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Humidity Sensing through Reversible Isomerization of a Covalent Organic Framework

机译:通过共价有机骨架的可逆异构化进行湿度感测

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Here we report that a covalent organic framework (COF), which contains 2,5-di(imine)-substituted 1,4-dihydroxybenzene (diiminol) moieties, undergoes color changes in the presence of solvents or solvent vapor that are rapid, passive, reversible, and easily detectable by the naked eye. A new visible absorption band appears in the presence of polar solvents, especially water, suggesting reversible conversion to another species. This reversibility is attributed to the ability of the diiminol to rapidly tautomerize to an iminol/cis-ketoenamine and its inability to doubly tautomerize to a diketoenamine. Density functional theory (DFT) calculations suggest similar energies for the two tautomers in the presence of water, but the diiminol is much more stable in its absence. Time-dependent DFT calculations confirm that the iminol/cis-ketoenamine absorbs at longer wavelength than the diiminol and indicate that this absorption has significant charge-transfer character. A colorimetric humidity sensing device constructed from an oriented thin film of the COF responded quickly to water vapor and was stable for months. These results suggest that tautomerization-induced electronic structure changes can be exploited in COF platforms to give rapid, reversible sensing in systems that exhibit long-term stability.
机译:在这里我们报告说,含有2,5-二(亚胺)取代的1,4-二羟基苯(二亚氨基)部分的共价有机骨架(COF)在快速或被动的溶剂或溶剂蒸气存在下会发生颜色变化,可逆,并且用肉眼很容易检测到。在极性溶剂(尤其是水)的存在下会出现一个新的可见吸收带,表明可逆地转化为另一种物质。这种可逆性归因于二亚氨基酚快速互变异构成亚氨基/顺式酮烯胺的能力,以及其不能双重互变异构成二酮烯胺的能力。密度泛函理论(DFT)计算表明在水存在下两个互变异构体的能量相似,但是在没有水存在的情况下,二亚氨基醇的稳定性要高得多。随时间变化的DFT计算证实了亚氨基/顺式酮烯胺的吸收波长长于二亚氨基,并表明这种吸收具有显着的电荷转移特性。由COF的定向薄膜构成的比色湿度传感装置对水蒸气反应迅速,并且可以稳定使用数月。这些结果表明,可以在COF平台中利用互变异构诱导的电子结构变化,以在表现出长期稳定性的系统中提供快速,可逆的传感。

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