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1.
采用傅立叶变换红外光谱(FTIR)分析了丁戊共聚物的微观结构,发现采用磷酸酯钕体系得到的丁戊共聚物组成不同,其聚丁二烯链节的顺式-1,4含量为93.1%~97.7%,聚异戊二烯链节的顺式-1,4含量为97.0%~ 97.5%.采用差示扫描量热仪(DSC)测试了丁戊共聚物的玻璃化转变温度,发现丁戊共聚物具有良好的耐低温性能,其玻璃化转变温度随着异戊二烯含量的增加而提高,稍偏离Fox方程,经修正得到的公式为Tg=1.03TgIWI+TgBWB.采用Kelen-Tudos法计算得到丁二烯和异戊二烯的竞聚率分别为1.21和0.73,二者乘积接近于1,表明丁戊共聚物为无规结构.利用碳核磁谱(13C NMR)对丁戊共聚物进行分析,对其二元序列进行了归属,计算得到丁戊共聚物的二元序列浓度以及聚丁二烯链节和聚异戊二烯链节的数均序列长度;采用Bernoullian模型和Markov模型验证了丁戊共聚物的序列分布,发现其序列分布更符合Markov模型,表明磷酸酯钕体系催化丁戊共聚合时,活性链有末端效应.  相似文献   

2.
本工作定量测定了2-乙烯基吡啶-甲基丙烯酸甲酯-铑络合物的烯烃催化加氢性能与共聚物配体序列结构的关系。同时根据共聚物的微结构三元组分布数据对催化剂的络合状态进行了探讨。实验结果证明,催化剂的活性随共聚物配体中以甲基丙烯酸甲酯为中心的三元组F_(MMM),F_(MMV+)含量增加而提高。而稳定性则随以2—乙烯基吡啶为中心的三元组F_(VVV),F_(VVM+)含量增加而提高。  相似文献   

3.
<正> 乙丙橡胶的性能不仅取决于共聚物的组成、分子量及其分布,而且依赖于共聚物的微结构。Natta等认为共聚物中乙烯和丙烯单体链节呈无规分布时可获得性能最好的弹性体。但因催化剂及聚合条件不同,共聚物的单体链节总是存在不同程度的无规、交替及长序列分布。本文采用红外吸收光谱研究了乙丙共聚物的组成及不同催化体系和加入添加剂后对乙丙共聚物序列分布的影响。  相似文献   

4.
研究了新型的改性负载型Ziegler-Natta催化剂,以期制备出组成分布较窄的乙烯-α-烯烃共聚物.通过2,6-iPr2C6H3-OH与TiCl4/ID/MgCl2型负载型钛催化剂在室温下的反应可将芳氧基接到催化剂表面,制得一种改性的烯烃聚合催化剂M-cat.改性催化剂对乙烯聚合及乙烯-1-己烯共聚反应的催化活性与未改性催化剂相近,但共单体效应较弱.前者共聚物的1-己烯含量低于未改性催化剂的产物,但组成分布较窄,分子量较高,且共聚物的沸腾正庚烷可溶级分的序列分布较接近无规分布.三异丁基铝为助催化剂所得聚合活性高于甲基铝氧烷活化的体系.改性催化体系的活性中心分布与未改性体系相比有明显的差别.  相似文献   

5.
本文将稀土络合物Nd(P204)3、Nd(P507)3、Nd(naPh)3、Nd(acac)3.3H2O与烷基铝组成的二元体系催化剂用于共聚马来酸酐(MAn)与环氧丙烷(PO)获得成功.并采用1H—NMR研究了共聚物三元组序列分布.结果表明,稀土络合催化剂为MAn与PO共聚的优良催化刑,可得到高转化率、高交替度共聚物.共聚物数均分子量Mn和分子量分布分别为2000—3000、1.3—1.7,共聚物中MAn的摩尔含量40%以上.共聚物组成及序列分布与投料比、催化剂种类、溶剂性质等有关.理论计算表明,序列分布符合三级马尔可夫(Markoffian)过程.  相似文献   

