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首页> 外文期刊>Journal of Applied Polymer Science >Carbon-13 NMR, GPC, and DSC study on a propylene-1-butene copolymer fractionated by temperature rising elution fractionation
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Carbon-13 NMR, GPC, and DSC study on a propylene-1-butene copolymer fractionated by temperature rising elution fractionation

机译:通过升温洗脱分馏对丙烯-1-丁烯共聚物进行分馏的Carbon-13 NMR,GPC和DSC研究

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A random copolymer of propylene with small amounts of 1-butene comonomer, synthesized with a Ziegler-Natta catalyst, was fractionated by temperature rising elution fractionation (TREF) to systemically investigate the fraction samples' molecular microstructure, as well as their relationship to the melting and crystallization behavior. First, TREF was employed to fractionate the sample, and then crystallization analysis fractionation (Crystaf) was used to check the effect of the TREF experiment. In the characterization of the molecular microstructure, carbon-13 NMR spectroscopy (C-13 NMR) and gel permeation chromatography (GPC) experiments gave the following results: the fraction samples have relatively uniform molecular microstructure; with an increase in elution temperature, the I-butene content in the fraction samples decreases, but the molecular weight (M-n) and number average sequence length of propylene ((n) over bar (P)) increase. In the study on melting and crystallization behavior, differential scanning calorimetry (DSC) experimental results show that the melting temperature increasingly decreases with an increase in 1-butene content; however, dependence of the melting temperature on molecular weight becomes weaker and weaker with an increase in the number average molecular weight in the range of number average molecular weight below 1.82 X 10(5) g/mol. (c) 2005 Wiley Periodicals, Inc.
机译:用Ziegler-Natta催化剂合成的丙烯与少量1-丁烯共聚单体的无规共聚物通过升温洗脱馏分(TREF)进行分馏,以系统地研究馏分样品的分子微观结构及其与熔融的关系和结晶行为。首先,使用TREF对样品进行分级分离,然后使用结晶分析分级分离(Crystaf)来检查TREF实验的效果。在分子微结构的表征中,碳13核磁共振谱(C-13 NMR)和凝胶渗透色谱(GPC)实验得出以下结果:馏分样品具有相对均匀的分子微结构;随着洗脱温度的升高,馏分样品中的I-丁烯含量降低,但丙烯的分子量(M-n)和数均序列长度((n)高于bar(P))增加。在对熔融和结晶行为的研究中,差示扫描量热法(DSC)的实验结果表明,随着1-丁烯含量的增加,熔融温度逐渐降低。但是,在数均分子量低于1.82×10(5)g / mol的范围内,随着数均分子量的增加,熔融温度对分子量的依赖性变得越来越弱。 (c)2005年Wiley Periodicals,Inc.

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