首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface and aggregation behavior of aqueous solutions of Ru(II) metallosurfactants: 4. Effect of chain number and orientation on the aggregation of [Ru(bipy)(2)(bipy ']Cl-2 complexes
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Surface and aggregation behavior of aqueous solutions of Ru(II) metallosurfactants: 4. Effect of chain number and orientation on the aggregation of [Ru(bipy)(2)(bipy ']Cl-2 complexes

机译:Ru(II)金属表面活性剂水溶液的表面和聚集行为:4.链数和取向对[Ru(bipy)(2)(bipy'] Cl-2配合物聚集的影响

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The structure of aggregates formed by eight surfactant [Ru(biPY)(2)(p,p'-dialkyl-2,2'-bipy)]Cl-2 complexes - which we express as (RuqCn)-C-p, where n (=12 or 19) is the alkyl chain length, p (=4 or 5) refers to the substitution position on the bipyridine ligand, and q (=1 or 2) is the number of substituted alkyl chains-in aqueous solutions has been examined using small-angle neutron scattering for a range of concentrations close to the critical micelle concentration and for several combinations of n, p, and q. A number of general results emerge. The double-chain surfactants possess a smaller headgroup charge but a larger aggregate size than their single-chain analogues. Over the concentration range studied, the micelles of the single-chain surfactants grow as the concentration is increased, whereas for the double-chain systems, the aggregate size remains unchanged. For both single- and double-chain surfactants, an increase in alkyl chain length is accompanied by an expected increase in aggregate size and an increase in average headgroup charge. The aggregates formed in solutions of resolved double-chain complexes are larger than those found in solutions of racemic mixtures. The (Ru1C12)-C-4 and (Ru1C12)-C-5 systems form aggregates with high water content. Variation of the substitution position for the single-chain surfactants produces dramatic changes in the structure of the micelles. The aggregates formed in solutions of (Ru1C19)-C-4 and (Ru1C19)-C-5 display particularly different structures. The (Ru1C19)-C-4 system forms essentially spherical aggregates. In contrast, in the (Ru1C19)-C-5 system, wormlike aggregates are formed in which the rigid rodlike sections appear to undergo a transition from a noninterdigitated to an interdigitated structure as the concentration is increased. For double-chain surfactants, the aggregation number for p = 4 surfactants is considerably larger than that for p = 5 surfactants.
机译:由八种表面活性剂[Ru(biPY)(2)(p,p'-二烷基-2,2'-bipy)] Cl-2络合物形成的聚集体结构-我们表示为(RuqCn)-Cp,其中n( = 12或19)是烷基链的长度,p(= 4或5)是指联吡啶配体上的取代位置,q(= 1或2)是在水溶液中被取代的烷基链数在接近临界胶束浓度的浓度范围以及n,p和q的几种组合中使用小角度中子散射。出现了一些总体结果。双链表面活性剂比其单链类似物具有较小的头基电荷,但聚集体尺寸较大。在所研究的浓度范围内,单链表面活性剂的胶束随着浓度的增加而增长,而对于双链体系,聚集体尺寸保持不变。对于单链和双链表面活性剂,烷基链长度的增加伴随着预期的聚集体尺寸的增加和平均头基电荷的增加。在拆分的双链络合物溶液中形成的聚集体比在外消旋混合物溶液中发现的聚集体大。 (Ru1C12)-C-4和(Ru1C12)-C-5系统形成水含量高的聚集体。单链表面活性剂的取代位置的变化在胶束的结构中产生了戏剧性的变化。在(Ru1C19)-C-4和(Ru1C19)-C-5溶液中形成的聚集体显示出特别不同的结构。 (Ru1C19)-C-4系统基本上形成球形聚集体。相反,在(Ru1C19)-C-5系统中,形成蠕虫状聚集体,其中随着浓度的增加,刚性杆状部分似乎经历了从非叉指状结构到叉指状结构的过渡。对于双链表面活性剂,p = 4表面活性剂的聚集数比p = 5表面活性剂的聚集数大得多。

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