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Fabricating rutile nanopins on an anatase hollow sphere structure with enhanced photoactivity performance

机译:在具有增强的光敏性能的锐钛矿空心球结构上制备金红石纳米针

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摘要

TiO2 is a promising material for the renewable energy and pollution control field. Hierarchically, structure and phase junction are vitally important to circumvent the limited photo adsorption and charge separation. In this work, we successfully synthesized a hierarchical structure TiO2 with tunable rutile nanopins on anatase hollow spheres using a facile one-step synthesis method. The phase composition and structure can be controlled by sulfate, chloride ions and sodium dodecyl sulfate (SDS). Systematic density functional theory (DFT) was used to study the interface of an anatase/rutile structure and energetic origins of the effects of the sulfate and chloride ions on anatase (101) and rutile (110) surfaces. The atomic junction structure in this work may help to obtain a comprehensive understanding of the interface. The higher photoactivity performance can be attributed to the multi-reflections of electromagnetic waves and efficient charge separation. The hierarchical structure of rutile nanopins at anatase hollow microspheres may have great potential for practical applications.
机译:TiO 2 是用于可再生能源和污染控制领域的有前途的材料。从层次上讲,结构和相结对于避免有限的光吸附和电荷分离至关重要。在这项工作中,我们使用一种简便的一步合成方法成功地在锐钛矿空心球上合成了具有可调金红石型纳米销的分层结构TiO 2 。相组成和结构可以通过硫酸根,氯离子和十二烷基硫酸钠(SDS)控制。系统密度泛函理论(DFT)用于研究锐钛矿/金红石结构的界面以及硫酸根和氯离子对锐钛矿(101)和金红石(110)表面的影响的高能起源。这项工作中的原子结结构可能有助于获得对界面的全面理解。较高的光敏性能可归因于电磁波的多次反射和有效的电荷分离。锐钛矿型空心微球处的金红石型纳米销的分层结构在实际应用中可能具有很大的潜力。

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