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1.
本文研究了光照对二氯二茂钛催化丙烯腈与甲基丙烯酸甲酯共聚合反应的影响.以NMR谱法测定了共聚物中两种单体的组成比.用四种方法计算了竞聚率r1和r2.证明了在光照下二氯二茂钛对单体催化聚合过程为一种自由基机理.  相似文献   

2.
研究了与偏二溴乙烯(VDBr,M_1)共聚的不同单体(M_2)——丙烯酸甲酯(MA)、甲基丙烯酸甲酯(MMA)和苯乙烯(St)的性质和共聚物的序列分布对记录材料紫外光敏性的影响。结果表明,含St的紫外光敏性最高,含MA的较差。对同一类共聚物记录材料而言,光敏性与共聚物的序列分布,主要是P_2(M_1M_2)有对应关系。本文还报道了VDBr与MA、MMA及St在55±0.2℃以偶氮二异丁腈为引发剂的自由基共聚反应竞聚率(r)分别为,VDBr-MA:r_1=0.72±0.05,r_1=0.72±0.05;VDBr-MMA:r_1=0.50±0.04,r_2=1.74±0.04;VDBr-St:r_1=0.40±0.04,r_2=1.12±0.04。  相似文献   

3.
研究了丙烯腈/苯乙烯(AN/St)悬浮共聚体系中AN在水/油两相间的分配及其对AN/St共聚物组成的影响.结果表明,AN分配于水/油两相间,使油相AN的含量低于相同单体配料比的本体聚合,导致生成的AN/St共聚物组成偏离本体共聚.为了准确预测进而控制AN/St悬浮共聚物的组成,提出了在考虑AN相分配的基础上计算AN/St悬浮共聚物组成的模型.计算结果与实验值一致,计算中用到的油相实际竞聚率与本体聚合相同,但该悬浮聚合的表观竞聚率随水/油比的变化而发生较大改变.  相似文献   

4.
苯乙烯和丙烯酸丁酯自由基共聚合竞聚率测定与研究吴平平,吴玉芳,杨全兴,韩哲文朱清仁(华东理工大学高分子材料研究所,上海,200237)(中国科技大学结构分析开放实验室)关键词苯乙烯,丙烯酸丁酯,竞聚率,序列分布苯乙烯和丙烯酸丁酯是重要的共聚合体系。然...  相似文献   

5.
研究了Fe(acac)3-Al(I-Bu)3-α,α'-联吡啶(acac=乙酰丙酮)催化体系催化丙烯腈(AN)与苯乙烯共聚合, 用元素分析和核磁共振研究了共聚物的结构, 在单体比为1:1时共聚物中丙烯腈/苯乙烯含量分别为49.3%和50.7%. 用凝胶渗透色谱研究了聚合物分子量和分子量分布, 共聚物分子量分布较窄. 动力学研究表明共聚合反应对单体浓度呈一级关系,表观活化能为57.8 kJ/mol.  相似文献   

6.
迟长龙  陶丽娟  于翔 《化学教育》2018,39(10):61-64
采用Matlab GUI工具,以单体组成为中间变量,依据共聚物组成方程及单体组成与转化率关系式,开发出一款用于绘制二元共聚合反应共聚物组成与单体转化率关系曲线的图形用户程序。通过对苯乙烯与甲基丙烯酸甲酯、丙烯腈与醋酸乙烯酯等共聚反应的应用表明:该图形用户程序界面友好,交互性强,适用性广,计算便捷,解决了绘制过程中共聚物组成与单体转化率关系式过于复杂而无法找到直接关系的困难,为预测不同竞聚率、不同投料比时共聚物组成与转化率的变化规律,控制共聚物组成,选择控制方法,验证实验,指导生产提供理论依据。  相似文献   

7.
将(2-甲基丙烯酰氧乙基)三甲基氯化铵(DMMC)与丙烯酰胺(AM)在聚乙二醇(PEG)水溶液中进行双水相共聚合(ATPC),并与DMMC/AM均相水溶液共聚合(HASC)进行比较.在均相水溶液共聚合体系中得到了DMMC/AM共聚体系的竞聚率分别为rDMMC=1.77、rAM=0.32,并给出了竞聚率的95%,99%联合置信区域.比较了两种共聚合体系的转化率-时间曲线和共聚组成,表明双水相共聚合体系初期反应速率高于均相水溶液共聚合体系,但最终转化率相似;两种共聚合体系得到的共聚物组成有较大差别.测得了DMMC、AM以及DMMC-AM共聚物(CPAM)在65℃、反应条件下的相分配系数为K1=0.035、K2=0.125和Kp=0.011.结合双水相聚合的本质以及单体和共聚物在两相的分配系数,提出了一个计算双水相共聚组成的新方法,用该方法计算的双水相共聚合体系的共聚组成与实验点吻合较好.  相似文献   

