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1.
笼型倍半硅氧烷环氧树脂;二氨基二苯砜;固化反应动力学;差示扫描量热法  相似文献   

2.
用溶胶-凝胶法制备了新型的多功能巯基硅氧烷溶胶;用亚麻籽油和环戊二烯合成了可光聚合的改性亚麻籽油低聚物(NLO),并用红外光谱(FT-IR)表征了其结构。用光-差示扫描热分析(Photo-DSC)和在线红外(RT-IR)对NLO、巯基硅氧烷的紫外光固化体系的光聚合反应活性及可光聚合官能团的转化率进行了动力学研究。结果表明:巯基硅氧烷能大大提高NLO的自由基聚合速率,环烯键对硫醇十分敏感,巯基硅氧烷溶胶兼具光引发剂和交联剂的作用。  相似文献   

3.
环硅氧烷在亲核或亲电催化剂、温度或辐射作用下,可开环聚合生成线型聚硅氧烷,聚合方法主要有本体聚合和乳液聚合.本体聚合可分为阴离子聚合和阳离子聚合,阴离子聚合就是在碱性催化剂(亲核试剂)作用下,使环硅氧烷开环聚合成线型聚硅氧烷的过程;阳离子聚合就是环硅氧烷在酸性催化剂(亲电试剂)作用下的开环聚合反应.乳液聚合则是单体和水(或其它分散介质)并用乳化剂配成乳液状态进行聚合,按所采用的乳化剂种类不同,主要有阴离子型和阳离子型两种类型.本文总结了近几年国内外环硅氧烷本体聚合和乳液聚合的开环聚合机理及动力学研究情况,并对今后此方面的研究进行了展望.  相似文献   

4.
分别用水溶性的过硫酸钾(KPS)和油溶性的2,2′-偶氮二异丁腈(AIBN)为引发剂引发γ-甲基丙烯酰氧基丙基三甲氧基硅烷(MPS)/苯乙烯(St)细乳液共聚合反应.比较了两类引发剂对MPS/St共聚合动力学(包括硅氧烷水解动力学和MPS/St的自由基共聚合动力学)、乳胶粒稳定性和共聚产物微结构的影响.  相似文献   

5.
采用多种芳香双酯作为电子给予体制备了丙烯聚合高效催化剂,该催化剂具有高活性、聚合反应平稳、产物等规度高等特征.研究了多种芳香双酯和外加各种烷基硅氧烷对丙烯聚合的作用,测定了聚合反应动力学曲线,确定了聚合动力学方程.用扫描电镜研究了催化剂的形态,表明双酯组份能使催化剂结合得较紧密;对聚合产物的结构用DSD、红外光谱进行了表征.  相似文献   

6.
倍半硅氧烷改性环氧树脂的研究进展   总被引:1,自引:0,他引:1  
倍半硅氧烷是近年发展起来的一种分子水平的有机无机杂化材料。文章介绍了倍半硅氧烷的结构、合成以及笼型倍半硅氧烷(POSS)基高分子复合材料的结构及合成方法。倍半硅氧烷改性聚合物可以提高聚合物的热性能、阻燃性能和物理机械性能等。文章综述了倍半硅氧烷改性环氧树脂的研究进展。  相似文献   

7.
环硅氧烷负离子乳液聚合中活性中心浓度的变化规律   总被引:3,自引:0,他引:3  
以八甲基环四硅氧烷(D4)为单体,十二烷基二甲基苄基氢氧化铵(BDAH)为乳化剂兼催化剂,进行环硅氧烷负离子乳液聚合,采用凝胶色谱(GPC)测定聚合产物的转化率及分子量.在此基础上,分析基元反应,提出活性中心生成机理,并应用环硅氧烷开环聚合普适动力学模型计算乳液聚合平衡之前的活性中心浓度变化规律.结果发现,聚合温度较低时,活性中心浓度随时间逐渐增加,最终恒定;聚合温度较高时,活性中心浓度随时间仅单调递增.结果与机理相符.  相似文献   

8.
针对近年来基于有机改性硅氧烷作为连接体构筑的光功能稀土杂化材料的最新进展进行了评述,其重点着眼于稀土离子的优良光敏化有机配体修饰硅氧烷偶联剂获得有机改性硅氧烷,以其作为多功能连接体(分子桥)来实现对发光稀土杂化材料体系的化学键组装。内容主要涉及基于芳香羧酸衍生物类改性硅氧烷构筑稀土杂化材料、基于β-二酮及类β-二酮衍生物类改性硅氧烷构筑稀土杂化材料、基于大环配体衍生物类改性硅氧烷构筑稀土杂化材料、基于杂环等衍生物类改性硅氧烷构筑稀土杂化材料、基于有机改性硅氧烷多元组装稀土杂化材料及基于离子液体改性硅氧烷构筑稀土介孔硅杂化材料几个重要方面。主要结合我们自己的近期研究工作,通过系统总结来展现该领域的研究面貌并提出未来展望。  相似文献   

