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Covalent triazine framework with efficient photocatalytic activity in aqueous and solid media

机译:在水性和固体介质中具有高效光催化活性的共价三嗪框架

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Covalent triazine frameworks(CTFs)have been recently employed for visible light-driven photocatalysis due to their unique optical and electronic properties.However,the usually highly hydrophobic nature of CTFs,which originates from their overall aromatic backbone,leads to limitations of CTFs for applications in aqueous media.In this study,we aim to extend the range of the application media of CTFs and design hybrid material of a CTF and mesoporous silica(SBA-15)for efficient photocatalysis in aqueous medium.A thiophene-containing CTF was directly synthesized in mesopores of SBA-15.Due to the high surface area and the added hydrophilic properties by silica,the hybrid material demonstrated excellent adsorption of organic molecules in water.This leads not only to high photocatalytic performance of the hybrid material for the degradation of organic dyes in water,but also for efficient photocatalysis in solvent-free and solid state.Furthermore,the reusability,stability and easy recovery of the hybrid material offers promising metal-free heterogeneous photocatalyst for broader applications in different reaction media.
机译:最近用于可见光的三嗪框架(CTFS)由于其独特的光学和电子性质,最近用于可见光的光电催化。然而,CTF的通常高度疏水性质,其源于整个芳族骨架,导致CTFS用于应用的局限性在水性介质中。在本研究中,我们的目标是延长CTF和介孔二氧化硅(SBA-15)的CTF和设计杂化材料的施用培养基的范围,以便在水性介质中有效光催化。含噻吩的CTF直接合成在SBA-15的中孔中。通过二氧化硅进入高表面积和添加的亲水性,杂化材料在水中优异地吸附了有机分子的吸附。本质不仅导致杂化材料的高光催化性能,用于有机的降解在水中染料,也用于无溶剂和固态的高效光催化。加热,可重用性,稳定性和容易恢复混合材料提供了有前途的无金属非均相光催化剂,可用于不同反应介质的更广泛应用。

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