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1.
多烷基苯磺酸钠水溶液的表面性质   总被引:8,自引:0,他引:8  
研究了多烷基苯磺酸钠的结构, 特别是侧链碳原子数的增加, 对其表面活性的影响, 并与其它烷基苯磺酸钠进行了比较. 结果表明, 随着苯环上侧链碳原子数的增加, 多烷基苯磺酸钠的临界胶束浓度(cmc)降低, 但侧链上CH2降低cmc的程度远小于主链上CH2的作用. 当侧链碳原子数增加时, 多烷基苯磺酸钠的饱和吸附量(Γmax)降低, 表现出与主链不同的变化规律. 从多烷基苯磺酸钠的结构解释了cmc和Γmax的变化规律.  相似文献   

2.
合成了4种高纯度十五烷基间二甲苯磺酸钠,测定了在纯水溶液和0.039 3 mol/L异丙醇溶液中的表面性质. 结果表明,随芳基向碳链中间位置的移动,临界胶束浓度(cmc)增大,分子极限占有面积(Amin)增大,标准吸附自由能(ΔG0)变得更负,降低表面张力的效率(pc20)增强,饱和吸附量(Γmax)降低,临界胶束浓度时的表面张力(γcmc)降低,异丙醇使磺酸钠溶液的cmc显著降低. 从分子结构的特点探讨了分子中脂肪链支化程度对其表面性能的影响.  相似文献   

3.
以芘为荧光探针、二苯酮为猝灭剂,用稳态荧光探针法测定了合成的4种带干扰基(磺酸基邻位的短链烷基)的支链烷基苯磺酸钠的临界胶团浓度、合适猝灭剂浓度下的胶团聚集数以及在不同浓度氯化钠水溶液中的胶团聚集数.结果表明,支链烷基苯磺酸钠分子中长链烷基碳数增加,临界胶团浓度大幅度降低,胶团聚集数减小;分子中短链烷基碳数增加,临界胶团浓度降低幅度小,胶团聚集数增大;胶团聚集数随氯化钠浓度增大而增大.  相似文献   

4.
于涛  史雷城  丁伟  曲广淼  栾和鑫  刘小军 《应用化学》2012,29(11):1302-1308
合成了3种具有不同疏水基团的新型磺基甜菜碱两性表面活性剂,通过红外光谱对它们的结构进行了表征。 用滴体积法测定表面活性剂水溶液在25 ℃下的表面张力,从而确定其临界胶束浓度(cmc)及临界胶束浓度下的表面张力(γcmc);采用罗氏泡沫仪考察了浓度、温度对其泡沫性能的影响;采用分水时间法考察了其乳化性能。 结果表明,随着芳环在烷基链中的体积增大,cmc以及γcmc增大,饱和吸附面积Amin增大,而饱和吸附量Γmax减小。 3种表面活性剂的起泡性随浓度增大而增加,到一定值后趋于稳定;泡沫稳定性随浓度增大逐渐增强;起泡性随着温度的升高而显著增加,泡沫稳定性随温度升高而显著降低。 3种表面活性剂的乳化能力随浓度增大而逐渐增强然后趋于稳定。  相似文献   

5.
本文合成了3个氨基酸型表面活性剂:十二烷基甘氨酸钠(C12GlyNa)、十二烷基氨基丙二酸钠(C12MalNa2)和十二烷基谷氨酸钠(C12GluNa2),用表面张力法、荧光探针法及接触角测量,研究了它们的分子结构对表面活性、自聚集行为以及对方解石润湿性能的影响。结果表明,当增加一个羧基后,氨基酸型表面活性剂的临界胶团浓度(cmc)和最低表面张力(γ_(cmc))增大,饱和吸附量(Г_(max))和胶团聚集数减小,降低表面张力的效率(pC_(20))降低,但在方解石表面的接触角变化较小。与C12MalNa2相比,在两个羧基之间增加一个亚甲基的C12GluNa2,其最低表面张力(γ_(cmc))变化很小,但cmc和Г_(max)更小,A_(min)更大,在方解石表面的最大接触角增大,对方解石的润湿性能降低。  相似文献   

6.
朱瑶  王薇 《化学学报》1988,46(5):413-418
研究了全氟辛酸钠与溴化十四烷基三甲铵混合水溶液的表面活性. 测定了不同比例混合物水溶液的表面张力-浓度曲线, 得出临界胶团浓度(cmc)及监 界胶团浓度时的溶液表面张力(γcmc)值. 应用Gibbs吸附公式及吸附层中两表面活性剂分子相互作用参数法求出表面总吸附量、吸附层组成及两表面活性剂分别吸附量等. 指示此吸附层具有多分子层性质. 这可能是碳氢、碳氟正负离子混合体系的特点.  相似文献   

