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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Host-Guest Interaction at Molecular Interfaces: Cucurbit[7]uril as a Sensitive Probe of Structural Heterogeneity in Ferrocenyl Self-Assembled Monolayers on Gold
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Host-Guest Interaction at Molecular Interfaces: Cucurbit[7]uril as a Sensitive Probe of Structural Heterogeneity in Ferrocenyl Self-Assembled Monolayers on Gold

机译:分子界面的宿主 - 客户交互:葫芦[7] URIL作为金属茂铁纤维素自组装单层的结构异质性的敏感探针

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Herein, we combine host-guest recognition chemistry and electrochemical analysis to demonstrate that the nanometer-size, supramolecular hosts can be adapted as sensitive probes for structural heterogeneity in organized molecular assemblies on a surface. In particular, we carried out thorough cyclic voltammetric (CV) studies to evaluate the binding of cucurbit[n]uril on mixed ferrocenylundecanethiolate/n-alkanethiolate self-assembled monolayers (SAMs) on gold (FcC11S-/CmS-Au) prepared with different methods (coadsorption vs postassembly exchanges) and with varied diluting n-alkanethiols. On the basis of the distinct CV responses of CB[7]@Fc complex and free Fc on the SAM surfaces, we were able to determine the conversion ratio from Fc to CB[7]@Fc, a direct indication of its overall density and uniformity. We have shown that the FcC11S-/C8S-Au prepared by coadsorption in a binary solution with low mole fraction of FcC11SH (5%) and by exchanging preassembled C8S-Au SAM with FcC11SH for a short time (1 min) has the "ideal" structure with isolated and uniformly distributed Fc groups on the surface. In contrast, with similar Fc surface coverage, the FcC11S-/C8S-Au prepared by exchanging FcC11S-Au with C8SH for a prolonged time (20 h) has clustered and nonuniformly distributed Fc groups at the surface. While consistent with previous observations based on conventional electrochemical or microscopic studies, the present finding expands the capability of host-guest chemistry as a new tool to probe the structures of organized molecular assemblies at the nanometer scale.
机译:在此,我们将宿主访客识别化学和电化学分析结合起来证明纳米尺寸,超分子宿主可以适应表面的结构异质性的敏感探针,该组织的分子组件在表面上的结构异质性。特别地,我们进行了彻底的循环伏安(CV)研究,以评估用不同的金(FCC11S- / CMS-Au)在混合的铁茂金酰氨基甲酰硫酸盐/正己酰胆碱酸甲酯/正己酰胆碱酸酐上的结合(FCC11S-/ CMS-Au)的结合方法(共装载与锻造效率交换)和变化的N-链烷醇。在SAM表面上的CB [7] @FC复合物和游离FC的不同CV响应的基础上,我们能够确定从Fc到CB [7] @FC的转化率,直接指示其整体密度和均匀性。我们已经表明,在二进制溶液中的含有低摩尔加(5%)的二元溶液中的共吸附制备的FCC11S-/ C8S-Au,并且通过使用FCC11SH进行短时间(1分钟)的预先进行的预付C8S-Au Sam具有“理想” “表面的结构在表面上具有分离和均匀分布的Fc组。相反,具有类似的Fc表面覆盖,通过在延长时间(20h)的C8sh与C8SH交换FCC11S-Au制备的FCC11S-/ C8S-Au在表面上具有聚类和非均匀分布的Fc基团。虽然与基于常规电化学或微观研究的先前观察结果一致,但目前发现扩展了宿主学者化学作为探讨了纳米级组织分子组件结构的新工具的能力。

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