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以环氧树脂E-44、2-氨基-5-磺酸基苯甲酸、乙二醇丁醚和正丁醇为原料,合成一种新型阴离子环氧乳化剂EP-D;同时,E-44和聚乙二醇(PEG6000)以摩尔比2∶1反应,合成端环氧基非离子环氧乳化剂EP-PEG;将EP-D与EP-PEG按不同质量比复配获得不同配比的EP-D/EP-PEG水性环氧复合乳化剂。 分别研究了EP-D/EP-PEG及EP-PEG在环氧树脂中加入质量分数为6%~12%时的乳化性能及形成乳液的表面张力、电导率和胶粒的Zeta电位、粒径。 结果表明,当EP-D和EP-PEG以质量比3∶5复配,总加入质量分数为9%时,制备的环氧乳液性能最佳。 与EP-PEG形成的环氧乳液相比,复配环氧乳化剂用量少,乳液铺展性好、稳定性高,且乳液在相反转时的固含量提高了10%以上。 复配环氧树脂乳液中胶粒的Zeta电位为-41.9 mV、粒径为342 nm、表面张力为25.5 mN/m、粘度为14 mPa·s。 这表明利用乳化剂EP-D与EP-PEG复配新合成的EP-D/EP-PEG水性环氧复合乳化剂可制备稳定性好,固含量高的乳液。  相似文献   

3.
颗粒乳化剂的研究及应用   总被引:2,自引:0,他引:2  
近年来,颗粒乳化剂因其在食品、采油、化妆品、医药、催化以及功能纳米材料制备等领域具有潜在应用前景而备受关注。本文综述了近来颗粒乳化剂的研究进展,归纳了颗粒乳化剂的种类,包括:无机纳米粒子、表面改性或杂化的无机粒子、有机纳米粒子以及特殊的颗粒乳化剂Janus粒子;并对颗粒乳化剂能够在油水界面稳定吸附的热力学机理和动力学行为进行了阐述,颗粒乳化剂在油水界面接触角以及粒径大小是其在界面稳定吸附的关键参数,而颗粒在油水界面的排布方式则主要受粒子之间相互作用的影响。重点介绍了颗粒乳化剂的热点应用,包括:(1)利用颗粒乳化剂制备Pickering乳液,以及通过对颗粒乳化剂的功能化,使得Pickering乳液具备环境响应性(即pH、盐浓度、温度、紫外光、磁场敏感响应性);(2)以颗粒乳化剂为构筑基元、以Pickering乳液为模板制备Janus颗粒、Colloidosome、具有多级结构的粒子或膜,以及多孔结构材料;(3) Janus粒子在催化领域的应用。  相似文献   

4.
反应性乳化剂在无皂硅溶胶苯丙乳液聚合中的应用   总被引:1,自引:0,他引:1  
反应性乳化剂;硅溶胶;苯丙乳液;乳液聚合  相似文献   

5.
马来酸类可聚合乳化剂及其在乳液聚合中应用   总被引:2,自引:0,他引:2  
使用可聚合乳化剂可以很好地解决传统乳化剂的缺点,提高乳液的应用性能.马来酸类乳化剂其可聚合基团反应活性适中,可以很好地键合在乳胶粒表面上,且更为突出的是这类乳化剂不易发生均聚,而是倾向于与单体发生共聚.研究表明,马来酸类可聚合乳化剂应用到乳液聚合中,可以改善乳胶液的性能,提高乳胶膜的耐水性等.文章介绍了这一类新型的乳化剂,并根据其亲水基团进行了分类,分别介绍其合成路线,总结了马来酸类乳化剂的特点,概述了在常见乳液聚合体系中的应用与研究.  相似文献   

6.
复合乳化剂微乳液法制备聚苯胺及其电化学性能   总被引:1,自引:0,他引:1  
采用复合乳化剂微乳液法合成了导电聚苯胺(PANI),以碳纸负载PANI为工作电极,考察了十二烷基苯磺酸钠(SDBS)和聚乙二醇辛基苯基醚(TX-100)的配比及其复合乳化剂(E)和氧化剂(APS)用量对复合乳化剂微乳液法合成PANI电化学性能(循环伏安、塔费尔)的影响;通过对产物电导率和产率的对比分析,印证了PANI电化学性能表征结果的有效性。结果表明:当SDBS与TX-100的质量比为1/2,E与苯胺(An)单体的质量比为5/3,APS与An的摩尔比为1.2时,PANI的各项性能指标达到最好,且产物的循环伏安峰电流、腐蚀电位和电导率均高于单组分乳化剂SDBS或TX-100微乳液法制备的PANI。  相似文献   

7.
乳化剂分子亲水组分含量对相反转乳化过程的影响   总被引:16,自引:0,他引:16  
高分子树脂水基分散体系 ,因其结构的可灵活调节性 ,在许多方面得到应用 ,又因其不含有机溶剂 ,能完全满足环境保护和生态的要求而备受关注 [1~ 3] .相反转乳化技术是制备高分子水基体系的新方法 ,它适用于制备包括加聚物和缩聚物的大多数高分子水基体系 ,大大拓宽了水基体系的范围 [4 ] .杨振忠等[5] 利用自己合成的高分子非离子型乳化剂将环氧树脂乳化成微粒尺寸小且分布窄的水基分散体系 ,对相反转机理和相反转技术进行了深入研究 .研究表明 ,乳化剂浓度和乳化温度对相反转后水基微粒尺寸和形态有重要影响 ,高乳化剂浓度和较低的乳化温…  相似文献   

