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Structure- and solvent-triggered influences in the self-assembly of polyoxometalate-steroid conjugates

机译:结构和溶剂触发的影响多金属氧酸盐-类固醇共轭物的自组装

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摘要

We report that supramolecular structures formed by polyoxometalate-steroid conjugates in a self-assembly process can be greatly influenced by molecular structures and solution components. Specifically, we deliberately selected three steroids (e.g. cholic acid, dehydrocholic acid, cholesterol) and an organically modified Anderson-type POM cluster to construct conjugates with the molecular structure of steroid-POM-steroid, then carried out careful research on their supramolecular self-assembly in toluene-DMF, CH2Cl2-CH3OH and acetone, respectively. Upon investigation of the TEM and AFM characterizations, we found that the three POM-steroid conjugates displayed unexpectedly different supramolecular structures in the self-assembly process, and only the POM-Chol conjugate could fabricate well-defined fibrous structures in different solutions. Based on the TEM, AFM, FT-IR and XRD characterizations and discussion, a mechanism of the hierarchical self-assembly process of the POM-cholesterol conjugate was also proposed. Moreover, we explained on a molecular level why the morphologies of the POM-Chol conjugate in different solvents were better than those of the POM-Ca conjugate and POM-Dhca conjugate.
机译:我们报道由多金属氧酸盐-类固醇共轭物在自组装过程中形成的超分子结构可能会受到分子结构和溶液成分的极大影响。具体来说,我们特意选择了三种类固醇(例如胆酸,脱氢胆酸,胆固醇)和有机修饰的安德森型POM簇,以构建具有类固醇-POM-类固醇分子结构的结合物,然后对其超分子自发性进行了仔细研究。分别在甲苯-DMF,CH2Cl2-CH3OH和丙酮中组装。通过对TEM和AFM表征的研究,我们发现三种POM-类固醇共轭物在自组装过程中显示出意想不到的超分子结构,只有POM-Chol共轭物可以在不同的溶液中制备明确的纤维结构。在对TEM,AFM,FT-IR和XRD进行表征和讨论的基础上,提出了POM-胆固醇共轭体系自组装过程的机理。此外,我们在分子水平上解释了为什么在不同溶剂中POM-Chol共轭物的形态优于POM-Ca共轭物和POM-Dhca共轭物的形态。

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  • 来源
    《RSC Advances》 |2016年第71期|共7页
  • 作者

    Yang Hai-Kuan;

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  • 正文语种 eng
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