6.
以MCM-41分子筛负载氯化铝为催化剂, 催化丙烯酸甲酯与1-辛烯共聚合反应, 利用称重法测定聚合物产率, 利用核磁共振氢谱分析共聚物组成, 利用凝胶渗透色谱分析共聚物相对数均分子质量, 研究了聚合物产率和共聚物组成随聚合反应时间的变化规律, 考察了溶剂、 催化剂组成和催化剂用量对共聚合结果的影响及催化剂的循环使用性能. 结果表明, 聚合物产率随时间呈S形增长, 而共聚物组成随时间保持恒定, 与氯化铝催化体系规律一致; 溶剂由二氯甲烷改变为乙醇或二甲苯主要影响聚合物组成, 对聚合物相对数均分子质量及其分布影响不大; 催化剂中活性组分的增加有利于增加共聚物中1-辛烯单元的含量, 但对聚合物分子量及分子量分布影响不大; 催化剂中活性组分含量一定时, 随催化剂与单体摩尔比从0.125增加到0.5, 共聚物中1-辛烯单元含量增加, 继续增大催化剂用量不利于提高共聚物中1-辛烯单元含量. 催化剂重复使用3次后仍具有良好的催化活性, 将烯烃单元引入共聚物中, 获得1-辛烯单元摩尔分数达30.1%的聚(丙烯酸甲酯-co-1-辛烯)共聚物.  相似文献   

7.
对顺-1,4含量为100%的高顺式聚异戊二烯(HCPI)进行加氢反应,得到了序列结构高度规整的乙烯-丙烯交替共聚物(alt-EP).所用的HCPI有适当的分子量(Mn=41×104)和极窄的分子量分布(Mw/Mn=1.02).HCPI的加氢反应以环烷酸镍和三异丁基铝为催化剂,在60℃和4.0MPa氢压的条件下反应3h,加氢产物的加氢度为100%.GPC测试结果显示所得乙烯-丙烯交替共聚物保持了窄分布的特点,表明HCPI加氢后未发生交联和降解反应;NMR,FTIR和广角X射线衍射测试结果表明此乙烯-丙烯交替共聚物具有高度规整的序列结构,为完全交替结构的乙烯-丙烯共聚物.并通过TGA和DSC对乙烯-丙烯交替共聚物的热性能进行了表征.  相似文献   

8.
以1,4-丁二醇/三氟化硼乙醚为引发体系, 利用阳离子开环共聚合方法合成了3,3'-双叠氮甲基环氧丁烷(BAMO)与3-叠氮甲基-3'-甲基环氧丁烷(AMMO)的无规共聚物, 探讨了以Lewis酸为催化剂时活性链端与活性单体相互竞争的聚合反应机理. 同时根据GPC结果分析了聚合反应温度对产物分子量和分子量分布的影响. 结果表明, 在15 ℃时产物分子量可控且分布较窄. 通过1H NMR和13C NMR对无规共聚物的共聚组成及微观序列结构进行了表征, 结果表明, 共聚组成中两单体的摩尔比接近于1:1, 与投料比一致; 交替度接近50%, BAMO与AMMO链段的平均序列长度为2, 其结构单元呈随机分布的状态.  相似文献   

9.
本文用DSC、WAXD及偏光显微镜(PLM)方法,研究了化学反应法催化剂合成的乙烯-α-烯烃共聚物的结晶性能及其临界序列结晶长度。结果表明,随共聚物中α-烯烃含量增大,共聚物的微晶尺寸、结晶度及熔点均逐渐减小,而晶胞参数增大。变化的辐度戊烯>辛烯。共聚物的临界结晶序列长度(n)和k值均戊烯<辛烯。上述结果表明影响支链进入晶格的主要因素是α-烯烃支链长度和结构。  相似文献   

