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1.
本文合成了一种双官能度的氨基甲酸酯乙烯基醚和一种三官能度的氨基甲酸酯乙烯基醚,并用实时傅立叶红外光谱分别监测了单官能度、双官能度和三官能度的乙烯基醚化合物在三芳基六氟锑酸锍鎓盐阳离子光引发剂(PAG-201)引发下的光聚合情况,对其光聚合动力学性能进行了比较,研究了引发剂PAG-201的浓度对双官能度单体光聚合的影响.结果表明,随着官能度的增加,乙烯基醚化合物的转化率和聚合速率降低.此外,对它们的聚合产物进行的热失重分析表明,随着官能度的增加,聚合产物的热稳定性增加.本文的结果对于研究开发基于氨基甲酸酯乙烯基醚单体的阳离子聚合体系具有较好的指导意义.  相似文献   

2.
自由基聚合是高分子化学课程中的重要一章,自由基聚合动力学(包括聚合速率、平均相对分子质量及分布)是教学中的重要内容。本文讨论了建立自由基聚合微观动力学模型的基础:三个基本假设和四个简化条件,阐释了传统单官能度引发剂引发的聚合体系速率方程推导中这些假设和条件的运用,并扩展到双官能度引发剂体系,得到基元反应速率和总速率。提出从三个层次讨论影响自由基聚合速率的因素,深化了对自由基聚合速率教和学。  相似文献   

3.
本文利用4-甲基二苯甲酮、哌嗪等原料合成了一种双官能度的单组分光引发剂(MBPPA),其分子结构中具有两个二苯甲酮基团。通过紫外光谱研究了光引发剂的紫外吸收和光降解性能,并利用实时红外测试了光引发剂的光引发活性以及不同单体对光聚合动力学的影响。结果表明,在光照10 min后,MBPPA在257.2 nm处的吸光度降低了18.76%,光降解速度明显高于MBP。当光强为50 mW·cm-2时,0.2%(摩尔分数)MBPPA单独引发乙氧基乙氧基丙烯酸乙酯(EOEOEA)聚合的转化率可达90%。在同等条件下,多官能度丙烯酸酯单体的聚合速率要明显高于单官能度丙烯酸酯单体,但其转化率有所降低。  相似文献   

4.
苯乙烯-异戊二烯-苯乙烯三嵌段聚合物(SIS)是目前广泛使用的一种热塑性弹性体(TPE)材料, 建立高效、 精准、 普适的SIS功能化方法一直是提高TPE材料性能的关键. 首先, 利用双烯单体与单官能度引发剂的反应合成了双官能度的双锂引发剂; 然后采用双锂引发法, 以炔基功能化单体封端, 高效合成了α,ω-端炔基官能化SIS聚合物. 采用叔丁醇锂作为异戊二烯聚合段的调节剂, 叔丁醇钾作为苯乙烯聚合段的调节剂, 合成了低乙烯基结构含量(5.8%)、 窄分子量分布(<1.17)的SIS三嵌段聚合物; 再向SIS三嵌段聚合物中一步加入炔基官能化的1,1-二苯基乙烯(DPE)衍生物进行封端, 以高于90%的收率高效合成了α,ω-端炔基官能化SIS三嵌段模块聚合物, 借助炔基的高效点击反应, 实现了功能化及拓扑化TPE材料的制备.  相似文献   

5.
本文研究了对2,2′-二邻甲氧基苯基-4,4′,5,5′-四苯基-1,2′-二咪唑(BMOIM)复合光引发体系引发聚合动力学过程.采用紫外光谱仪对引发剂、供氢体、增感剂在紫外区的吸收谱图进行了表征.利用实时红外光谱仪对复合光引发体系引发聚合动力学过程进行实时监测,考察了不同光强、引发剂浓度以及不同官能度单体对反应速率及最终双键转化率的影响.结果表明,在引发剂浓度为0.6%(质量分数)时,20s内双键转换率达到96%,随着引发剂浓度的提高,聚合速率增大.聚合速率以及最终双键转化率随着光强增大而增大;双官能团单体的最终双键转化率比三官能团单体的最终双键转化率要高.  相似文献   

6.
原子转移自由基聚合(ATRP)是一种活性自由基聚合方法,通过它可以合成结构可控的官能性聚合物[1].双官能性聚合物是制备嵌段聚合物[2]和模型网络的前驱体[3,4],具有较大的理论和应用价值,寻求新的双官能引发剂以获得末端官能性聚合物已经成为当前ATRP研究领域的重要研究方向之一  相似文献   

7.
本文研究了用有机引发剂引发偏氟乙烯的水相聚合,并对制得的聚偏氟乙烯的性质进行了研究。有机引发剂引发聚合的聚偏氟乙烯的热稳定性、强度、结晶度和熔点均比用过硫酸盐引发聚合的聚偏氟乙烯高。  相似文献   

