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SYNTHESIS OF HIGH MOLECULAR WEIGHT POLYISOBUTYLENE VIA CATIONIC POLYMERIZATION AT ELEVATED TEMPERATURES 被引量:4
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作者 Qiang Huang Ping He +1 位作者 Jue Wang 吴一弦 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2013年第8期1139-1147,共9页
A novel simple but effective initiating system of H2O/AlCl3/veratrole (VE) has been developed to synthesize high molecular weight polyisobutylene (PIB) at elevated temperatures via cationic polymerization of isobu... A novel simple but effective initiating system of H2O/AlCl3/veratrole (VE) has been developed to synthesize high molecular weight polyisobutylene (PIB) at elevated temperatures via cationic polymerization of isobutylene (IB) in solvent mixture of hexane/methylene dichloride (n-Hex/CH2Cl2 = 2/1, V/V). VE played very important roles in decreasing cationicity of the growing chain ends, suppressing side reactions of chain transfer and termination during polymerization, leading to production of high molecular weight PIBs. PIBs with high yields, having very high weight-average molecular weight (Mw) of 1117000 and 370000 g/tool could be synthesized with H2O/AICl3/VE initiating system at VE concentration of 5.4 mmol/L at -80 and -60 ℃ respectively. Molecular weight of PIB increased remarkably with increasing VE concentration. The reaction order with respect to VE concentration was determined to be -3.52 via FTIR spectroscopy in combination with a diamond tipped attenuated total reflectance (ATR) immersion probe. The negative reaction order of VE was consistent with its retarding effect on IB polymerization by interacting with the propagating species. Molecular weight of PIB decreased with increasing polymerization temperature. The activation energy for polymerization degree (Eop) could be determined to be around -23 kJ/mol when VE concentration was 5.4 mmol/L or 6.4 mmol/L. 展开更多
关键词 isobutylene Molecular weight cationic polymerization polyisobutylene Kinetics.
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CATIONIC POLYMERIZATION OF ISOBUTYLENE COINITIATED BY AICI_3 IN THE PRESENCE OF ETHYL BENZOATE 被引量:4
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作者 吴一弦 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2010年第1期55-62,共8页
The cationic polymerizations of isobutylene (IB) coinitiated by AlCl3 were carried out in solvent mixture of nhexane/methylene dichloride (n-hex/CH2Cl2) of 60/40 V/V in the presence of ethyl benzoate (EB) at var... The cationic polymerizations of isobutylene (IB) coinitiated by AlCl3 were carried out in solvent mixture of nhexane/methylene dichloride (n-hex/CH2Cl2) of 60/40 V/V in the presence of ethyl benzoate (EB) at various temperatures range from -80℃ to -30℃. The effects of EB concentration ([EB]) and polymerization temperature on monomer conversion, weight-average molecular weight (Mw) and molecular weight distribution (MWD, Mw/Mn) of polyisobutylene (PIB) products were investigated. The rate of polymerization decreased while Mw of PIB products increased with increasing [EB]. The polymers with high molecular weight could be prepared in the presence of a suitable amount of EB. Significantly, the polymers with high Mw of 80.2 × 10^4 and 65.4 × 10^4 could be produced at -80℃ and -70℃ at [EB] = 0.24 × 10^3 mol/L respectively, which were much higher than that (Mw = 57.9 × 10^4) of PIB prepared at -100℃ in the absence ofEB. A simple but effective method for preparing the high molecular weight polyisobutylenes was developed in this work. It has been also found that the activation energy for propagation (Ep) depended on the polymerization temperature range in the presence of EB. An obvious inflection of the linear plots of lnXn versus 1/Tp occurred at the temperature range from -60℃ to -50℃ at four different concentrations of EB from 0.19 × 10^3 mol/L to 0.33× 10^3 tool/L, and thus the inflection temperature (Tinf) was in the range of -60℃ to -50℃. When [EB] was in the range of 0.24 × 10^3 mol/L to 0.33× 10^3 mol/L, Ep was determined to be around -12 kJ/mol when the polymerization was carried out at temperatures from -80℃ to Tinf and to be around -28 kJ/mol at temperatures from Tinf to -15℃ respectively. 展开更多
关键词 Electron donor cationic polymerization isobutylene polyisobutylene.
