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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Self-Assembly of Crystalline Films of Interdigitated Long-Chain Cholesteryl Esters at the Air-Water Interface
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Self-Assembly of Crystalline Films of Interdigitated Long-Chain Cholesteryl Esters at the Air-Water Interface

机译:指状长链胆固醇酯在空气-水界面处的晶体膜自组装

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Cholesterol and some cholesterol-like derivatives such as stigma-sterol and cholesterol acetate self-assemble into semicrystalline monolayers, bilayers, or trilayers on the surface of water, as has been reported previously here we have extended our thin film studies toward cholesteryl esters that, in their bulk crystals, pack as interdigitated bilayers due to the mismatch between the cross-sectional area of the rigid cholesterol moiety (40 A~2) and the attached hydrocarbon chain (20 A~2). As shown by grazing incidence X-ray diffraction (GIXD), cholesteryl esters spontaneously self-assemble on the surface of water in order to form interdigitated bilayer films. The unit cell parameters of such bilayers at the water surface almost match thsoe of their three-dimensional counterparts. Other experiments such as surface pressure vs area per molecule isotherms and ellipsometry measurements corroborate this result. To control the growth of the interdigitated films, we have used "tailor-made" additives (long-chain alcohols or acids) that fill the voids in the chain region of the cholesteryl ester layer caused by the structural mismatch, thereby inhibiting interdigitation. Using this strategy, we were able to form a mixed monolayer composed of the ester and the additive molecules in a 1:1 ratio, where the hydrocarbon chain of additive molecule intercalates between the ester chains and effectively inhibits the growth of the interdigitated bilayer.
机译:胆固醇和一些类胆固醇的衍生物(例如柱头固醇和乙酸胆固醇)会自组装成水表面的半结晶单层,双层或三层,正如我们先前报道的那样,我们将薄膜研究扩展到了胆固醇酯,在它们的块状晶体中,由于硬质胆固醇部分(40 A〜2)的横截面积和所连接的烃链(20 A〜2)的不匹配而堆积成相互交叉的双层。如掠入射X射线衍射(GIXD)所示,胆固醇酯自发地在水表面自组装,从而形成相互交叉的双层膜。这样的双层在水表面的晶胞参数几乎与它们的三维对应物相匹配。其他实验,例如表面压力与每分子等温线的面积以及椭圆偏光法测量,也证实了这一结果。为了控制叉指膜的生长,我们使用了“量身定制的”添加剂(长链醇或酸),这些添加剂填充由于结构失配而导致的胆固醇酯层的链区域中的空隙,从而抑制了叉指。使用这种策略,我们能够形成由酯和添加剂分子按1:1比例组成的混合单层,其中添加剂分子的烃链插入酯链之间,并有效地抑制了相互交叉的双层的生长。

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