G'/> Facile synthesis of two clay minerals supported graphitic carbon nitride composites as highly efficient visible-light-driven photocatalysts
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Facile synthesis of two clay minerals supported graphitic carbon nitride composites as highly efficient visible-light-driven photocatalysts

机译:容易合成两种粘土矿物支撑的石墨氮化物复合材料,作为高效的可见光触发光催化剂

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Graphical abstractThe g-C3N4/kaolinite and g-C3N4/illite composites were synthesized through a facile method. The composites exhibited significantly enhanced photocatalytic activity under visible-light irradiation, which can be attributed to the intimate interface contact between g-C3N4and layered minerals, resulting in better dispersion performance, higher charge separation efficiency as well as stronger adsorption ability.Display OmittedAbstractTo overcome rapid electron-hole recombination and low adsorption capacity of single g-C3N4photocatalyst, the present work reports on the fabrication of two kinds of visible-light-driven composite photocatalysts (g-C3N4/kaolinite and g-C3N4/illite composites). 2D/2D assembly was successfully achieved in this work. Furthermore, the as-synthesized composites exhibited significantly enhanced photocatalytic activity under visible-light irradiation, whose reaction rate constants were almost 4.13 times (g-C3N
机译:<![cdata [ 图形摘要 GC 3 N 4 / Kaolinite和GC 3 N 4 / illite复合材料通过容易法合成。复合材料在可见光照射下表现出显着增强的光催化活性,可以归因于GC 3 N 4 和分层矿物质,导致较好的分散性能,更高的电荷分离效率以及更强的吸附能力。 抽象< / ce:部分标题> 克服快速的电子孔重组和低电平单个GC的吸附容量 3 N 4 光催化剂,目前关于制造的报告两种可见光-DRI VEN复合光催化剂(GC 3 N 4 / Kaolinite和GC 3> 3 N 4 / ILLITE复合材料)。在这项工作中成功实现了2D / 2D组装。此外,AS合成的复合材料在可见光辐照下表现出显着增强的光催化活性,其反应速率常数几乎是4.13倍(GC 3 N

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