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Cationic Polymerization of Isobutylene and C4 Mixed Feed Using Complexes of Lewis Acids with Ethers: A Comparative Study 被引量:1
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作者 Dmitriy I. Shiman Ivan A. Berezianko +1 位作者 Irina V. Vasilenko Sergei V. Kostjuk 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2019年第9期891-897,共7页
The cationic polymerization of C4 mixed feed and isobutylene co-initiated by AlCl3xOiPr2,iBuAlC12xnOiPr2, and [emim]Cl- FeCl3xnOiPr2 ([emim]Cl: 1 -ethyl-3-methylimidazolium chloride) has been investigated. AlCl3xOiPr2... The cationic polymerization of C4 mixed feed and isobutylene co-initiated by AlCl3xOiPr2,iBuAlC12xnOiPr2, and [emim]Cl- FeCl3xnOiPr2 ([emim]Cl: 1 -ethyl-3-methylimidazolium chloride) has been investigated. AlCl3xOiPr2 co-initiated cationic polymerization of C4 mixed feed proceeds at a lower rate than polymerization of isobutylene affording polymers with higher molecular weight. Complexes of iBuAlCh with di isopropyl ether of different compositions are more suitable co-initiators than AlCl3xOiPr2 for the synthesis of highly reactive polyisobutylene (HR PIB) from C4 mixed feed due to their higher activity in the polymerization as well as possibility to prepare polyisobutylenes with lower molecular weight and higher content of exo-olefin end groups. However, iBuA1C12 needs activating via addition of external water (initiator) and/or interaction with salts hydrates in order to increase the reaction rate and the saturated monomer conversion.[Emim]Cl-FeC13/iPr2O is a quite promising catalyst for the preparation of HR PIB with high exo-olefin end group content (> 80%) and relatively low polydispersity (Mw/Mn < 2.8) via cationic polymerization of C4 mixed feed. The sonication of reaction mixture in case of using [emim]Cl-FeCh allowed increasing the reaction rate and decreasing the molecular weight. 展开更多
关键词 cationic polymerization isobutylene C4 mixed feed Highly reactive polyisobutylene
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Functionalized Copolymers of Isobutylene with Vinyl Phenol: Synthesis,Characterization, and Property 被引量:2
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作者 Shi-Xuan Yang Zi-Yu Fan +2 位作者 Feng-Yu Zhang Si-Hao Li Yi-Xian Wu 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2019年第9期919-929,共11页
