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Structural evolution of imine-linked covalent organic frameworks and their NH3 sensing performance

机译:亚胺连接的共价有机框架的结构演变及其NH3感应性能

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A series of imine-linked covalent organic frameworks (COF) are constructed under Sc(OTf)(3) catalysis in a 1,4-dioxane/mesitylene mixture. The amount of Sc(OTf)(3) catalyst strongly affects the structure of the as-synthesized COFs. When 0.005 equivalent Sc(OTf)(3) is used, a crystalline COF with uniform micropores and high surface area is obtained. The as-synthesized COF evolves to a disordered structure with increase in the catalyst amount. Several imine-linked COFs show NH3 sensing ability at room temperature, and the NH3 sensing performance is strongly dependent on their electric conductivity. The imine-linked COF with a disordered structure has better electric conductivity than the crystalline imine-linked COF. The NH3 sensing ability of the imine-linked COF with a disordered structure is far better than that of the imine-linked COF with a crystalline structure. The excellent NH3 sensing ability, including a short response time, large response value and high sensing selectivity, as well as lower sensor baseline resistance were observed on the imine-linked COF with a disordered structure. The imine linkage was recognized as the active site for NH3 adsorption on the imine-linked COF. Both density functional theory (DFT) calculations and an in situ UV-Vis spectra experiment confirm a hydrogen bond formation between NH3 and imine linkage during the NH3 sensing process.
机译:在Sc(OTf)(3)催化下,在1,4-二氧六环/均三甲苯混合物中构建了一系列亚胺连接的共价有机框架(COF)。Sc(OTf)(3)催化剂的用量对合成的COFs的结构有很大影响。当使用0.005当量Sc(OTf)(3)时,可获得具有均匀微孔和高比表面积的结晶COF。随着催化剂用量的增加,合成的COF逐渐演化为无序结构。几种亚胺连接的COF在室温下表现出NH3传感能力,NH3传感性能强烈依赖于它们的导电性。无序结构的亚胺连接COF比结晶亚胺连接COF具有更好的导电性。无序结构的亚胺连接COF对NH3的感知能力远远优于晶体结构的亚胺连接COF。在结构无序的亚胺连接COF上观察到了优异的NH3传感能力,包括短响应时间、大响应值和高传感选择性,以及较低的传感器基线电阻。亚胺键被认为是氨在亚胺键COF上吸附的活性位点。密度泛函理论(DFT)计算和原位紫外-可见光谱实验都证实了在NH3传感过程中NH3和亚胺键之间形成氢键。

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