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Noble metal-modified octahedral anatase titania particles with enhanced activity for decomposition of chemical and microbiological pollutants

机译:贵金属改性的八面体锐钛型二氧化钛颗粒,具有增强的化学和微生物污染物分解活性

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摘要

Octahedral anatase particles (OAPs) were prepared by hydrothermal (HT) reaction of titanate nanowires (TNWs). OAPs were modified with noble metals (Au, Ag, Cu and Pt) by two photodeposition methods: in the absence and in the initial presence of oxygen in the system. Photocatalytic activities for oxidative decomposition of acetic acid and anaerobic dehydrogenation of methanol under UV/vis irradiation and for oxidation of 2-propanol under visible light irradiation were investigated. Antibacterial activities for bacteria (Escherichia coli) and fungi (Candida albicans) were investigated in the dark and under UV irradiation and/or visible light irradiation. It was found that the kind of metal deposition significantly influenced the properties of photocatalysts obtained and thus their photocatalytic and antimicrobial activities. Modification of OAPs with metallic deposits resulted in enhanced photocatalytic activities for all tested systems. Pt-modified OAPs showed the highest activity for dehydrogenation of methanol due to their highest work function and lowest activation overpotential of hydrogen evolution. Cu-modified OAPs exhibited the highest activity for oxidative decomposition of acetic acid under UV/vis irradiation, probably due to the heterojunction between Cu oxides and TiO2. On the other hand, Au-modified OAPs showed the highest photocatalytic activity under visible light irradiation due to their plasmonic properties. Bare OAPs, prepared with various durations of the HT reaction, did not have any antibacterial properties in the dark, while their activity under UV/vis irradiation was correlated with their photocatalytic activities for dehydrogenation of methanol and decomposition of acetic acid. Antimicrobial activity of modified OAPs in the dark and under visible light irradiation was the highest for Ag-modified OAPs. Under UV irradiation, Cu-modified OAPs showed the highest activity for inactivation of both bacteria and fungi. (C) 2016 The Authors. Published by Elsevier B.V.
机译:通过钛酸酯纳米线(TNWs)的水热(HT)反应制备了八面体锐钛矿颗粒(OAPs)。通过两种光沉积方法用贵金属(Au,Ag,Cu和Pt)对OAP进行改性:在系统中不存在氧气和初始存在氧气的情况下。研究了紫外/可见光照射下乙酸的氧化分解和甲醇厌氧脱氢以及2-丙醇在可见光照射下的光催化活性。在黑暗中以及在紫外线照射和/或可见光照射下,研究了对细菌(大肠杆菌)和真菌(白色念珠菌)的抗菌活性。发现金属沉积的种类显着影响所得光催化剂的性能,并因此影响其光催化和抗微生物活性。用金属沉积物改性OAP可提高所有测试系统的光催化活性。 Pt改性的OAP由于其最高的功函数和最低的析氢活化超电势而显示出最高的甲醇脱氢活性。在紫外线/可见光照射下,Cu改性的OAP表现出最高的乙酸氧化分解活性,这可能是由于Cu氧化物和TiO2之间的异质结所致。另一方面,Au改性的OAPs由于其等离子特性,在可见光照射下显示出最高的光催化活性。在不同的HT反应持续时间下制备的裸OAP在黑暗中没有任何抗菌性能,而它们在UV / vis照射下的活性与它们对甲醇脱氢和乙酸分解的光催化活性相关。修饰的OAP在黑暗和可见光照射下的抗菌活性对于Ag修饰的OAP最高。在紫外线照射下,Cu修饰的OAP对细菌和真菌的灭活表现出最高的活性。 (C)2016作者。由Elsevier B.V.发布

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