8.
丙烯酸β-羟丙酯与苯乙烯共聚合的研究   总被引:1,自引:0,他引:1  
<正> 丙烯酸β-羟丙酯(HPA) 是一种具有多种反应功能的丙烯酸酯类单体,由它制得的大分子同时带有羰基、酯基和羟基,因而可用它制备特定功能的大分子如耐火树脂、涂料、油田助剂及水处理剂等,国内外对HPA的共聚合活性报道很少,CHOW曾研究过HPA与苯乙烯(St)的共聚合,并用Mayo-Lewis方程法计算出它们的竞聚率。本文研究了HPA与St在甲苯溶液中的自由基共聚合,用Mayo-Lewis方程法、FR法、YBR法及K-T法四种方法分别计算出St-HPA共聚合出竞聚率r_1、r_2及HPA的Q、e值,作出了共聚物组成曲线,并由此计算出St-HPA共聚物的平均序列长度及序列长度分布。  相似文献   

9.
研究了Fe(acac)3-A l(i-Bu)3-α,α′-联吡啶(acac=乙酰丙酮)催化体系催化丙烯腈(AN)与苯乙烯共聚合,用元素分析和核磁共振研究了共聚物的结构,在单体比为1∶1时共聚物中丙烯腈/苯乙烯含量分别为49.3%和50.7%.用凝胶渗透色谱研究了聚合物分子量和分子量分布,共聚物分子量分布较窄.动力学研究表明共聚合反应对单体浓度呈一级关系,表观活化能为57.8 kJ/mol.  相似文献   

10.
本文编制了一个简易计算机程序,测定了氟氯烷溶液沉淀聚合体系中四氟乙烯-乙烯共聚竞聚率:40℃:γC_2H_4=0.156±0.001,γC_2F_4=0.022±0.01670℃:γC_2H_4=0.197±0.001,γC_2F_4=0.055±0.020在此聚合体系中,聚合温度和共聚物组成比对链的规整性都有明显影响。当乙烯在45~55mol%范围内时,共聚物的IR随组成比而变化,利用此规律可简便地测定共聚物的组成比。  相似文献   

11.
分别通过气相色谱法测定了全氟甲基乙烯基醚 (PMVE)与偏氟乙烯 (VDF)以及PMVE与四氟乙烯(TFE)二元乳液共聚反应中的气相单体组成和共聚物组成 ,然后用非线性回归法 (RREVM )计算得TFE PMVE及VDF PMVE乳液共聚合反应的表观竞聚率分别为γTFE =3 89和γPMVE =0 0 5以及γVDF =1 0 6和γPMVE =0 11.结合已经测定的TFE VDF二元乳液共聚的表观竞聚率 ,计算了由VDF TFE PMVE三元乳液共聚合反应合成的共聚物组成 ,后者与由1 9F NMR实测的共聚物组成吻合  相似文献   

12.
n‐Butyl acrylate (BA), 2‐ethylhexyl acrylate (EHA), and methyl methacrylate (MMA) are commonly used monomers in pressure‐sensitive adhesive formulations. The bulk free‐radical copolymerizations of BA/EHA, MMA/EHA, and BA/MMA are studied at 60 °C to demonstrate the use of copolymer reactivity ratios for the prediction of BA/MMA/EHA terpolymer composition. The reactivity ratios for BA/EHA and MMA/EHA copolymer systems are determined using low conversion experiments; BA/MMA reactivity ratios are already known from the literature. The reactivity ratio estimates for the BA/EHA system are r BA = 0.994 and r EHA = 1.621 and the estimates for MMA/EHA are r MMA = 1.496 and r EHA = 0.315. High conversion experiments are conducted to validate the reactivity ratios. The copolymer reactivity ratios are shown to predict terpolymer composition of high conversion BA/MMA/EHA experiments.  相似文献   

13.
有电荷转移络合物参与的共聚体系竞聚率   总被引:1,自引:1,他引:0  
从有电荷转移络合物参与的共聚体系增长基元反应出,提出一种有CTC参与的共聚体系竞聚率的求法,从中得到4个竞聚率,自由单体和CTC的相对活性等信息。  相似文献   

14.
Abstract

The composition of the copolymer formed from n monomers in addition polymerization can be expressed in terms of the monomer feed composition and n(n - 1) binary reactivity ratios, according to the familiar simple copolymer model. Reactivity ratios are determined experimentally from cor-responding feed and monomer compositions in binary co-polymerizations. This article reports methods for deriving such reactivity ratios directly from multicomponent polymerization data. Analytical solution of the multi-component copolymer equations is not feasible because of the limited number of experimental points and experimental uncertainty in the copolymer composition. Computer-assisted procedures have been developed to estimate re-activity rates by optimizing the fit of predicted and experimental copolymer compositions, given the monomer feed composition and preliminary values of the reactivity ratios. All n(n - 1) reactivity ratios are adjustable. The methods are demonstrated for styrene/methacrylonitrile/ a-methylstyrene, butadiene/styrene/2-methyl- 5-vinyl- pyridine and acrylonitrile/methyl methacrylate/& methylstyrene systems. Binary reactivity ratios predict ternary copolymer compositions generally well in these cues. Reasons are suggested why reactivity ratios from multicomponent experiments may not match the corresponding parameters from binary copolymerizations.  相似文献   

