Department of Chemical Sciences, Indian Institute of Science Education and Research, Kolkata, Mohanpur 741246, India.
Centre for Advanced Functional Materials, Indian Institute of Science Education and Research, Kolkata, Mohanpur 741246, India.
J Am Chem Soc. 2023 Jul 5;145(26):14475-14483. doi: 10.1021/jacs.3c03831. Epub 2023 Jun 20.
Few-layer organic nanosheets are becoming increasingly attractive as two-dimensional (2D) materials due to their precise atomic connectivity and tailor-made pores. However, most strategies for synthesizing nanosheets rely on surface-assisted methods or top-down exfoliation of stacked materials. A bottom-up approach with well-designed building blocks would be the convenient pathway to achieve the bulk-scale synthesis of 2D nanosheets with uniform size and crystallinity. Herein, we have synthesized crystalline covalent organic framework nanosheets (CONs) by reacting tetratopic thianthrene tetraaldehyde (THT) and aliphatic diamines. The bent geometry of thianthrene in THT retards the out-of-plane stacking, while the flexible diamines introduce dynamic characteristics into the framework, facilitating nanosheet formation. Successful isoreticulation with five diamines with two to six carbon chain lengths generalizes the design strategy. Microscopic imaging reveals that the odd and even diamine-based CONs transmute to different nanostructures, such as nanotubes and hollow spheres. The single-crystal X-ray diffraction structure of repeating units indicates that the odd-even linker units of diamines introduce irregular-regular curvature in the backbone, aiding such dimensionality conversion. Theoretical calculations shed more light on nanosheet stacking and rolling behavior with respect to the odd-even effects.
少层有机纳米片因其精确的原子连接和定制的孔而成为二维(2D)材料越来越受欢迎。然而,大多数合成纳米片的策略依赖于表面辅助方法或堆叠材料的自上而下的剥落。具有精心设计的构建块的自下而上的方法将是实现具有均匀尺寸和结晶度的 2D 纳米片的大规模合成的便捷途径。在这里,我们通过反应四官能团噻蒽四醛(THT)和脂肪族二胺合成了结晶共价有机骨架纳米片(CONs)。THT 中噻蒽的弯曲几何形状阻碍了面外堆积,而柔性二胺则为框架引入了动态特性,有利于纳米片的形成。与具有 2 至 6 个碳原子链长的五种二胺的成功等规化概括了设计策略。微观成像显示,基于奇数和偶数二胺的 CONs 转变成不同的纳米结构,如纳米管和空心球。重复单元的单晶 X 射线衍射结构表明,二胺的奇偶链接单元在骨架中引入了不规则-规则曲率,有助于这种维度转换。理论计算更深入地研究了纳米片堆积和滚动行为的奇偶效应。