The random copolymers of isobutylene (IB) with polar comonomers of 4-acetoxystyrene (ACS) or 4-tert-butoxystyrene (TBO), P(IB-co-ACS) and P(IB-co-TBO), could be successfully synthesized via cationic copolymerization w... The random copolymers of isobutylene (IB) with polar comonomers of 4-acetoxystyrene (ACS) or 4-tert-butoxystyrene (TBO), P(IB-co-ACS) and P(IB-co-TBO), could be successfully synthesized via cationic copolymerization with FeCh-based initiating system. The kinetics of the cationic copolymerization process was in situ investigated by inserting a diamond probe into the reaction system by ATR-FTIR spectroscopy. The chemical structure and incorporation content of polar comonomers in the copolymers were characterized by GPC with RI/UV dual detectors and 1H-NMR spectroscopy. The corresponding functionalized random copolymers of IB with vinyl phenol P(IB-co-POH) carrying phenolic hydroxyl side groups could be further prepared via the complete hydrolysis of acetoxyl side groups in P(IB-co-ACS) or tert-butoxyl side groups in P(IB-co-TBO) copolymers. The functionalized P(IB-co-POH) copolymers became hydrophilic with water contact angle (WCA) of ca. 80° for the self-assembly in hot water, compared to the hydrophobic polyisobutylene with WCA of ca. 110°. The functionalized P(IB-co-POH) copolymers also displayed an excellent self-healing property due to the interaction of intermolecular hydrogen bonding and formation of three dimentional supramolecular networks from phenolic hydroxyl side groups. Furthermore, P(IB-co-POH) copolymers also provided a good matrix for the homogeneous dispersion for silica nanoparticles due to the formation of hydrogen bonding between copolymer chains and silica nanoparticles. 展开更多
关键词 cationic polymerization isobutylene COPOLYMERS Polar MONOMER FUNCTIONALIZED polyisobutylenes
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高分子量聚异丁烯制备影响因素分析
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作者 涂晓燕 程鹏飞 +3 位作者 刘芸 李世辉 黄安平 李广全 《合成橡胶工业》 CAS 北大核心 2023年第6期495-499,共5页
以稀土金属钪正离子配合物为催化剂研究了异丁烯催化聚合反应,通过筛选催化体系、调节单体与催化剂配比、调控反应温度和反应时间等一系列影响因素,对聚异丁烯的分子量及其分布和玻璃化转变温度进行了考察。结果表明,在5种稀土金属钪正... 以稀土金属钪正离子配合物为催化剂研究了异丁烯催化聚合反应,通过筛选催化体系、调节单体与催化剂配比、调控反应温度和反应时间等一系列影响因素,对聚异丁烯的分子量及其分布和玻璃化转变温度进行了考察。结果表明,在5种稀土金属钪正离子催化剂中,空间位阻相对较小的限制几何构型钪双烷基催化剂对异丁烯的催化活性最高;异丁烯单体与催化剂的物质的量之比越大,所得聚合物的数均相对分子质量就越高;聚合反应温度越低,聚合物的数均相对分子质量就越高,但当温度低于-60℃时聚合物的数均相对分子质量却大幅减小;聚合反应时间对聚合物相对分子质量变化的影响不大;此外,聚合反应温度和聚合反应时间对聚异丁烯玻璃化转变温度无明显影响。 展开更多