15.
The course of composition drift in copolymerization reactions is determined by reactivity ratios of the contributing monomers. Since polymer properties are directly correlated with the resulting chemical composition distribution, reactivity ratios are of paramount importance. Furthermore, obtaining correct reactivity ratios is a prerequisite for good model predictions. For vinyl acetate (VAc), vinyl 2,2-dimethyl-propanoate also known as vinyl pivalate (VPV), and vinyl 2-ethylhexanoate (V2EH), the reactivity ratios with methyl acrylate (MA) have been determined by means of low conversion bulk polymerization. The mol fraction of MA in the resulting copolymer was determined by 1H-NMR. Nonlinear optimization on the thus-obtained monomer feed–copolymer composition data resulted in the following sets of reactivity ratios: rMA = 6.9 ± 1.4 and rVAc = 0.013 ± 0.02; rMA = 5.5 ± 1.2 and rVPV = 0.017 ± 0.035; rMA = 6.9 ± 2.7 and rV2EH = 0.093 ± 0.23. As a result of the similar and overlapping reactivity data of the three methyl acrylate–vinyl ester monomer systems, for practical puposes these data can be described with one set of reactivity data. Nonlinear optimization of all monomer feed–copolymer composition data together resulted in rMA = 6.1 ± 0.6 and rVEst = 0.0087 ± 0.023. © 1994 John Wiley & Sons, Inc.  相似文献   

16.
测定了丙烯酰胺与4-乙烯基吡啶共聚反应的竞聚率。用紫外分光光度法测定了不同浓度的4-乙烯基吡啶均聚物的吸光度,从而求出在低转化率不同初始单体组成的共聚物中4-乙烯基吡啶含量。用FR和KT两种作图法及YBR计算法对单体的竞聚率进行计算和比较。结果表明:KT法和YBR法计算法较为准确,4-乙烯基吡啶的竞聚率和丙烯酰胺的竞聚率分别为γrVP=0.636,γAM=0.379。  相似文献   

17.
Polylactides, polyglycolide and copolymers based on them, are still gaining interestbecause of the numerous applications in the biomedical and pharmaceutical fieldsl. Theyare usually prepared by bulk homo- and co-polymerizations of lactides, glycolideinitiated with stannous octoate (Snoot,) because Snoot, is a highly efficient commercialcatalyst and a permitted food additive in numerous countriesl-2. However, the propertiesof poly(D,L-lactic acid-co-glycolic acid) (D,L-PLGA) have widely va…  相似文献   

18.
核磁共振法测定苯乙烯和甲基丙烯酸正丁酯竞聚率的研究   总被引:6,自引:0,他引:6  
以苯乙烯(St)-甲基丙烯酸正丁酯(BMA)共聚体系为研究对象,在共聚单体组成敏感点附近做重复实验,进行了40、60、80、100,120、140℃下的共聚合,用NMR方法测定共聚物的组成,用Mayo-Lewis微分组成方程的误差变量法计算竞聚率,同时给出竞聚率的95%可信椭圆区间.并根据竟聚率对温度的依赖关系得到一组合理的竞聚率值.  相似文献   

19.
Reactivity ratios for the important acrylamide (AAm)/acrylic acid (AAc) copolymerization system exhibit considerable scatter in previously published literature, and therefore, there is a need for more definitive values for these reactivity ratios. An appropriate methodology, based on the error‐in‐variables‐model (EVM) framework along with a direct numerical integration procedure, is applied in order to determine reliable reactivity ratios. The reliability of the results is confirmed with extensive and independent replication. Furthermore, via an EVM‐based criterion for the design of experiments using mechanistic models, optimal feed compositions are calculated, and from these optimal reactivity ratios are estimated for the first time (rAAm = 1.33 and rAAc = 0.23) based on information from the full conversion range. © 2013 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2013 , 51, 4819–4827  相似文献   

20.
以丙烯酸甲酯(MA,M1)和4-丙烯酰胺基-2,2,6,6-四甲基哌啶(AATP,M2)溶液光共聚合体系为研究对象,采用1H-NMR手段测定了MA/AATP共聚物的组成,用Mayo-Lewis积分法和扩展Kelen-Tüdos方法计算的竞聚率分别为0.88相似文献   

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