Evans Austin M, Ryder Matthew R, Ji Woojung, Strauss Michael J, Corcos Amanda R, Vitaku Edon, Flanders Nathan C, Bisbey Ryan P, Dichtel William R
Northwestern University, Department of Chemistry, 2145 Sheridan Road, Evanston, IL 60208, USA.
Faraday Discuss. 2021 Feb 1;225:226-240. doi: 10.1039/d0fd00054j. Epub 2020 Nov 17.
Two-dimensional covalent organic frameworks (2D COFs) are synthetically diverse, layered macromolecules. Their covalent lattices are thought to confer high thermal stability, which is typically evaluated with thermogravimetric analysis (TGA). However, TGA measures the temperature at which volatile degradation products are formed and is insensitive to changes of the periodic structure of the COF. Here, we study the thermal stability of ten 2D COFs using a combination of variable-temperature X-ray diffraction, TGA, diffuse reflectance infrared spectroscopy, and density functional theory calculations. We find that 2D COFs undergo a general two-step thermal degradation process. At the first degradation temperature, 2D COFs lose their crystallinity without chemical degradation. Then, at higher temperatures, they chemically degrade into volatile byproducts. Several trends emerge from this exploration of 2D COF stability. Boronate ester-linked COFs are generally more thermally stable than comparable imine-linked COFs. Smaller crystalline lattices are more robust to thermal degradation than chemically similar larger lattices. Finally, pore-functionalized COFs degrade at significantly lower temperatures than their unfunctionalized analogues. These trends offer design criteria for thermally resilient 2D COF materials. These findings will inform and encourage a broader exploration of mechanical deformation in 2D networks, providing a necessary step towards their practical use.
二维共价有机框架(2D COF)是具有多样合成方式的层状大分子。人们认为它们的共价晶格赋予了高热稳定性,通常通过热重分析(TGA)来评估。然而,TGA测量的是形成挥发性降解产物的温度,对COF周期性结构的变化不敏感。在这里,我们结合变温X射线衍射、TGA、漫反射红外光谱和密度泛函理论计算,研究了十种2D COF的热稳定性。我们发现2D COF经历一个普遍的两步热降解过程。在第一个降解温度下,2D COF失去结晶度但没有化学降解。然后,在更高温度下,它们化学降解为挥发性副产物。通过对2D COF稳定性的探索出现了几个趋势。硼酸酯连接的COF通常比类似的亚胺连接的COF热稳定性更高。较小的晶格比较化学性质相似的较大晶格对热降解更具抗性。最后,孔功能化的COF在比其未功能化类似物低得多的温度下降解。这些趋势为热弹性2D COF材料提供了设计标准。这些发现将为二维网络中的机械变形提供更广泛的探索依据并起到推动作用,为其实际应用迈出必要的一步。