7.
十五烷基芳基磺酸钠溶液表面性质的影响因素研究   总被引:1,自引:0,他引:1  
测定了自制的四种高纯度十五烷基间二甲苯磺酸钠在纯水溶液和0.0393 mol/L异丙醇溶液中的表面性质,结果表明,随芳基向碳链中间位置的移动,临界胶束浓度cmc增大,分子极限占有面积Amin增大,标准吸附自由能 变得更负,降低表面张力的效率pc20增强,饱和吸附量Γmax降低,临界胶束浓度时的表面张力γcmc降低;且异丙醇的加入使磺酸钠溶液的临界胶束浓度显著降低。从分子结构的特点探讨了分子支化程度对表面性能的影响。  相似文献   

8.
通过全氟壬烯氧基苯磺酸钠(C9F17OC6H4SO3Na,OBS)与四丁基溴化铵(TBAB)的复配,研究了OBS与TBAB复配体系的表面性能和润湿性能。在不同摩尔比下碳氟表面活性剂与季铵盐复配体系的临界胶束浓度(cmc)、最低表面张力(γcmc)、复配体系的总饱和吸附量(Γtm)和极限分子面积(Amin)的研究结果表明,在最佳等摩尔比时,体系的cmc和γcmc被降到最低,获得了最大总饱和吸附量(Γtm)(5.27 mol.cm-2)和最小的极限分子面积(Amin)(0.32 nm2),使其在水溶液中的表面性能增强。同时等摩尔比的复配体系,在大于0.10mmol.L-1的浓度区复配体系接触角较小,显示比较好的润湿性。  相似文献   

9.
Gemini 阴离子表面活性剂水溶液的聚集性质   总被引:2,自引:0,他引:2  
朱森  程发  郑宝江  于九皋 《物理化学学报》2004,20(10):1245-1248
合成了一种Gemini阴离子表面活性剂,测定了其临界胶束浓度cmc和cmc时的表面张力γcmc,与传统的单基表面活性剂相比,其临界胶束浓度降低了一个数量级,具有突出的降低水的表面张力的效率;研究了该种Gemini表面活性剂的浓度对于胶束聚集数的影响,结果表明,随着浓度的增加,胶束聚集数出现了一个极大值,同时观察到液晶微相的生成.  相似文献   

10.
利用座滴法研究了支链化阳离子表面活性剂十六烷基羟丙基氯化铵(C16GPC)和两性离子表面活性剂十六烷基羧酸甜菜碱(C16GPB)在聚四氟乙烯(PTFE)表面上的吸附机制和润湿性质, 考察了表面活性剂浓度对表面张力、接触角、粘附张力、固液界面张力和粘附功的影响趋势. 研究发现, 低浓度条件下, 表面活性剂疏水支链的多个亚甲基基团与PTFE表面发生相互作用, 分子以平躺的方式吸附到固体界面; 支链化表面活性剂形成胶束的阻碍较大, 浓度大于临界胶束浓度(cmc)时, C16GPC和C16GPB分子在固液界面上继续吸附, 与PTFE作用的亚甲基基团减少, 分子逐渐直立, 固液界面自由能(γsl)明显降低. 对于支链化的阳离子和甜菜碱分子, 接触角均在浓度高于cmc后大幅度降低.  相似文献   

11.
以2,2-双(溴甲基)-1,3-丙二醇为连接基合成了新型的连接基为枝状的Gemini咪唑表面活性剂2,4-二(溴化-3-烷基咪唑)-1,3-丙二醇([Cn-P-Cnim]Br2,n=10,12,14).产物经核磁共振氢谱(1H NMR)、红外(IR)光谱和元素分析等进行了分析,证明所得产物即为目标产物.通过表面张力法和电导法测量其表面活性并计算胶束形成热力学参数(ΔG m—0,ΔH m—0,ΔS m—0).结果表明,25℃时3种表面活性剂均具有很高的表面活性,胶束的形成是自发的熵驱动过程.  相似文献   

12.
以N,N-二甲基-1,3-丙二胺、固体光气、溴代烷为原料合成了三种新型含脲基双子表面活性剂(LY-12、LY-14、LY-16),并通过1H NMR、ESI-MS和FT-IR表征了结构。测定了其Krafft点、乳化性能、起泡性能;通过测定表面张力γcmc以及不同温度下的临界胶束浓度(CMC)计算表面活性参数(Γmax、Amin、pc20)与热力学参数(ΔGmθ、ΔHmθ、ΔSmθ)。结果表明,LY-12、LY-14的Krafft点低于0℃,LY-16的Krafft点低于10℃;LY-12、LY-14、LY-16的乳化时间分别为173、275和338 s;LY-12的起泡性显著优于LY-14和LY-16;三种表面活性剂的表面张力γcmc分别为38. 77、37. 42和36. 59 m N/m;298. 15K条件下,其CMC值分别为0. 19、0. 15、0. 13 mmol/L。表面活性参数与热力学参数计算表明,三种表面活性剂均具有高的表面活性且胶束的形成是熵驱动的自发放热过程。  相似文献   