关键词 异丁烯 聚异丁烯 稀土金属催化剂 限制几何构型 正离子聚合 分子量及其分布 玻璃化转变温度
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MeOH/BF_3体系引发异丁烯阳离子聚合反应中水含量及聚合温度的影响 被引量:11
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作者 吴一弦 顾笑璐 +2 位作者 邱迎昕 范国强 武冠英 《高分子学报》 SCIE CAS CSCD 北大核心 2002年第4期498-503,共6页
研究了水含量和聚合反应温度Tp 对MeOH BF3体系引发异丁烯 (IB)阳离子聚合反应的转化率、产物的分子量及分子量分布的影响 ,求出在不同水含量条件下的Tp 对聚合物分子量影响的数学方程及相应的聚合度活化能Ep ,以期对体系中存在的微量... 研究了水含量和聚合反应温度Tp 对MeOH BF3体系引发异丁烯 (IB)阳离子聚合反应的转化率、产物的分子量及分子量分布的影响 ,求出在不同水含量条件下的Tp 对聚合物分子量影响的数学方程及相应的聚合度活化能Ep ,以期对体系中存在的微量水加以充分利用 .结果表明 ,[H2 O]和Tp 两者共同影响IB阳离子聚合反应过程及产物的分子参数 .当Tp 由 - 10 0℃升高至 - 5 0℃时 ,聚合转化率先增加到一定值后再减小 ,在- 80℃~ - 70℃范围内出现峰值 .在 [H2 O]较低时 ,Tp 明显影响着聚合产物的分子量及分子量分布 ,Tp 越低 ,分子量越高 ,分子量分布越窄 ;在 [H2 O]较高时 ,Tp 对分子量的影响程度较小 ,说明此时水对聚合反应的影响更为突出 .体系中水含量增大对IB阳离子聚合反应呈现不利作用 ,当 [H2 O]由 1 5× 10 - 3mol L增加至 4 6×10 - 3mol L时 ,Ep 由 - 4 0kJ mol增大至 - 17kJ mol ,说明随着 [H2 O]增大 ,水的负面效应更加明显 ,既促进副反应 ,又阻碍链增长反应 ,增长活化能增大 ,聚合物分子量降低 ,分子量分布变宽 .水的负面作用也随着Tp 升高而变得明显 . 展开更多
关键词 MeOH/BF3体系 水含量 聚合温度 异丁烯 阳离子聚合 聚异丁烯 活化能 引发体系
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DCC/AlCl_3体系引发异丁烯正离子聚合 被引量:8
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作者 刘迅 吴一弦 +4 位作者 张成龙 张蓓 李艳 徐旭 武冠英 《高分子学报》 SCIE CAS CSCD 北大核心 2007年第3期255-261,共7页
研究以对-二枯基氯(DCC)/AlCl3体系引发异丁烯在CH2Cl2/Hex(40/60,V/V)混合溶剂中进行正离子聚合,探讨了DCC用量、给电子试剂,如三苯胺(TPA)、2,6-二甲基吡啶(DMPy)对异丁烯正离子聚合转化率、产物分子量及其分布的影响.结果表明,在无... 研究以对-二枯基氯(DCC)/AlCl3体系引发异丁烯在CH2Cl2/Hex(40/60,V/V)混合溶剂中进行正离子聚合,探讨了DCC用量、给电子试剂,如三苯胺(TPA)、2,6-二甲基吡啶(DMPy)对异丁烯正离子聚合转化率、产物分子量及其分布的影响.结果表明,在无给电子试剂存在时,DCC和体系中微量水均可与AlCl3产生络合竞争引起相继的引发竞争,聚合产物GPC谱图呈双峰分布,分子量分布宽,需要大量的引发剂DCC(DCC/H2O=5.3)来减少体系中微量水的不可控引发;在少量上述给电子试剂存在下,可提高DCC的引发效率,减少向单体链转移反应,提高聚合产物的分子量和使分子量分布呈较窄的单峰分布,即使在较低DCC用量下也可基本抑制体系中微量水的不可控引发,达到DCC定量引发,并得到分子量分布相对较窄(Mw/Mn≈2.3)的聚异丁烯产物. 展开更多
关键词 异丁烯 正离子聚合 聚异丁烯 引发
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含氮试剂对p-DCC/AlCl_3引发异丁烯正离子聚合的影响 被引量:3
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作者 张蓓 吴一弦 +3 位作者 李艳 刘迅 徐旭 武冠英 《高分子学报》 SCIE CAS CSCD 北大核心 2007年第11期1040-1046,共7页
以对-二枯基氯(DCC)/AlCl3体系引发异丁烯在二氯甲烷(CH2Cl2)正己烷(Hex)(40/60,V/V)混合溶剂中进行正离子聚合,探讨了DCC用量、含氮试剂2,6-二叔丁基吡啶(DtBP)和三苯胺(TPA)对异丁烯正离子聚合转化率、产物分子量及其分布的影响.结果... 以对-二枯基氯(DCC)/AlCl3体系引发异丁烯在二氯甲烷(CH2Cl2)正己烷(Hex)(40/60,V/V)混合溶剂中进行正离子聚合,探讨了DCC用量、含氮试剂2,6-二叔丁基吡啶(DtBP)和三苯胺(TPA)对异丁烯正离子聚合转化率、产物分子量及其分布的影响.结果表明,DCC和体系中微量水均可与AlCl3产生竞争络合,形成两种活性中心并引起相继的竞争引发,聚合产物的GPC谱图呈双峰分布,分子量分布宽;增加DCC用量有利于DCC与AlCl3的络合,致使链增长反应主要通过DCC与AlCl3络合形成的活性中心引发,但聚合产物分子量相对较低,分子量分布较宽;使用DtBP,可有效地抑制微量水引发及活性链向单体的转移反应,使分子量分布明显变窄,基本实现DCC的控制引发;采用DtBP与TPA共同调节聚合反应,可使聚合产物分子量分布变窄的同时,进一步提高分子量,从而得到相对较高分子量(Mw=103200)和单峰分子量分布(Mw/Mn=2.09)的聚异丁烯产物. 展开更多
