well with those obtained gravimetrically. The poiymerization rates were first order with respect to both [Bd] and [Ip], respectively at different polymerization temperatures. The apparent propagation activation energy for Bd and Ip could be determined to be 54.4 kJ·mol^-1 and 57.7 kJ·mol^-1, respectively. The monomer reactivity ratios were calculated to be 1.08 for Bd (rBd) and 0.48 for IP (rIp) based on FTIR data. The Bd-Ip copolymer products with random sequence could be obtained with only one glass transition temperature.
吴一弦
关键词:BUTADIENEISOPRENECOPOLYMERIZATION
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