10.
魏志勇  刘炼  王沛  高军  齐民 《高分子学报》2008,(10):947-954
以无毒性的辛酸镁为催化剂催化L-丙交酯和ε-己内酯本体开环共聚合,制备了一系列不同单体配比的共聚物.首先用1H-NMR跟踪了共聚合单体转化率,显示L-LA聚合速率显著快于ε-CL.用13C-NMR分析共聚物微观结构和计算单体单元平均序列长度(LLLe和LCe),表明聚合过程中酯交换反应导致单元序列结构重新分布.随着反应进行,LLLe急剧下降而LCe逐渐增加后稍有降低,游程数逐渐增大,共聚物无规度提高.反应初期主要是一级酯交换反应,二级酯交换反应导致的CLC序列结构在反应后期才观察到.由Fineman-Ross法计算出L-丙交酯和ε-己内酯的竞聚率分别为rLA=23和rCL=0.22,表明在聚合反应初期L-LA单体优先插入聚合物增长链端,形成LL单元长嵌段结构.共聚物组成显著影响单元序列长度,各序列长度随相应单体加入量增加而增长.二级酯交换系数(TII[CLC])随ε-CL含量增加而增大.对于整个组成范围内,根据竞聚率计算的LLLr值始终要大于聚合产物的LLLe,而LCr计算值小于或接近LCe实验值.因此,共聚物单元序列分布随共聚物投料比和反应时间而改变,趋向于无规分布.以DSC和XRD分析了共聚物热性能和结晶性,表明共聚物结晶性与单元序列长度密切相关.所有共聚物只有一个玻璃化转变温度Tg,符合无规共聚物的Fox方程,说明所得共聚物为无规共聚物,或者说包含有相容性嵌段成分的共聚物.  相似文献   

11.
The NMR spectra of random and equimolar alternating copolymers of styrene with a-chloroacrylonitrile were studied. The monomer sequence distribution in the random copolymers, prepared in the presence of free radical catalysts, as determined from NMR analyses, was in accordance with the values expected from the r1 and r2 values derived from the conventional copolymerization theory. The alternating structure of the copolymer prepared by complexation with AlEt1-5 Cl1-5 was confirmed. The equimolar random copolymer, prepared by free radical initiation, was shown to contain essentially alternating sequences.  相似文献   

12.
Ethylene/propylene copolymers were obtained with vanadium-based catalysts. Different aluminium alkyls were employed as cocatalyst: Al(C2H5)2Cl/promoter, Al(i-C4H9)3, Al(n-C6H13)3. and Al(n-C8H17)3. The influence of the cocatalyst on the molecular weight, the molecular weight distribution and the microstructure of the copolymers was investigated through GPC, DSC, 13C–NMR analysis and fractionation. AIR3 afforded a polymerization activity that was much higher with respect to Al(C2H5)2Cl/nBPCC, but with the latter cocatalyst system copolymers were obtained with a more homogeneous distribution of the monomers and the absence of crystallinity. A comparison with ethylene/propylene copolymers obtained with a V(Acac)3/Al(C2H5)2Cl/promoter and with a high-yield Ti-based catalyst is also presented.  相似文献   

13.
 用13C-NMR方法研完了不同配料比的丁二烯-异戊二烯本体共聚和溶液共聚物的结构,定量计算出了共聚物二元组的浓度和数均序列长度,采用T(?)DO″S法计算出了本体共聚和溶液共聚的竞聚率,并证明各种共聚产物的序列分布都服从一级Markov统计模型。  相似文献   

14.
Acrylonitrile-methyl acrylate (A/M) copolymers of different monomer compositions were prepared by bulk polymerization using free radical initiator (benzoyl peroxide). Copolymer compositions were determined by elemental analyses and comonomer reactivity ratios were determined by the nonlinear least squares errors-in-variables methods (EVM). Terminal and penultimate reactivity ratios have been calculated using the observed monomer triad sequence distribution determined from 13C{1H}-NMR spectra. The triad sequence distribution was used to calculate diad concentrations, conditional probability parameters, number-average sequence lengths, and run number in the copolymers. The observed triad sequence concentrations determined from 13C{1H}-NMR spectrum agreed well with those calculated from reactivity ratios. Glass transition temperatures (Tg) of various copolymers determined from DSC gave good agreement with those obtained from NMR. © 1992 John Wiley & Sons, Inc.  相似文献   

15.
姜涛 《高分子科学》2011,29(4):475-482
Magnesium chloride supported vanadium/titanium bimetallic Ziegler-Natta catalysts with di-i-butyl phthalate as internal donor for copolymerization of ethylene and propylene were prepared.The effects of reaction temperature, ethylene/propylene molar ratio,aluminium/vanadium(Al/V)molar ratio and titanium/vanadium molar ratio on the catalytic activity were investigated.The molecular weight,molecular weight distribution,sequence composition and crystallinity of the products were measured by gel permeation chromatography,13C-NMR and differential scanning calorimetry analysis, respectively.In comparison to the vanadium and titanium catalysts,the bimetallic catalyst showed higher catalytic activity and better copolymerization performance.The obtained ethylene/propylene copolymers have high molecular weight (105),broad molecular weight distribution,high propylene content with random or short blocked sequence structures (rErP=1.919),low melting temperatures and low crystallinities(Xc<20%).  相似文献   