关键词 正离子聚合 异丁烯 聚异丁烯 亲核试剂
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一氯代八甲基环四硅氧烷阳离子聚合动力学
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作者 刘庆阳 戚桂斌 +1 位作者 贝逸翎 丁原菊 《化学研究》 CAS 2007年第4期66-67,75,共3页
合成了八甲基环四硅氧烷的一氯取代物,并以其为单体,98%浓硫酸为催化剂,采用称重法研究了一氯代八甲基环四硅氧烷阳离子开环的本体聚合动力学,探讨了温度,催化剂浓度对其聚合速率常数的影响.研究表明:温度,催化剂浓度对一氯代八甲基环... 合成了八甲基环四硅氧烷的一氯取代物,并以其为单体,98%浓硫酸为催化剂,采用称重法研究了一氯代八甲基环四硅氧烷阳离子开环的本体聚合动力学,探讨了温度,催化剂浓度对其聚合速率常数的影响.研究表明:温度,催化剂浓度对一氯代八甲基环四硅氧烷的聚合速率有显著影响,其聚合活化能是40.37kJ.mol-1;与八甲基环四硅氧烷阳离子开环聚合相比,氯代甲基使硅氧烷的开环聚合速率减慢,聚合活化能升高. 展开更多
关键词 一氯代八甲基环四硅氧烷 阳离子聚合 聚合动力学 活化能
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HES/TiCl_4体系引发异丁烯可控正离子聚合 被引量:2
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作者 梁立虎 吴一弦 +3 位作者 李艳 徐日炜 杨万泰 武冠英 《高分子学报》 SCIE CAS CSCD 北大核心 2008年第12期1166-1174,共9页
由六官能团引发剂环氧化角鲨烯(HES)与TiCl4组成引发体系,引发异丁烯(IB)在CH2Cl2/n-Hex(40/60,V/V)混合溶剂中进行正离子聚合,分别探讨了HES和2,6-二甲基吡啶(DMP)用量对IB正离子聚合转化率、产物分子量及其分布的影响.结果表明HES和... 由六官能团引发剂环氧化角鲨烯(HES)与TiCl4组成引发体系,引发异丁烯(IB)在CH2Cl2/n-Hex(40/60,V/V)混合溶剂中进行正离子聚合,分别探讨了HES和2,6-二甲基吡啶(DMP)用量对IB正离子聚合转化率、产物分子量及其分布的影响.结果表明HES和微量水均可与TiCl4发生络合,并分别形成碳正离子和质子两种引发活性中心,导致聚合产物GPC谱图呈明显双峰分布.增加引发剂HES用量([HES]=2.64mmol/L),可以减少聚合体系中微量水的不可控引发,提高HES引发效率;在聚合体系中引入少量DMP时,可明显地减少微量水的不可控引发和提高HES的引发效率,使得即使在较低HES用量下([HES]=0.084mmol/L),也可达到主要由HES引发IB正离子聚合,制备出官能叔氯末端的六臂星形支化遥爪聚异丁烯,GPC谱图呈现单峰分子量分布,分布指数为1.5左右. 展开更多
关键词 异丁烯 正离子聚合 引发 聚异丁烯
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活性阳离子法合成PS-PIB-PS嵌段共聚物
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作者 张杰 《石化技术》 CAS 1998年第4期252-256,共5页
阐述了活性阳离子聚合的发展概况,简介了用活性阳离子法合成异丁烯与苯乙烯三嵌段共聚物的方法、共聚物的表征及其性能。综述了在活性聚合体系中加入电子试剂、质子阱对活性阳离子聚合活性种的维持、分子量分布及嵌段效率的影响。
关键词 活性阳离子聚合 异丁烯 苯乙烯 嵌段共聚物
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高活性聚异丁烯的合成与结构表征 被引量:1
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作者 任纪文 赵朕 +4 位作者 于兆鹏 贾宇翔 吴康达 伍一波 刘若凡 《高分子通报》 CAS CSCD 北大核心 2022年第8期61-69,共9页
根据我国关于推广乙醇汽油的新政,国内原有1800万吨左右甲基叔丁基醚(MTBE)产能正面临生死抉择,作为其下游产品的大量异丁烯资源需另谋出路。因此开发高活性聚异丁烯高新技术,可缓解异丁烯利用率低以及油品质量升级带来的双重压力,促进... 根据我国关于推广乙醇汽油的新政,国内原有1800万吨左右甲基叔丁基醚(MTBE)产能正面临生死抉择,作为其下游产品的大量异丁烯资源需另谋出路。因此开发高活性聚异丁烯高新技术,可缓解异丁烯利用率低以及油品质量升级带来的双重压力,促进炼化企业碳四产业链的可持续发展。本论文以水(H_(2)O)/二氯乙基铝(EADC)/2,2-二氯二乙基醚(CEE)作为引发体系,考察相关正离子聚合的聚合特征和规律,探究出具有高转化率、高α-外烯烃含量的高活性聚异丁烯(HRPIB)的制备方法。 展开更多
关键词 正离子聚合 外烯烃结构 异丁烯 高活性
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