首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Graphene-analogue h-BN coupled Bi-rich Bi4O5Br2 layered microspheres for enhanced visible-light photocatalytic activity and mechanism insight
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Graphene-analogue h-BN coupled Bi-rich Bi4O5Br2 layered microspheres for enhanced visible-light photocatalytic activity and mechanism insight

机译:石墨烯 - 类似物H-BN耦合双富富氮Bi4O5Br2分层微球,用于增强可见光光催化活性和机制洞察力

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摘要

The novel boron nitride coupled Bi-rich Bi4O5Br2 layered microspheres (h-BN/Bi4O5Br2-LMs) were successfully synthesized via a facile ionic liquid-in-water (IL/W) microemulsion-mediated route. The physical, chemical and optical properties of these heterojunction photocatalysts were thoroughly characterized with X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM) equipped with energy dispersive X-ray spectrometry (EDS), transmission electron microscopy (TEM) and UV-vis diffuse reflection spectroscopy (DRS). Their photocatalytic activities were primarily evaluated by degradation of 4-tert-butylphenol (PTBP), which found 1.0 wt% h-BN/Bi4O5Br2-LMs to be the best one. The photocurrent experiments showed that the photocurrent density of 1.0 wt% h-BN/Bi4O5Br2-LMs was four times higher than that of pure Bi4O5Br2-LMs due to enhanced charge transfer ability of the former. It revealed that the addition of h-BN was in favor of suppressing the photoinduced electron-hole pair recombination of Bi4O5Br2-LMs, so as to improve the photocatalytic activity of the composite. center dot O-2- and were proved to be the main reactive species in the photocatalytic process by scavenger experiments and electron paramagnetic resonance (EPR) spectra. In addition, the photocatalytic mechanism of h-BN/Bi4O5Br2-LMs was further elaborated in this work. The probable degradation products were identified by GC-MS. The proposed conjugated addition and oxidation reactions were described to be the main pathways by combining the frontier electron density calculation and GC-MS results. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过容易离子液 - 液 - 水(IL / W)微乳液介导的途径成功地合成了新型硼氮化物偶联的双富富硼Bi4O5BR2层状微球(H-BN / BI4O5BR2-LMS)。这些异质结光催化剂的物理,化学和光学性能通过X射线衍射(XRD),X射线光电子能谱(XPS),扫描电子显微镜(SEM),配备能量分散X射线光谱(EDS),透射电子显微镜(TEM)和UV-VI扩散反射光谱(DRS)。它们的光催化活性主要通过降解4-叔丁基苯酚(PTBP)来评估,其发现1.0wt%H-BN / Bi4O5BR2-LMS是最好的。光电流实验表明,由于前者增强的电荷转移能力,1.0wt%H-BN / Bi4O5Br2-LMS的光电流密度为比纯Bi4O5BR2-LMS高4倍。揭示了H-BN的添加有利于抑制Bi4O5BR2-LMS的光抑制电子 - 空穴对重组,以改善复合材料的光催化活性。中央点O-2-通过清除催化剂和电子顺磁共振(EPR)光谱是光催化过程中的主要反应物种。此外,在该工作中进一步阐述了H-BN / Bi4O5Br2-LMS的光催化机制。通过GC-MS鉴定可能的降解产物。通过组合前沿电子密度计算和GC-MS结果,描述了所提出的共轭添加和氧化反应是主要途径。 (c)2017 Elsevier B.v.保留所有权利。

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