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具有设计的g-CN纳米片的三维分级海藻衍生碳质网络:4-硝基苯酚光还原的制备及机理探究

Three-Dimensional Hierarchical Seaweed-Derived Carbonaceous Network with Designed g-CN Nanosheets: Preparation and Mechanism Insight for 4-Nitrophenol Photoreduction.

作者信息

Zhao Zhenyu, Wang Xuting, Wang Shifu, Xiao Zuoyi, Zhai Shangru, Ma Jiliang, Dong Xiaoli, Sun Haodong, An Qingda

机构信息

Liaoning Key Lab of Lignocellulose Chemistry and BioMaterials, Liaoning Collaborative Innovation Center for Lignocellulosic Biorefinery, College of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, P. R. China.

State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, P. R. China.

出版信息

Langmuir. 2022 Sep 13;38(36):11054-11067. doi: 10.1021/acs.langmuir.2c01700. Epub 2022 Sep 1.

Abstract

The development of g-CN-based photocatalysts with abundant active sites is of great significance for photocatalytic reactions. Herein, a smart and robust strategy was presented to fabricate three-dimensional (3D) g-CN nanosheet-coated alginate-based hierarchical porous carbon (g-CN@HPC), including coating melamine on calcium alginate (CA) hydrogel beads, freeze-drying hydrogel beads as well as pyrolysis at high temperatures. The resulting photocatalyst possessed a significantly high surface area and a large amount of interconnected macropores compared with porous carbon without the melamine coating. The unique structural features could effectively inhibit the curling and agglomeration of g-CN nanosheets, provide abundant photocatalytic active sites, and promote mass diffusion. Therefore, the g-CN@HPC composite exhibited remarkable photocatalytic activity and outstanding stability toward the photoreduction of 4-nitrophenol (4-NP) to 4-aminophenol (4-AP) by NaBH under natural sunlight and simulated visible-light irradiation (λ > 420 nm) using a 300 W xenon lamp. Moreover, the mechanism toward the photocatalytic reaction was extensively studied by quenching experiments and electron spin resonance (ESR) experiments. The results showed that active hydrogen species were able to be achieved by following a dual-channel pathway in the NaBH system, which included photocatalytic reduction of H ions and photocatalytic oxidation of BH ions. This work not only opens up a new way to design efficient photocatalysts for various reactions but also provides a reference for an in-depth study of the photoreduction mechanism.

摘要

开发具有丰富活性位点的石墨相氮化碳(g-CN)基光催化剂对光催化反应具有重要意义。在此,我们提出了一种巧妙且稳健的策略来制备三维(3D)g-CN纳米片包覆的海藻酸盐基分级多孔碳(g-CN@HPC),包括将三聚氰胺包覆在海藻酸钙(CA)水凝胶珠上、对水凝胶珠进行冷冻干燥以及高温热解。与未包覆三聚氰胺的多孔碳相比,所得光催化剂具有显著更高的比表面积和大量相互连通的大孔。这种独特的结构特征可以有效抑制g-CN纳米片的卷曲和团聚,提供丰富的光催化活性位点,并促进质量扩散。因此,在自然阳光和300 W氙灯模拟可见光照射(λ>420 nm)下,g-CN@HPC复合材料对通过硼氢化钠(NaBH)将4-硝基苯酚(4-NP)光还原为4-氨基苯酚(4-AP)表现出显著的光催化活性和出色的稳定性。此外,通过猝灭实验和电子自旋共振(ESR)实验对光催化反应的机理进行了广泛研究。结果表明,在NaBH体系中,活性氢物种能够通过双渠道途径实现,其中包括H离子的光催化还原和BH离子的光催化氧化。这项工作不仅为设计用于各种反应的高效光催化剂开辟了一条新途径,也为深入研究光还原机理提供了参考。

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