16.
Homogeneous copolymers of ethylene and 1-alkenes have been prepared using an ethyl aluminum sesquichloride–vanadium oxychloride catalyst system. Branches were varied from CH3 to C16H33 by appropriate choice of 1-alkene. Size exclusion studies of copolymers of ethylene-d4 and 1-alkenes show that the comonomer content of a given sample is essentially constant over the whole molecular weight range. A random distribution of branches is inferred from the simplicity of the 13C-NMR spectra and from the melting behaviour of the copolymers. Comonomer contents varying from 1 mol% to 15 mol% were readily determined by 13C-NMR spectroscopy. The copolymers can be used to study the separate effects of branch length, branch frequency, and molecular weight on physical properties including melting point and crystallinity.  相似文献   

17.
The copolymerization of styrene and 1,3‐butadiene (Bd) or isoprene (Ip) was carried out with half‐sandwich titanium(IV) Cp′TiCl3 catalysts (where Cp′ is cyclopentadienyl 1 , indenyl 2 , or pentamethylcyclopentadienyl 3 ) with methylaluminoxane as a cocatalyst. For the copolymerization with Bd, catalyst 3 gave the copolymers containing the highest amount of Bd among the catalysts used. The resulting copolymers were composed of a styrene–Bd multiblock sequence. High melting points were observed in the copolymers prepared with catalyst 1 . The structures of hydrogenated poly(styrene‐co‐Bd) were studied by 13C NMR spectroscopy, and the long styrene sequence length was detected in the copolymers prepared with catalyst 1 . For styrene/Ip copolymerization, random copolymers were obtained. Among the used catalysts, catalyst 1 gave the copolymers containing the highest amount of Ip. The copolymers prepared with catalyst 1 showed a steep melting point depression with increasing Ip content because of the high ratio of 1,4‐inserted Ip units and/or the low molecular weights of the copolymers. © 2003 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 41: 939–946, 2003  相似文献   

18.
“Regular” sequence copolymers having the structure {[? CH2? C(CH3)(C6H5)? ]m(CH2? CH2)n}p with relatively small values of m and n were prepared by means of “living” polymerization techniques. The intrinsic viscosities of fractions of these copolymers were obtained in various solvents including a theta solvent. The molecular weights of these fractions were determined by the Archibald ultracentrifugal method. The results show that the intrinsic viscosity–molecular weight relations of the regular sequence copolymers are affected not only by the average composition of the copolymer, but also by the sequence length in the copolymer molecule. It is suggested that the effective conformation of a chain element in the copolymer is not always the same as that in the homopolymer.  相似文献   

19.
Acrylonitrile–,4-vinylpyridine copolymers were prepared in chloroform solution at 60°C with AIBN as initiator. Copolymer compositions were determined from their 15.01-MHz 13C-NMR spectra. Reactivity ratios of rAN = 0.093 and r4VP = 0.32 were calculated by the Kelen and Tudos method. The run number, number-average sequence lengths, and monomer sequence distributions were also calculated. The Tg values of the copolymers, their dye uptake, and degree of alkaline hydrolysis were influenced by the overall copolymer composition but particularly by the monomer sequence distribution in the copolymers.  相似文献   

20.
Ethylene copolymerizations with norbornene (NBE) using half‐titanocenes containing imidazolin‐2‐iminato ligands, Cp′TiCl2[1,3‐R2(CHN)2C?N] [Cp′ = Cp ( 1 ), tBuC5H4 ( 2 ); R = tBu ( a ), 2,6‐iPr2C6H3 ( b )], have been explored in the presence of methylaluminoxane (MAO) cocatalyst. Complex 1a exhibited remarkable catalytic activity with better NBE incorporation, affording high‐molecular‐weight copolymers with uniform molecular weight distributions, whereas the tert‐BuC5H4 analog ( 2a ) showed low activity, and the resultant polymer prepared by the Cp‐2,6‐diisopropylphenyl analog ( 1b ) possessed broad molecular weight distribution. The microstructure analysis of the poly(ethylene‐co‐NBE)s prepared by 1a suggests the formation of random copolymers including two and three NBE repeating units. © 2013 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2013, 51, 2575–2580  相似文献   

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