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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Interfacially synthesized 2D COF thin film photocatalyst: efficient photocatalyst for solar formic acid production from CO2 and fine chemical synthesis dagger
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Interfacially synthesized 2D COF thin film photocatalyst: efficient photocatalyst for solar formic acid production from CO2 and fine chemical synthesis dagger

机译:界面合成的2D COF薄膜光催化剂:高效光催化剂的太阳能甲酸生产来自CO2和精细化学合成匕首

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摘要

The targeted synthesis of an efficient, visible light active, recyclable, freestanding covalent organic framework thin film photocatalyst for multi-faceted photocatalysis is the essence of the proposed work. A simple, scalable, reagent free synthesis of a thin film at the interface of 5,10,15,20-tetra-(4-aminophenyl)porphyrin, 2-vinylbenzene-1,4-dicarbaldehyde in nitrobenzene and aqueous glyoxal affords centimetre sized continuous 2D thin film with substantial stability, flexibility and efficient visible light activity. Strikingly different from the regular imine based COF, the incorporation of the glyoxal unit as a modulator helps in band gap tuning and induces flexibility within the thin film. An interplay between time and concentration helps in achieving a thin film photocatalyst with efficient photocatalytic activity for 1,4-NADH regeneration and selective formic acid formation from CO2. The optimum band edge position of the thin film photocatalyst also enables solar fine chemical synthesis via reductive dehalogenation under visible light illumination with excellent recyclability. The present work gives insight into visible light active thin film formation en route to metal-free sustainable photocatalysis.
机译:针对性地合成一种高效、可见光活性、可回收、独立共价有机骨架薄膜光催化剂,用于多面光催化是拟议工作的核心。在硝基苯和乙二醛水溶液中,在5,10,15,20-四-(4-氨基苯基)卟啉、2-乙烯基苯-1,4-二氨基醛的界面上简单、可伸缩、无试剂地合成薄膜,可提供厘米大小的连续2D薄膜,具有实质性的稳定性、灵活性和有效的可见光活性。与常规的基于亚胺的COF显著不同的是,将乙二醛单元作为调制器的结合有助于带隙调谐,并在薄膜内诱导灵活性。时间和浓度之间的相互作用有助于获得具有高效光催化活性的薄膜光催化剂,用于1,4-NADH再生和从CO2选择性生成甲酸。薄膜光催化剂的最佳带边位置还可以通过可见光照明下的还原脱卤实现太阳能精细化学合成,具有良好的可回收性。目前的工作为无金属可持续光催化过程中可见光活性薄膜的形成提供了见解。

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    Korea Res Inst Chem Technol KRICT Articial Photosynth Res Grp 100 Jang Dong Yuseong 34114 Daejeon South Korea;

    Banaras Hindu Univ Inst Sci Dept Chem Varanasi 221005 Uttar Pradesh India;

    Korea Res Inst Chem Technol KRICT Articial Photosynth Res Grp 100 Jang Dong Yuseong 34114 Daejeon South Korea;

    Korea Res Inst Chem Technol KRICT Articial Photosynth Res Grp 100 Jang Dong Yuseong 34114 Daejeon South Korea;

    Korea Res Inst Chem Technol KRICT Articial Photosynth Res Grp 100 Jang Dong Yuseong 34114 Daejeon South Korea;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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