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A composite of platelet-like orientated BiVO4 fused with MIL-125(Ti): Synthesis and characterization

机译:片状取向BiVO4与MIL-125(Ti)融合的复合材料:合成与表征

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摘要

The development of heterojunctions is the current focus of the scientific community as these materials are visible light active and the staggered positioning of their band edges combats electron-hole recombination which is the downside of most photocatalysts. In this work, a two- step hydrothermal synthesis protocol was utilized to fabricate a novel observable-light active material, composed of platelet-like BiVO4 and a titanium-based metal organic framework (MOF) called MIL-125(Ti). The tuning of specific morphologies, such as platelet-like in BiVO4, provides the exposure of most reactive facets which are more reactive towards photooxidation of organics in water, thus increasing their efficiency. The as-synthesized heterojunction was characterized by Transmission electron microscopy (TEM), scanning transmission microscopy (SEM), X-Ray diffraction (XRD), Raman spectroscopy, ultraviolet-visible diffuse reflectance spectra (UV-Vis DRS), X-Ray photoelectron spectroscopy (XPS) and photoluminescence (PL) spectra. The formation of the heterojunction lead to a positive shift of the 3-2 Bi:Ti valence band (VB) (1.78 eV) when compared to 1.27 eV VB position of BiVO4. The PL and photoelectrochemical measurements revealed that the heterojunction photocatalyst designated 3-2 Bi-Ti demonstrated inhibited recombination rate (platelet-like BiVO4 > 3-2 Bi:Ti (PM) > MIL-125 > 1–1 Bi:Ti > 2–3 Bi:Ti > 3-2 Bi:Ti) and highly efficient interfacial charge shuttle between platelet-like BiVO4 and MIL-125(Ti) through the formed n-n junction.
机译:异质结的发展是科学界当前关注的焦点,因为这些材料具有可见光活性,并且其能带边缘的错开位置可防止电子-空穴复合,这是大多数光催化剂的缺点。在这项工作中,利用了两步水热合成方案来制造一种新型的可观察到的光活性材料,该材料由片状BiVO4和称为MIL-125(Ti)的钛基金属有机骨架(MOF)组成。特定形态的调整(例如BiVO4中的血小板状)可提供大多数反应性方面的曝光,这些方面对水中有机物的光氧化反应更具反应性,从而提高了效率。所合成的异质结的特征在于透射电子显微镜(TEM),扫描透射显微镜(SEM),X射线衍射(XRD),拉曼光谱,紫外可见漫反射光谱(UV-Vis DRS),X射线光电子光谱(XPS)和光致发光(PL)光谱。与BiVO4的1.27 eV VB位置相比,异质结的形成导致3-2 Bi:Ti价带(VB)(1.78 eV)发生正向偏移。 PL和光电化学测量表明,命名为3-2 Bi-Ti的异质结光催化剂显示出抑制的重组速率(血小板样BiVO4> 3-2 Bi:Ti(PM)> MIL-125> 1-1 Bi:Ti> 2– 3 Bi:Ti> 3-2 Bi:Ti)并通过形成的nn结在血小板状BiVO4和MIL-125(Ti)之间进行高效的界面电荷穿梭。

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