8.
研究了以苯乙烯(St)和N-[4-(2-溴丙酰氧基)苯基]马来酰亚胺(BPPM)的交替共聚物P(St-alt-BPPM)为大分子多官能度引发剂,以CuBr/2,2′-联吡啶(bpy)为催化体系,环己酮为溶剂,在60或80℃下进行St的原子转移自由基聚合(ATRP).结果表明,反应呈现活性聚合的假一级反应动力学特征,聚合物分子量随着单体转化率上升而增加,降低反应温度将减低反应速率,但是所得聚合物[P(St-alt-BPPM)-g-PS]分子量分布更窄.水解实验证明该过程具有一定可控性.由于类似的单官能度引发剂无法在同等条件下顺利引发St的ATRP,因此采用大分子多官能度引发剂可以大幅度降低ATRP的反应温度.此加速现象被归因于CuBr/bpy从大分子引发剂线团外向线团内扩散,而CuBr2/bpy则从大分子引发剂线团内向线团外扩散,从而提高大分子引发剂线团中的自由基浓度和聚合反应速率.  相似文献   

9.
α,α-二溴乙酸乙酯作双官能引发剂ABA型嵌段共聚物的合成   总被引:4,自引:0,他引:4  
自从 1 995年 Matyjaszewski[1] 和 Sawamoto[2 ] 同时发现原子转移自由基聚合 ( ATRP)以来 ,人们已采用几种不同的双官能引发剂合成了以丙烯酸酯为中间嵌段的 ABA型三嵌段共聚物 ,如α,α -二溴对二甲苯 [3] 、双 2 -溴丙酸乙二醇酯 [4 ] 以及 2 ,5-二溴己二酸二甲酯 [5] ,我们将这类双官能引发剂称为显性双官能引发剂 ,其分子结构分别见下式 :Br CH2 CH2 Br,CH3CBrHOO CH2 CH2 OOCBrH CH3,Br CCOOCH3H CH2 CH2 CCOOCH3H Br  最近我们证实 ,当用 α,α-二溴化苄作引发剂进行苯乙烯的 ATRP时 ,所得聚苯乙烯大分子…  相似文献   

10.
自从Matyjaszewski等[1,2 ] 发现原子转移自由基聚合 (ATRP)以来 ,寻求新的双多官能引发剂是该领域的重要研究方向之一[3~ 7] .2 0 0 0年 ,我们[8]曾报道了α ,α 二溴乙酸乙酯可作为丙烯酸酯ATRP的双官能引发剂 ,并基于其两端增长的活性聚合性质合成了PS b PBA b PS和PMMA b PBA b PMMA两种三嵌段共聚物 .与此同时 ,Hocker等[9] 通过比较氯化苄与α ,α 二氯甲苯引发的苯乙烯ATRP的聚合速度 ,认为α ,α 二氯甲苯是苯乙烯ATRP的双官能引发剂 .当我们参照上述结果 ,用α ,α 二…  相似文献   

11.
Butyl vinyl ether (BVE) and methyl methacrylate (MMA) mixtures were polymerized by using free radical initiators in conjunction with a cationic initiator such as diphenyl iodonium salt. Polymerization mechanism involves free radical polymerization of MMA which is switched to cationic polymerization of BVE by addition of growing poly(MMA) radicals to BVE and subsequent oxidation of electron donating polymeric radicals to the corresponding cations by iodonium ions. Two representative bifunctional monomers, ethylene glycol divinyl ether (EGDVE) and ethylene glycol dimethacrylate (EGDMA) were also used together with MMA and BVE, respectively, in photo and thermal crosslinking polymerizations. Vinyl ether and methacrylate type monomers can successfully be copolymerized by this double-mode polymerization under photochemical conditions.  相似文献   

12.
本文引用50多篇文章,按引发方式不同从顺序引发剂,imiferter法,高分子引发剂法和自由基性聚合等几方面综述了自由基嵌段共聚合近10年来的新进展。  相似文献   

13.
梁晖  邓云祥 《高分子通报》1994,(2):80-85,102
本文围绕着乙烯基阳离子聚合这一核心,简要地介绍了近年来在阳离子聚合引发剂方面取得的新进展,包括活性阳离子聚合和普通阳离子聚合引发剂两个部分。  相似文献   

14.
A two step synthetic procedure towards model coil‐rod‐coil triblock copolymers was developed. In the first step, α,ω‐bromo‐functionalized oligophenylenes (rod part) were modified to anionic bifunctional initiators. In the second step, flexible chains were grown from both ends of the rod part by an anionic polymerization procedure leading to polystyrene‐rod‐polystyrene and/or poly(2‐vinyl pyridine)‐rod‐poly(2‐vinyl pyridine) triblock copolymers. Characterization of the final products by gel permeation chromatography, NMR spectroscopy, light scattering, Raman spectroscopy and differential scanning calorimetry demonstrated that well‐defined coil‐rod‐coilblock copolymers can be synthesized.  相似文献   