13.
Two sodium branched‐alkylbenzensulfonates with additional alkyl substituents were synthesized through a series of reactions. The interfacial tension of these alkylbenzenesulfonates between 1.0% NaCl solution and six n‐alkanes were measured. From the data of measurements the following values were calculated: critical micelle concentration (cmc), the interfacial tension at the cmc (γcmc), interfacial excess concentration at the cmc (Γm), area per molecule at the cmc (Am). There were a minimum γcmc and a maximum Γm appeared for the same n‐alkane with increasing the hydrocarbon chain length of the oil. These indicated that the hydrocarbon chain length of oil have the important effect on adsorption and interfacial tension.  相似文献   

14.
The aggregation behaviors of branched block polyether Tetronic 1107 (T1107) at an air/liquid surface was investigated in mixed solvents consisting of water and one of the following polar cosolvents: ethanol, n-propanol, ethylene glycol (EG), or glycerol (GLY). Surface tension measurements provide information about the effects of cosolvents on the critical micellization concentration (cmc), the standard Gibbs energy (ΔG°(mic)), the maximum surface excess concentration (Γ(max)), the minimum area per polyether molecule at the air/liquid surface (A(min)), and the standard free energy of adsorption (ΔG°(ads)). The addition of ethanol and n-propanol to water disfavors the micellization and progressively increases the cmc of T1107, whereas the cmc decreases with the addition of EG and GLY. The values of ΔG°(mic) of T1107 are all negative in mixed solvents, and their absolute values become smaller as the ethanol or n-propanol content increases but become larger as the EG or GLY content increases. The cosolvents have a significant effect on the surface adsorption and cmc, and the order is as follows: n-propanol-water > ethanol-water > water > EG-water > GLY-water. The octanol/water partition coefficient (log P) of the cosolvent is used to correlate the effects, and it could capture the effect of cosolvents on the cmc qualitatively. The surface dilational rheological properties of T1107 in water and water-alcohol mixtures were also studied by surface dilational viscoelasticity and surface tension relaxation measurements. The dilational elasticity decreases monotonously in the presence of ethanol or n-propanol. With the increasing concentration of EG and GLY, the dilational elasticity of T1107 passes through a maximum that coincides with the change in Γ(max).  相似文献   

15.
A series of ionic liquid-type Gemini imidazolium surfactants with four-methylene spacer groups were synthesized ([C(n)-4-C(n)im]Br(2), n=10, 12, 14). The surface activity and thermodynamic properties of micellization between the Gemini imidazolium surfactants and their corresponding monomers ([C(n)mim]Br, n=10, 12, 14) were compared by means of surface tension and electrical conductivity measurements. The values of cmc, gamma(cmc), pc(20), Gamma(max), and A(min) derived from surface tension measurement at 25 degrees C suggest that the surface activity of [C(n)-4-C(n)im]Br(2) is higher than that of [C(n)mim]Br. While the thermodynamic parameters of micellization (DeltaG(m)(o), DeltaH(m)(o), DeltaS(m)(o)) derived from electrical conductivity indicate that the micellization of [C(n)-4-C(n)im]Br(2) is entropy-driven, aggregation of [C(n)mim]Br is entropy-driven at low temperature but enthalpy-driven at high temperature. Finally, the activation energy of conductance (E(a)) that is associated with the effective charge is also obtained for [C(n)-4-C(n)im]Br(2) and it is constant below the cmc, but it increases above the cmc.  相似文献   

16.
17.
Novel Brönsted acid-surfactants with different alkyl chains were synthesized via a two-step process, and their surface properties were studied. The critical micelle concentration(cmc), surface tension at the cmc(γcmc), and ability of these compounds to lower the surface tension by 0.02 N/m(C20 and pC20) were investigated at 25 and 40℃. The molecular architecture of the compounds strongly influenced these physicochemical parameters. The ability of these compounds to lower surface tension was found to be good. Etherification in microemulsions formed by these surfactants as well as dodecylbenzenesulfonic acid(DBSA) was performed; surfactants 3a and 3b were found to be much more efficient than dodecylbenzenesulfonic acid(DBSA).  相似文献   

18.
本文制备了一种含有偶氮苯基团的阴离子表面活性剂,其表面活性及对方解石矿物的润湿性能,可以用紫外光照射进行调控。在紫外光照射后,表面活性剂的临界胶束浓度(cmc)、最低表面张力(γcmc)、分子极限占有面积(Amin)增大,饱和吸附量(Гmax)和降低表面张力的效率(pC20)降低,对方解石的润湿能力增强。  相似文献   

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