基于白金的宿主-客人协调驱动的超分子协同组装,辅助Pt·Pt和π-π堆叠相互作用:二重选择性光传感器
Yip-Sang Wong1, Maggie Ng1, Margaret Ching-Lam Yeung1
1Institute of Molecular Functional Materials, State Key Laboratory of Synthetic Chemistry and Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, People's Republic of China.
Journal of the American Chemical Society
|January 6, 2021
概括
一个新的复合体作为一个双探针, 检测离子和酸盐离子. 这导致了独特的纳米纤维的形成,
科学领域:
- 超分子化学
- 协调化学
- 材料科学
背景情况:
- 对离子检测的选择性探测器的开发对于化学和生物传感至关重要.
- 含有二甲基 (DPA) 的特皮里丁复合物具有传感应用的潜力.
- 超分子自组可以导致像纳米纤维这样的新功能材料.
研究的目的:
- 合成和表征一个含有基的酸复合物.
- 调查复合物的能力作为一个双选择性探测器的阳离子和离子.
- 探索金属结合体的自我组装行为及其创造超分子架构的潜力.
主要方法:
- (II) 复合物的合成和描述.
- 用于监测结合事件的光谱研究 (紫外线吸收,辐射).
- 用于结构阐明的光谱学研究 (HR-ESI质谱学,NMR).
- 分子建模和粉末X射线衍射 (PXRD) 用于结构分析和相位识别.
主要成果:
- 合成的复合物选择性地与离子 (Zn2+) 结合.
- 结合体识别了酸 (PPi) 离子,作为二次识别事件.
- 酸盐连接了两个结合的复合体,从而形成了状结构.
- 这些结构通过Pt-Pt和π-π堆叠相互作用进一步寡合,形成六角柱状纳米纤维.
结论:
- 一个多功能 (II) 复合体作为Zn2+和PPi的双选择性探针.
- 识别事件触发了具有六角柱状相的纳米纤维的自我组装.
- 这项研究突出了这种复杂物在构建复杂的超分子架构的潜力.
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