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基于阳离子囊泡和环状[Mo154]多氧钼酸盐纳米簇的坚固核壳超分子组装体:模板导向合成与表征

Robust core-shell supramolecular assemblies based on cationic vesicles and ring-shaped [Mo154] polyoxomolybdate nanoclusters: template-directed synthesis and characterizations.

作者信息

Jin Yongdong, Bi Lihua, Shao Yong, Dong Shaojun

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences Changchun 130022, Jilin, P. R. China.

出版信息

Chemistry. 2004 Jul 5;10(13):3225-31. doi: 10.1002/chem.200305489.

DOI:10.1002/chem.200305489
PMID:15224331
Abstract

Substantial progress has been made recently in extending the supramolecular assembly of biomimetic structures to vesicle-based sophisticated nanocomposites and mesostructures. We report herein the successful preparation of unilamellar surfactant vesicles coated with a monolayer of ring-shaped [Mo(154)] polyoxometalate (POM) nanoclusters, (NH(4))(28)[Mo(154)(NO)(14)O(448)H(14)(H(2)O)(70)]. approximately 350 H(2)O, by coulomb attractions using preformed didodecyldimethylammonium bromide (DDAB) surfactant vesicles as templates. The resultant vesicle-templated supramolecular assemblies are robust (they do not disintegrate upon dehydration) both at room-temperature ambient and vacuum conditions, as characterized by conventional transmission electron microscopy (TEM) and atomic force microscopy (AFM). The flexibility of the complex soft assemblies was also revealed by AFM measurements. The effect of POM-vesicle coulomb attractions on the dimensions of the templating vesicles was also investigated by using dynamic light scattering (DLS). Although origins of the structure stability of the as-prepared supramolecular assemblies are not clear yet, the nanometer scale cavities and the related properties of macroions of the POM clusters may play an important role in it.

摘要

最近在将仿生结构的超分子组装扩展到基于囊泡的复杂纳米复合材料和介观结构方面取得了重大进展。我们在此报告成功制备了单层表面活性剂囊泡,其表面包覆有一层环状[Mo(154)]多金属氧酸盐(POM)纳米簇,即(NH(4))(28)[Mo(154)(NO)(14)O(448)H(14)(H(2)O)(70)]·约350H(2)O,通过使用预先形成的十二烷基二甲基溴化铵(DDAB)表面活性剂囊泡作为模板,利用库仑吸引力实现。所得的囊泡模板超分子组装体在室温环境和真空条件下都很稳定(脱水时不会解体),这通过传统透射电子显微镜(TEM)和原子力显微镜(AFM)进行了表征。AFM测量还揭示了复杂软组装体的柔韧性。还通过动态光散射(DLS)研究了POM - 囊泡库仑吸引力对模板囊泡尺寸的影响。尽管所制备的超分子组装体结构稳定性的起源尚不清楚,但POM簇的纳米级空腔和相关的大离子性质可能在其中起重要作用。

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