8.
乳化剂对聚硅氧烷乳液稳定性的影响   总被引:3,自引:0,他引:3  
研究了乳化剂烷基酚聚氧乙烯醚(OP)、烷基聚氧乙烯醚和烷基季铵盐对聚硅氧烷乳液聚合的影响。采用复合乳化剂可以提高乳液稳定性。结果表明:①在以D4、N-β-氨乙基-γ-氨丙基甲基二甲氧基硅烷为原料的乳液聚合中。当非离子型乳化剂烷基聚氧乙烯醚和离子型乳化剂烷基季铵盐复合使用时,二者性能互补,产生协同效应,可使聚合物乳液具有很大的稳定性。②在实验选定的乳化剂中,非离子型烷基聚氧乙烯醚乳化剂用量为80mL(含量为0.05g/mL)、离子型烷基季铵盐乳化剂为60mL(浓度为0.05g/mL)时。其乳液的电解质稳定性、pH稳定性、冻融高温稳定性和离心稳定性等较好。  相似文献   

9.
反应性乳化剂存在下的五元苯丙乳液共聚合   总被引:2,自引:2,他引:0  
采用反应性乳化剂SE-10N,通过正交实验及单因素实验确定了以苯乙烯、甲基丙烯酸甲酯、丙烯酸丁酯、丙烯酸和丙烯腈为单体的五元无皂苯丙共聚乳液的组成及聚合工艺。所制得的无皂乳液稳定,其乳胶粒大小均匀,粒径为50~60nm,比同组成的有皂乳液乳胶粒的粒径稍小。乳液涂膜透明、硬度达H级;其硬度、耐水性及钙离子稳定性均较同组成有皂乳液的好。  相似文献   

10.
反应性乳化剂存在下半连续苯丙乳液共聚合表观动力学   总被引:1,自引:0,他引:1  
研究了在反应性乳化剂SE-10N存在下,采用半连续滴加工艺进行苯丙乳液共聚合的表观动力学.首先利用间歇法研究了引发剂、乳化剂用量、单体总量和温度对聚合反应速率的影响,得到了相应的聚合反应速率方程为Rp =k[M]0.30[I]0.18[E]0.97,并计算得到聚合反应的表观活化能为90.8 kJ·mol-1.然后采用半连续滴加法,讨论了不同滴加速率对聚合表观速率Rp的影响,结果表明,随滴加速率Ra 的增加,反应速率Rp也增加,但增加的幅度逐渐减少,且聚合过程的状态不断远离饥饿态.要使该聚合过程的状态保持在稳定的饥饿态,单体滴加时间应控制在140 min 以上.  相似文献   

11.
The new fluorinated acrylate emulsion was synthesized by using the intermediate perfluorous nonene and 2-hydroxyethyl methacrylate as the staring reactants via semi-continuous seeded emulsion polymerization. The structures, glass transition temperature, thermal property and water repellency of the fluorinated acrylate emulsion were characterized with FTIR, differential scanning calorimetry, thermal analysis, and contact angle meter. Influences of many factors such as the theoretical solid content, the temperature of the emulsion polymerization on the stability of the emulsion polymerization, the added amount of emulsifiers and the added amount of the initiator were studied. Results show that the stability of the emulsion polymerization is fairly good when the theoretical solid content is below 30% and the reaction temperature is 80°C and the added amount of emulsifiers and the initiator are 6.0–8.0% and 2.0% respectively. In comparison with the acylate emulsion, the thermal stability of the fluorinated acrylate emulsion is decreased but the water repellency of the fluorinated acrylate emulsion is greatly increased.  相似文献   

12.
The first main target of this work is to synthesis some emulsifiers from local raw materials used for cutting oil formulations. Seventeen emulsifiers (15 nonionic and 2 anionic) were prepared from locally available materials such as linear alkyl benzene sulfonic acid (LABSA), glycerol, polyethylene glycol, and maleic anhydride. Their chemical structures were confirmed using FTIR. The surface tension for the emulsifiers was measured at 25°C, and the surface and thermodynamic properties were calculated based on the surface tension parameters. The formulations of cutting oil fluids were prepared using these emulsifiers. The second target is to investigate the stability of soluble oil blends and emulsion stability of soluble oil in water. The results are discussed in the light of surface‐active properties and chemical structure of emulsifiers.  相似文献   

