堆叠交互驱动基于Pyrene的M(II) 4L6架构的选择性自组和自排序
Tanya K Ronson1, Derrick A Roberts1, Samuel P Black1
1Department of Chemistry, University of Cambridge , Lensfield Road, Cambridge, CB2 1EW, U.K.
Journal of the American Chemical Society
|October 29, 2015
概括
研究人员使用基于pyrene的配体和金属离子探索金属有机自组. 他们发现了新的超分子结构,
科学领域:
- 协调化学
- 超分子化学
- 材料科学
背景情况:
- 金属有机自组提供了复杂架构的途径.
- 基于Pyrene的配体提供独特的光物理和结构性质.
- 通过连接体设计控制组装对于功能性材料至关重要.
研究的目的:
- 研究与金属离子的异构二3-氨基烯的自组合.
- 探索新型超分子结构的形成及其结合能力.
- 了解连接体结构和供体-受体相互作用在选择性自我组装中的作用.
主要方法:
- 使用基二胺,二甲和Fe (II),Co (II),Zn (II) 离子进行子组件自组装.
- 用X射线结晶学来确定产生的组件的结构.
- 用于评估M(II) 2L2框的选择性.
- 对同质和异质组件的比较研究.
主要成果:
- 形成两种新的M(II) 4L6组合,具有不同的协调模式 (南部和面部).
- 通过pi堆叠选择性结合缺电子客体的M(II) 2L2盒子的发现.
- 在热力学上有利于选择性的M(II) 4L4L'2架构的自组装.
- 使用基于pyrene的异构胺对自恋的自我分类的观察.
结论:
- 连接器中的元连接方便了pi-stacking用于客体识别和组合控制.
- 捐赠者-接受者相互作用驱动了热力学偏好的异构结构的形成.
- 自组装可以精确控制复杂的超分子结构.
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