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首页> 外文期刊>Catalysis science & technology >In situ topotactic fabrication of direct Z-scheme 2D/2D ZnO/ZnxCd1-xS single crystal nanosheet heterojunction for efficient photocatalytic water splitting
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In situ topotactic fabrication of direct Z-scheme 2D/2D ZnO/ZnxCd1-xS single crystal nanosheet heterojunction for efficient photocatalytic water splitting

机译:原位直接Z-scheme topotactic制造2 d / 2 d氧化锌/ ZnxCd1-xS单晶nanosheet异质结的高效光催化水分裂

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摘要

Direct Z-scheme heterojunction can effectively enhance the photocatalytic activity due to its low carrier recombination rate and high redox ability. In this study, a 2D/2D ZnO/ZnxCd1-xS single crystal nanosheet heterojunction is synthesized in situ by topotactic sulfurization/oxidization pyrolysis of Zn/Cd/Al layer double hydroxides (LDHs). Its unique structure provides not only numerous intimate interfaces but also a direct Z-scheme junction. The in situ topotactic fabrication of ZnO by the oxidation process causes some Zn ions to dissolve out from the Zn(0.67)Cd(0.3)3S solid solution nanosheets with increase in annealing temperature and time. The longer the time for oxidation, the more ZnO is obtained. The formation of ZnO yields 2D/2D ZnO/ZnxCd1-xS single crystal nanosheet heterojunction, which increases the visible light absorption and boosts the separation of photogenerated carriers. The ZnO/ZnxCd1-xS-4 single crystal nanosheet heterojunction presents the highest photocatalytic activity under visible light irradiation (38.93 mmol h(-1) g(-1)), which is nearly 16.93 times higher than that of Zn0.67Cd0.33S-300, and an external quantum efficiency of 40.97% at = 420 nm. The proposed synthetic route for the construction of 2D/2D ZnO/ZnxCd1-xS single crystal nanosheet provides a direct Z-scheme structure with highly efficient photocatalytic hydrogen evolution activity.
机译:直接Z-scheme异质结可以有效提高光催化由于其活动载体重组率低和高氧化还原能力。单晶nanosheet异质结由topotactic原位合成硫化/锌氧化热解/ Cd /双氢氧化物层(类)。结构不仅提供了众多的亲密接口也直接Z-scheme结。氧化锌的原位topotactic制造氧化过程导致一些锌离子溶解从锌Cd (0.67) (0.3) 3 s固溶体nanosheets与退火温度的增加和时间。更多的氧化锌。2 d / 2 d氧化锌/ ZnxCd1-xS单晶nanosheet异质结,从而增加了可见光吸收和增加的分离photogenerated运营商。单晶nanosheet异质结的礼物可见下的光催化活性最高光照射(38.93更易与h (1) g (1)),几乎是16.93倍的zn0.67cd0.33s - 300,和一个外部量子40.97% = 420 nm的效率。合成路线的建设2 d / 2 d氧化锌/ ZnxCd1-xS单晶nanosheet提供直接Z-scheme结构与高效光催化氢进化活动。

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