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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Synthesis and characterizations of metal-free Semiconductor/MOFs with good stability and high photocatalytic activity for H-2 evolution: A novel Z-Scheme heterostructured photocatalyst formed by covalent bonds
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Synthesis and characterizations of metal-free Semiconductor/MOFs with good stability and high photocatalytic activity for H-2 evolution: A novel Z-Scheme heterostructured photocatalyst formed by covalent bonds

机译:H-2演化具有良好稳定性和高光催化活性的无金属半导体/ MOF的合成与表征:通过共价键形成的新型Z形型异质结构光催化剂

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摘要

To solve serious energy and environmental crises caused by rapid industrial development, the formation of Z-scheme heterostructured photocatalysts is a promising approach for efficient and scalable H-2 production from water splitting due to wide absorption range, high charge-separation efficiency and strong redox ability of the Z-scheme heterostructured photocatalysts. In this study, we combined the MOFs of NH2-MIL-125(Ti) with g-C3N4 functionalized by benzoic acid (CFB) to synthesize a novel composite catalyst of CFB/NH2-MIL-125(Ti) (CFBM) by covalent bonds for the first time. The benzoic acid in the CFBM acts as electron mediator to well separate photogenerated electrons and holes, leading to excellent photocatalytic performance of photocatalytic hydrogen generation from water splitting under visible light irradiation. Experimental results show that the H-2 production rate of the 10CFBM is 1.123 mmol.h(-1).g(-1), which is about 6 times of the NH2-MIL-125(Ti). Meanwhile, the simple physical mixture of NH2-MIL-125(Ti) with 10 wt% g-C3N4 and the 10wt% g-C3N4/MOFs heterostructured catalyst all show much smaller H-2 evolution rate and worse stability than that of the 10CFBM. Finally, we proposed a possible mechanism to well explain the improved photocatalytic performance of the Z-scheme photocatalytic system based on the results of different characterizations. The present work gives a good example to develop a novel Z-scheme heterostructured system with good stability and high photocatalytic activity for H-2 evolution and puts forward a new synthetic strategy to prepare metal-free semiconductor/MOFs formed by covalent bonds.
机译:为解决快速工业发展引起的严重能源和环境危机,Z形型异质结构的光催化剂是一种有希望的高效和可扩展的H-2生产方法,由于宽吸收范围,高电荷分离效率和强氧化还原Z配方异质结构光催化剂的能力。在该研究中,我们将NH2-MIL-125(TI)的MOF与由苯甲酸(CFB)官能化的G-C3N4组合以通过共价合成CFB / NH2-MIL-125(TI)(CFBM)的新型复合催化剂第一次债券。 CFBM中的苯甲酸用作电子介体,以井分离的光发生的电子和孔,导致在可见光照射下的水分裂中的光催化氢气产生优异的光催化性能。实验结果表明,10CFBM的H-2生产率为1.123mmol.h(-1).g(-1),为NH2-MIL-125(TI)的6倍。同时,具有10wt%G-C3N4和10wt%G-C3N4 / MOF异质结构催化剂的NH 2-MIL-125(Ti)的简单物理混合物均显示得多的H-2演化速率和比10CFBM更差的稳定性。最后,我们提出了一种可能的机制,以良好地解释基于不同表征的结果的Z方案光催化系统的改善的光催化性能。本作本作有一个很好的例子,用于开发一种具有良好稳定性和高光催化活性的新型Z形式的异质结构,用于H-2演化,并提出了一种新的合成策略来制备由共价键形成的无金属半导体/ MOF。

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