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首页> 外文期刊>Advanced materials interfaces >A Mixed-Metal Oxides/Graphitic Carbon Nitride: High Visible Light Photocatalytic Activity for Efficient Mineralization of Rhodamine B
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A Mixed-Metal Oxides/Graphitic Carbon Nitride: High Visible Light Photocatalytic Activity for Efficient Mineralization of Rhodamine B

机译:混合金属氧化物/石墨碳氮化物:高可见光光催化活性,用于罗丹明B的有效矿化

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Novel photocatalysts in the form of zinc oxide-zinc bismuth oxide (mixedmetal oxide [MMO]) and graphitic carbon nitride (CN) hybrid composites are developed via a co-precipitation method followed by calcination at 520 °C. The as-prepared MMO-CN hybrid composites are evaluated on the basis of their photocatalytic activities for Rhodamine B (RhB) in aqueous solutions under visible light irradiation. The strong electronic coupling between two components within the MMO-CN heterostructure, which suppresses the photogenerated recombination of electrons and holes to a remarkable extent, is revealed. The prepared composites exhibit an excellent photocatalytic activity, leading to more than 95% of RhB degradation at an initial concentration of 50 mg L~(-1) using 0.5 g catalyst per liter in 90 min, along with 25 min of the RhB half-life time. The excellent photocatalytic mineralization of MMO-4.0CN by visible light irradiation can be attributed to the synergic effects for high and charge transfer between MMO and CN as well as efficient separation of photogenerated electrons and holes. The species most responsible for photodegradation is holes (h~+) with moderate and minor contributions by the superoxide anion and hydroxyl radicals, respectively. These results attest to a green, low cost, and high efficiency photocatalyst for environmental remediation.
机译:通过共沉淀法开发氧化锌 - 锌铋氧化物(混合氧化物[MMO])和石墨碳氮化物(CN)混合复合材料形式的新型光催化剂通过共沉淀法,然后在520℃下进行煅烧。基于可见光照射下的水溶液中的罗丹明B(RHB)的光催化活性来评价AS制备的MMO-CN杂化复合材料。 MMO-CN异质结构内的两个组分之间的强电子耦合,其抑制了电子和孔的光生重组到显着的程度。制备的复合材料表现出优异的光催化活性,在90分钟内使用0.5g催化剂的初始浓度为50mg L〜(-1)的初始浓度超过95%的RHB降解,以及25分钟的RHB半寿命。通过可见光辐射的MMO-4.0CN的优异的光催化矿化可归因于MMO和CN之间的高和电荷转移的协同效应以及光生电子和孔的有效分离。最负责光降解的物种是通过超氧化物阴离子和羟基自由基分别具有中等和微小贡献的孔(H〜+)。这些结果证明了绿色,低成本和高效的环境修复光催化剂。

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