Three‐Dimensional Anionic Cyclodextrin‐Based Covalent Organic Frameworks

Yuanyuan Zhang(Beijing Institute of Technology), Jiyun Duan(Beijing Institute of Technology), Dou Ma(Beijing Institute of Technology), Pengfei Li(Beijing Institute of Technology), Siwu Li(Beijing Institute of Technology), Haiwei Li(Beijing Institute of Technology), Junwen Zhou(Beijing Institute of Technology), Xiaojie Ma(Beijing Institute of Technology), Xiao Feng(Beijing Institute of Technology), Bo Wang(Beijing Institute of Technology)
Angewandte Chemie International Edition
November 6, 2017
Cited by 394

Abstract

Abstract Three‐dimensional covalent organic frameworks (3D COFs) are promising crystalline materials with well‐defined structures, high porosity, and low density; however, the limited choice of building blocks and synthetic difficulties have hampered their development. Herein, we used a flexible and aliphatic macrocycle, namely γ‐cyclodextrin (γ‐CD), as the soft struts for the construction of a polymeric and periodic 3D extended network, with the units joined via tetrakis(spiroborate) tetrahedra with various counterions. The inclusion of pliable moieties in the robust open framework endows these CD‐COFs with dynamic features, leading to a prominent Li ion conductivity of up to 2.7 mS cm −1 at 30 °C and excellent long‐term Li ion stripping/plating stability. Exchanging the counterions within the pores can effectively modulate the interactions between the CD‐COF and CO 2 molecules.


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