13.
乳化剂对阳离子乳液聚合及乳胶粒性能的影响   总被引:1,自引:0,他引:1  
以苯乙烯、丙烯酸丁酯为非离子单体,甲基丙烯酰氧乙基三甲基氯化铵(DMC)为阳离子单体,偶氮二异丁基脒盐酸盐(AIBA)为引发剂,十六烷基三甲基氯化铵(CTAC)和乙撑基双(十六烷基二甲基氯化铵)(G16—2—16)为乳化剂,采用半连续种子乳液聚合法进行阳离子乳液聚合。探讨了乳化剂的分子结构和用量对反应速率、单体转化率以及乳胶粒粒径、Zeta电位等的影响。结果表明:乳化剂的用量越大,反应速率越大,单体转化率越高,而乳胶粒粒径越小;使用G16—2—16作乳化剂时,单体转化率较高,乳胶粒粒径较大,Zeta电位较高。  相似文献   

14.
Stable poly(styrene-co-sodium styrene sulfonate) (P(St-NaSS) nanoparticles with broader size distribution were synthesized by thermal emulsion polymerization without any conventional initiators and emulsifiers. The obtained polymer nanoparticles have higher ξ potential, and the particle sizes have broad distribution. The stability of polymer particles originated from the addition of small amounts of ionic comonomer, NaSS, which can act as an emulsifier in somewhat. The monomer conversion could reach up to about 28 wt% in 48 h, and did not increase by further polymerization when higher polymerization temperature (120 ℃) was employed. This polymerization system may be give some further understand for mechanism of emulsion polymerization.  相似文献   

15.
Monomeric emulsifiers with different copolymerization reactivities were used as stabilizers in emulsion polymerization of styrene initiated by 2,2′ azobisisobutyronitrile (AIBN). A significant change in emulsifier function was observed between equal micellar concentrations of surface-active sodium sulfopropyl alkyl maleates and the corresponding sodium sulfopropyl dodecyl fumarate. In the presence of less reactive maleates, copolymerization mainly occurs in the interface of the monomer swollen particles, while copolymerization with the fumarate in the first period of emulsion polymerization leads to polyelectrolyte formation in the water phase.  相似文献   

16.
乳化剂在双重乳液合成含胰岛素纳米胶囊中的作用   总被引:2,自引:0,他引:2  
Insulin entrapped nanocapsules to use polylactide (PLA) as the encapsulating material were prepared through a modified water-in-oil-in-water (W/O/W) emulsification and solvent evaporation method, The average particle size of PLA nanocapsules obtained was decreased to (181.5 ± 8.4) nm, and capably adjusted from 180 to 370 nm by using different types and content of nonionic emulsifiers. The influence of emulsifiers on property of nanocapsules was discussed in detail. The effects of spans and tweens to modify the size of the nanocapsules were different, which can be due to the distribution of the surfactants on the inner interface between the inner water and oil of the double emulsion. The encapsulation efficiency and drug release of nanocapsules were affected obviously by the content and type of emulsifiers.  相似文献   

17.
采用荧光探针技术,根据芘的第一振动峰I1(373 nm)与第三振动峰I3(384 nm)荧光强度的比值(I1/I3)随乳化剂浓度的变化,对十二烷基磺酸钠(AS)与壬基酚聚氧乙烯醚(Oπ-10)复配乳化剂的CMC值进行了测定,并与十二烷基磺酸钠(AS),壬基酚聚氧乙烯醚(Oπ-10)的CMC值进行了比较,结果表明复配乳化剂的CMC介于两者之间.以二苯甲酮为猝灭剂,用稳态荧光法测定了不同比例复配乳化剂的胶束聚集数,实验结果表明,复配乳化剂浓度为4—9倍CMC时,测定的胶束聚集数随复配乳化剂浓度的增大而线性增大;且Oπ-10:AS<2:1时,随着复合乳化剂中Oπ-10比例的增大,复配乳化剂胶束聚集数增大.利用芘的I1/I3值,结合胶束微环境的极性变化规律,探讨了复配乳化剂的聚集行为对硅丙乳液聚合物的影响.  相似文献   

18.
颗粒膜的结构及对乳状液稳定性的影响机制   总被引:1,自引:0,他引:1  
黄翔峰  娜雅  熊永娇  王旭慧  彭开铭 《化学进展》2016,28(12):1743-1752
以颗粒膜为基础的乳液因广泛应用于油田、造纸、食品、化妆品、医药等领域而备受关注。本文归纳了在油水界面形成颗粒膜的颗粒密度、粒径及润湿性等特征,并阐述了颗粒在界面吸附扩散的行为。重点从颗粒垂直于界面的分配及方向,颗粒在界面内的排列及进一步形成的空间结构综述颗粒膜结构。总结了颗粒在界面的状态及颗粒膜结构的影响因素,并从能量及力学角度进行分析。颗粒膜对乳状液稳定性影响机制主要体现在颗粒膜的结构及界面黏弹性:颗粒膜的结构阻隔液滴之间的碰撞聚并,这是乳状液稳定的基础;同时,颗粒膜通过改变界面黏弹性使得液滴在运动、碰撞、絮凝时不会轻易崩溃,从而强化了乳状液的稳定性。固体颗粒为乳化剂形成颗粒膜稳定乳状液的机制探究为稳定乳状液制备以及乳状液的破乳提供理论依据,具有现实意义。最后,本文就颗粒膜稳定乳状液的机制研究展望了其未来发展方向及可能的解决途径。  相似文献   

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