9.
环硅氧烷开环聚合研究进展   总被引:1,自引:0,他引:1  
聚硅氧烷(如硅油、硅橡胶、硅树脂等)具有很多优异的性能,如耐高低温、耐紫外线辐射、耐候、低表面张力、电气绝缘、生理惰性等,已被广泛应用于航空航天、电子电器、化工、机械、建筑、交通、医疗卫生、农业等领域。聚硅氧烷制备方法主要有环硅氧烷开环聚合和硅氧烷缩聚。本文从环硅氧烷阴离子开环聚合、阳离子开环聚合和其它聚合方法等出发,较详细介绍了环硅氧烷开环聚合近年来的研究进展,并指出环硅氧烷开环聚合制备有机硅高分子材料所面临的问题。  相似文献   

10.
气相色谱-质谱法分析甲基苯基硅氧烷混合环体   总被引:6,自引:0,他引:6  
用GC-MS对甲基苯基硅氧烷混合环体(Me2n-iPhiSinOn)样品进行分析,鉴定出了25个组分,其中包括甲基硅氧烷环体、含1个苯基的甲基硅氧烷环体以及含2个苯基的甲基硅氧烷环体。四甲基二苯基环三硅氧烷环体(Me4Ph2Si3O3)的2个异构体、六甲基二苯基环四硅氧烷环体(Me6Ph2Si4O4)的4个异构体都得到有效分离和归属,并且发现其各异构体的含量比例符合随机环化的理论值。同时对该混合环体的苯基/甲基比例以及苯基含量进行了计算,并得到氢谱的验证。  相似文献   

11.
烷氧基硅烷溶胶-凝胶反应机理   总被引:2,自引:0,他引:2  
利用烷氧基硅烷作为前驱体之一,进行溶胶-凝胶(sol-gel)反应制备无机氧化物和有机-无机杂化材料,近几十年来一直是一个研究热点。对烷氧基硅烷的sol-gel反应过程,特别是起始的水解和初步缩合过程已有较多的研究。本文综述了烷氧基硅烷的sol-gel反应机理研究的进展,并对未来发展提出了看法。  相似文献   

12.
A procedure was developed for regeneration of Termolan, solvent used in synthesis of alkoxysilanes, involving its treatment with ethanol to remove alkoxysilanes.  相似文献   

13.
In this communication we present the results of initial kinetic studies in which we have established that alkoxysilanes and chlorosilanes react with Grignard reagents in entirely different ways. The Grignard reaction with alkoxysilanes consists of replacement of a donor molecule at the magnesium centre by silane, followed by a subsequent rearrangement of the complex to the products. Chlorosilanes react without solvent molecule replacement.  相似文献   

14.
The Tamao oxidation of alkoxysilanes was investigated computationally to determine the role of fluoride, a key additive, in this reaction. A sequence of fluoride equilibria as well as possible transition states, mediated by basic and neutral peroxide, respectively, were examined, and a potential energy surface was calculated which was consistent with the typical synthetic methods required for the conversion of alkoxysilanes to alcohols.  相似文献   

15.
Prehydrolyzed-condensed precursors containing amino or glycido groups were prepared via sol gel process using various alkoxysilanes in the bulk, without addition of solvent in any step of their preparation. The influence of the experimental set-up, the functionality and ratio of alkoxysilanes, and type of catalyst, on the structure buildup was studied. In the case of amino precursors, the sol–gel process was carried out at weak basic conditions while in the case of glycido precursors the sol–gel process was catalyzed by acid or neutral pH. The sol–gel process was monitored by 29Si NMR in solution and the structure of the prehydrolysed-condensed precursors was characterized by small-angle X-Ray scattering. The systems with high content of tetraethoxysilane led to the fast gel formation. In weak acid medium tetraethoxysilane formed larger, more condensed species as well as small structures (based on Q 1, Q 2 and Q 3 species) with silanol groups. Strong acidic conditions led to the fast formation of insoluble silica particles in liquid (sol) phase containing monomeric alkoxysilanes. The most suitable precursor formulations based on the alkoxysilanes with amino groups, as well as the most efficient set-up, were selected and used to prepare hybrid organic/inorganic networks based on an epoxy matrix. These networks were characterized using dynamic mechanical analysis.  相似文献   

16.
Microchimica Acta - Linear alkyl alkoxysilanes (methoxy and ethoxy-based) of varying length were used in preparing tetracycline surface imprinted silica xerogels by the sol–gel process. The...  相似文献   

17.
Carbonyl compounds are readily acetalized by alkoxysilanes in the presence of trimethylsilyl trifluoromethanesulfonate catalyst.  相似文献   

18.
Few routes to well-defined 3D silicone structures exist because of their susceptibility to depolymerization/metathesis in the presence of acids or bases. The Lewis acid B(C6F5)3 can be employed to condense hydrosilanes with alkoxysilanes, producing siloxanes and alkanes (R3SiH+R'OSiR' '3 --> R3SiOSiR' '3 + R'H). We demonstrate that balancing the steric demands at both the hydrosilane and alkoxysilanes, and the careful control of reaction conditions, permits clean condensation reactions to occur in the absence of competing metathesis processes. The resulting linear or highly branched siloxane compounds can be rapidly and easily assembled into explicit, complex 3D silicone structures in high yield.  相似文献   

19.
《Tetrahedron letters》1986,27(1):65-68
(Alkenyl)alkoxysilanes are readily transformed into α-hydroxy ketones via epoxidation and the subsequent oxidative cleavage of the carbon—silicon bonds.  相似文献   

20.
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