首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Oxygen vacancy-rich 2D/2D BiOCl-g-C3N4 ultrathin heterostructure nanosheets for enhanced visible-light-driven photocatalytic activity in environmental remediation
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Oxygen vacancy-rich 2D/2D BiOCl-g-C3N4 ultrathin heterostructure nanosheets for enhanced visible-light-driven photocatalytic activity in environmental remediation

机译:富氧空位的2D / 2D BioCl-G-C3N4超细胞结构纳米片,用于增强的环境修复中的可见光光催化活性

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Photocatalytic degradation has been unearthed as a promising strategy for environmental remediation, and the calling is endless for more efficient photocatalytic system. In this study, a novel oxygen vacancy-rich two-dimensional/two-dimensional (2D/2D) BiOCl-g-C3N4 ultrathin heterostructure nanosheet (CN-BC) is successfully prepared by a facile solvothermal method for degradation of non-dye organic contaminants. HRTEM observes the formation of heterojunction, while ESR and)CPS unveil the distinct oxygen vacancy concentrations. Density functional calculations reveal that the introduction of oxygen vacancies (OVs) brings a new defect level, resulting in the increased photoabsorption. Under visible light irradiation, the OVs-rich optimum ratio of CN-BC (50CN-50BC) Exhibits 95% removal efficiency of 4-chlorophenol within 2 h, which is about 12.5, 5.3 and 3.4 times as that of pure BiOCl, g-C3N4 and OVs-poor heterostructure, respectively. The photocatalytic mechanism of OVs-rich 50CN-50BC is also revealed, suggesting that the synergistic effect between 2D/2D heterojunction and oxygen vacancies greatly promotes visible-light photoabsorption and photoinduced carrier separation efficiency with a prolonged lifetime, which is confirmed by multiple optical and electrochemical analyses, including DRS, steady-state photoluminescence spectra, electrochemical impedance spectroscopy, photocurrent response and time-resolved fluorescence spectra. This study could bring new opportunities for the rational design of highly efficient photocatalysts by combining 2D/2D heterojunctions with oxygen vacancies in environmental re mediation.
机译:光催化降解被挖掘为环境修复的有希望的策略,并且呼叫对于更有效的光催化系统是无穷无尽的。在本研究中,通过溶液溶解的方法成功地制备了一种新型氧空位的二维/二维(2D / 2D)BioCl-G-C3N4超自眼纳米片(CN-BC),用于降解非染料有机物污染物。 HRTEM观察异质结的形成,而ESR和)CPS揭示了不同的氧空位浓度。密度函数计算表明,引入氧空位(OVS)带来了新的缺陷水平,导致了增加的光吸收。在可见光照射下,CN-BC(50cN-50BC)的耐卵ovs的最佳比率在2小时内表现出4-氯苯酚的95%的去除效率,其为纯BioCl,G-的约12.5,3.3和3.4倍。 C3N4和OVS-差的异质结构。还揭示了富含OV的光催化机制,表明2D / 2D异质结和氧空位之间的协同效应大大促使可见光光吸收和光致载体分离效率,其延长的寿命通过多个光学确认电化学分析,包括DRS,稳态光致发光光谱,电化学阻抗光谱,光电流响应和时间分辨荧光光谱。本研究可以通过将2D / 2D杂交功能与环境重新调解中的氧空位组合来带来高效光催化剂的合理设计的新机会。

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