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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Supramolecular assemblies of a new series of gemini-type Schiff base amphiphiles at the air/water interface: In situ coordination, interfacial nanoarchitectures, and spacer effect
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Supramolecular assemblies of a new series of gemini-type Schiff base amphiphiles at the air/water interface: In situ coordination, interfacial nanoarchitectures, and spacer effect

机译:一系列双子座型席夫碱两亲物在空气/水界面的超分子组装:原位配位,界面纳米结构和间隔效应

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摘要

Great interest has been devoted to the gemini amphiphiles because of their unique properties. In this article, we report some interesting properties of the interfacial films formed by a series of newly designed gemini amphiphiles containing the Schiff base moiety. This novel series of gemini amphiphiles with their Schiff base headgroups linked by a hydrophobic alkyl spacer (BisSBC18Cn, n = 2, 4, 6, 8, 10) could be spread to form stable monolayers and coordinated with Cu(Ac)(2) in situ in the monolayer. The alkyl spacer in the amphiphiles has a great effect on the regulation of the properties of the Langmuir monolayers. A maximum limiting molecular area was observed for the monolayers of the gemini amphiphile with the spacer length of hexa- or octamethylene groups. Both the monolayers on water and on the aqueous Cu(Ac)(2) subphase were transferred onto solid substrates, and different morphologies were observed for films with different spacers. Nanonail and tapelike morphologies were observed for amphiphile films with shorter spacers (n = 2 and 4) on the water surface. Wormlike morphologies were observed for gemini films with longer spacers of C-8 and C-10 when coordinated with Cu(Ac)(2). An interdigitated layer structure was supposed to form in the multilayer films transferred from water or the aqueous Cu(Ac)(2) subphase.
机译:由于双子座的两亲物具有独特的特性,因此引起了极大的兴趣。在本文中,我们报告了由一系列新设计的包含席夫碱部分的双子双亲物形成的界面膜的一些有趣特性。这种新型的双子座两亲物具有通过疏水性烷基间隔基(BisSBC18Cn,n = 2、4、6、8、10)连接的席夫碱首基,可以分散形成稳定的单分子层并与Cu(Ac)(2)配位单层原位。两亲物中的烷基间隔基对Langmuir单层性质的调节有很大影响。观察到双子两亲物的单层具有六-或八亚甲基基团的间隔物长度的最大极限分子面积。在水上和在含水Cu(Ac)(2)亚相上的单分子层都转移到了固体基质上,并且观察到具有不同间隔物的薄膜具有不同的形貌。对于在水表面具有较短间隔物(n = 2和4)的两亲膜,观察到了纳米指甲和带状形态。当与Cu(Ac)(2)配位时,观察到具有更长间隔C-8和C-10的双子薄膜的蠕虫状形态。从水或含水Cu(Ac)(2)亚相转移的多层膜中应该形成叉指状的层结构。

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