首页> 外文期刊>Journal of Materials Science >Hierarchical Ag3PO4/TiO2@C composites derived from Ti3C2 MXene for enhanced photocatalytic activity
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Hierarchical Ag3PO4/TiO2@C composites derived from Ti3C2 MXene for enhanced photocatalytic activity

机译:Ti3C2 MXene多级制Ag3PO4/TiO2@C复合材料增强光催化活性

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摘要

Herein, a high-performance Ag3PO4/TiO2@C composite photocatalyst was successfully fabricated through the unique structure and interface designs. Firstly, a novel three-dimensional layered carbon-supported titanium dioxides (TiO2@C) nanosheets (NSs) are fabricated by employing the new-type two-dimensional layered transition metal Ti3C2 MXene as carbon skeleton and homologous titanium source via a facile hydrothermal method. Benefiting from the structure characters of Ti3C2 MXene and in-situ growth, the as-prepared TiO2@C NSs own a large surface area and good interface contact. On this basis, taking advantage of the surface electronegativity of Ti3C2 MXene drove TiO2@C, Ag3PO4 nanoparticles are further combined with TiO2@C via an electrostatic self-assembly method to improve the light-harvesting ability. The electrostatic self-assembly process is beneficial to the uniform growth of Ag3PO4 nanoparticles and the formation of a good heterostructure interface between Ag3PO4 and TiO2@C. Therefore, the as-prepared Ag3PO4/TiO2@C composites as photocatalyst exhibit excellent photocatalytic performance, and the optimal photocatalytic degradation rate constant for methylene blue achieves 4.768 x 10(-2) min(-1). The enhanced photocatalytic performance is mainly attributed to the synergistic effect of larger surface area, better light-harvesting ability, and superior charge transfer and separation characters. Additionally, the growth and optimization mechanisms are also deeply studied in the present paper.
机译:本文通过独特的结构和界面设计成功制备了一种高性能的Ag3PO4/TiO2@C复合光催化剂。首先,以新型二维层状过渡金属Ti3C2 MXene为碳骨架,采用简单的水热法制备了一种新型的三维层状碳负载钛白粉(TiO2@C)纳米片(NSs)。得益于Ti3C2 MXene的结构特性和原位生长,制备的TiO2@C NSs具有较大的比表面积和良好的界面接触。在此基础上,利用Ti3C2 MXene驱动TiO2@C的表面电负性,通过静电自组装方法进一步将Ag3PO4纳米颗粒与TiO2@C结合,提高其光捕获能力。静电自组装过程有利于Ag3PO4纳米颗粒的均匀生长,有利于Ag3PO4与TiO2@C之间形成良好的异质结构界面。因此,作为光催化剂的Ag3PO4/TiO2@C复合材料表现出优异的光催化性能,对亚甲基蓝的最佳光催化降解速率常数达到4.768 x 10(-2) min(-1)。光催化性能的增强主要归因于更大表面积的协同效应、更好的光捕获能力以及优越的电荷转移和分离特性。此外,本文还深入研究了增长和优化机制。

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