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首页> 外文期刊>Catalysis science & technology >Sacrificial agent-free photocatalytic CO2 reduction using a 2D cobalt porphyrin-based MOF/graphene heterojunction
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Sacrificial agent-free photocatalytic CO2 reduction using a 2D cobalt porphyrin-based MOF/graphene heterojunction

机译:Sacrificial agent-free photocatalytic CO2 reduction using a 2D cobalt porphyrin-based MOF/graphene heterojunction

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摘要

2D MOFs show great potential in photocatalysis owing to their ultrathin thickness, large surface area and highly accessible active sites. Nevertheless, studies applying 2D MOFs as photocatalysts are very limited, especially for photocatalytic CO2 reduction. In this paper, a novel 2D/2D Co-PMOF/GR heterojunction was successfully constructed by coupling a 2D cobalt porphyrin-based MOF (Co-PMOF) and graphene (GR). The resultant Co-PMOF/GR composites could efficiently reduce CO2 to CO and CH4 under visible-light illumination without any assistance of a sacrificial agent and photosensitizer. When the content of GR was 10 wt%, the Co-PMOF/GR composite presented an optimum catalytic performance. The maximum yields of CO and CH4 over the Co-PMOF/GR composite reached 20.25 and 1.61 μmol g−1 h−1, respectively, which were 2.84 and 2.44 times those over pristine Co-PMOF. The enhanced catalytic efficiency was due to the synergy of higher light harvesting, enhanced CO2 absorption and efficient charge migration within the conductive and intimate 2D heterostructure. This study offers a new idea for the fabrication of highly active 2D MOF-based photocatalysts for solar energy conversion.
机译:2 d财政部在光催化方面显示了很大的潜力由于他们的超薄厚度,表面面积和高度活跃的网站访问。然而,研究应用2 d mof催化剂是非常有限的,特别是对光催化二氧化碳的减少。小说2 d / 2 d Co-PMOF / GR异质结成功由耦合2 d钴porphyrin-based财政部(Co-PMOF)和石墨烯(GR)。结果Co-PMOF / GR复合材料有效地减少二氧化碳和甲烷可见光照明没有任何帮助牺牲剂、光敏剂。GR 10 wt %的内容,Co-PMOF / GR综合提出一个最佳的催化表演在Co-PMOF / GR复合达到20.251.61μ摩尔克−1 h−1,分别是2.84和2.44倍以上原始Co-PMOF。提高催化效率是由于更高的光收获的协同作用,增强二氧化碳吸收和有效电荷迁移导电和亲密的2 d异质结构。本研究为制造提供了一个新的想法高度活跃的2 d基于mof的催化剂太阳能能量转换。

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