15.
It was found that N,N,N′,N′-tetramethylethylene diamine and hexamethyl phosphorus triamide minimize chain transfer reactions in the polymerization of 1,3-butadiene in hydrocarbon solvent with alkylsodium or alkylpotassium initiators. The polymers obtained with alkylsodium initiators had a high molecular weight and high vinyl content at 90–95% conversion. The molecular weight of the polybutadiene made by alkylsodium and alkylpotassium initiators was dependent on the polymerization temperatures and modifier ratios, but the vinyl contents were independent of the modifier ratios. Vinyl contents of alkylpotassium-initiated polymers showed a slight dependency on polymerization temperature; the vinyl contents of alkylsodium-initiated polymers were independent of temperature. Addition of lithium tert-butoxide and potassium tert-amylate to these initiators in the presence of the modifiers affected the molecular weight but not the microstructure.  相似文献   

16.
Summary: Bifunctional initiators can produce polymers with higher molecular weight at higher initiator concentrations than monofunctional initiators. In this study, we developed a mathematical model for ATRP with bifunctional initiators. The most important reactions in ATRP were included in the model. The method of moments was used to predict monomer conversion, average molecular weights and polydispersity index as a function of polymerization time in batch reactors. The model was used to understand the mechanism of ATRP and to quantify how polymerization conditions affect monomer conversion and polymer properties by examining the effect of several rate constants (activation, deactivation, propagation and chain termination) and of catalyst and initiator concentration on polymerization kinetics and polymer properties. When compared to monofunctional initiators, bifunctional initiators not only produce polymers with higher molecular weight averages at higher polymerization rates, but also control their molecular weight distributions more effectively.

Effect of initial catalyst concentration on polydispersity index as a function of time.  相似文献   


17.
Bulk atom transfer radical polymerization (ATRP) of styrene was carried out at 110 °C using benzal bromide as bifunctional initiator and 1-bromoethyl benzene as monofunctional initiator. CuBr/2,2′-bipyridyl was used as the ATRP catalyst. The polymerization kinetic data for styrene with both initiators was measured and compared with a mathematical model based on the method of moments and another one using Monte Carlo simulation. An empirical correlation was incorporated into the model to account for diffusion-controlled termination reactions. Both models can predict monomer conversion, polymer molecular weight averages, and polydispersity index. In addition, the Monte Carlo model can also predict the full molecular weight distribution of the polymer. Our experimental results agree with our model predictions that bifunctional initiators can produce polymers with higher molecular weights and narrower molecular weight distributions than monofunctional initiators. © 2007 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 45: 2212–2224, 2007  相似文献   

18.
A new preparative route to photocrosslinkable polymers in which the polymers are produced directly from the polymerization of vinyl monomers having photocrosslinkable groups has been investigated. The photosensitive resins thus produced have higher sensitivity and resolution than conventional photosensitive resins. The monomers were synthesized from the esterification of vinylphenols or vinyl β-chloroethyl ether with cinnamic acid, β-styrylacrylic acid, and their homologs, and from the etherification of vinyl β-chloroethyl ether with hydroxychalcones. Homopolymerizations of these monomers and their copolymerizations with other comonomers were investigated with the use of both radical and ionic initiators. It is shown that radical polymerization of the monomers gave soluble polymers only at low conversion. Anionic initiators did not initiate polymerization. Cationic polymerization imparted soluble polymers in high yield, except for the monomers bearing cyano groups, which generally gave insoluble polymers. Infrared and NMR spectroscopic investigation of the cationically obtained soluble polymers and comparative investigation by cationic polymerization of model compounds indicated that polymerization of the monomers proceeds through the vinyl double bond without affecting the photosensitive unsaturated bond. Thus, linear photocrosslinkable polymers with an intact photoreactive group may be produced by cationic polymerization. In general, these polymers have uniform structure and modifiable physical properties depending on the monomer used. The polymer thus obtained from β-vinyloxyethyl cinnamate has been shown to have excellent properties for use as a photo-resist.  相似文献   

19.
Deterministic methods for tuning polymer dispersity are rare, especially for nonradical polymerizations. Reported here is the first example of photomodulating dispersity in controlled cationic polymerizations of vinyl ethers using carboxy‐functionalized dithienylethene initiators. Reversible photoisomerization of these initiators induces changes in their acidities by up to an order of magnitude. Using the more acidic, ring‐closed isomers as initiators results in polymers with lower dispersities. The degree of light‐induced pKa change in the initiators correlates with the degree of dispersity change in polymers derived from the isomeric initiators. The polymerizations are controlled, and dynamic photoswitching of dispersity during the polymerization reaction was demonstrated. This work provides a framework for photomodulating dispersity in other controlled polymerizations and developing one‐pot block copolymerization reactions in which the dispersities of component blocks can be controlled using light.  相似文献   

20.
Anionic polymerization of vinyl chloride has been studied. Of the organometallic compounds tested as initiators, only butyllithium was found to initiate polymerization. Polymerization in bulk at 0°C and with tert-butyllithium as initiator gave poly(vinyl chloride) in a yield of 38% with M n = 55,000. Tacticity of the anionic PVC was similar to that of conventional PVC prepared at similar temperatures. Anionic PVC was found to be less branched and more heat-stable than the conventional polymer.  相似文献   

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