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One step in situ synthesis of core-shell structured Cr2O3:P@fibrous-phosphorus hybrid composites with highly efficient full-spectrum-response photocatalytic activities

机译:原位一步合成核壳结构化Cr2O3: P@fibrous-phosphorus混合复合材料与高效full-spectrum-response光催化活动

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摘要

Making full use of solar energy and achieving high charge separation efficiency are critical factors for the photocatalysis technique. In this work, we report core-shell structured fibrous phosphorus (f-P) coated P-doped Cr2O3 (Cr2O3: P@f-P) hybrid composites with a strong optical absorption in the full region of 200-2600 nm. The Cr2O3: P@f-P hybrid composites exhibit a record photocatalytic efficiency under UV, visible and near-infrared light irradiation, demonstrating as promising photocatalysts for the full utilization of solar energy. Systematical investigations combining experimental and theoretical work show that P doping modifies the electronic band structures and creates defective levels in the forbidden gap of Cr2O3 which extends the optical absorption to the visible and near-infrared regions. Highly crystalline fibrous phosphorus in situ grown on the Cr2O3 particles constructs a core-shell hybrid structure which guarantees intimate interfacial contact between f-P and Cr2O3:P and facilitates the separation of photogenerated electron-hole pairs. This study develops a promising system based on earth abundant element P to utilize the overall spectrum of sunlight for photochemical applications.
机译:充分利用太阳能和实现高电荷分离效率是至关重要的因素光催化技术。我们报告核壳结构纤维磷(.)涂布p型Cr2O3 (Cr2O3:P@f-P)混合复合材料有很强的光吸收全部地区的200 - 2600 nm。Cr2O3: P@f-P混合复合材料表现出记录光催化效率在紫外线,可见光和近红外光照射,展示希望论文的完整的利用率太阳能的。结合实验和理论工作P掺杂修改电子乐队结构和创建缺陷水平禁止差距的Cr2O3扩展了光可见光和近红外的吸收地区。原位生长Cr2O3粒子结构核壳混合结构保证.之间亲密的界面接触Cr2O3: P和促进的分离photogenerated电子空穴对。发展基于地球的一个有前途的系统丰富的元素P利用整体光化学光谱的阳光应用程序。

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