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Morphology-dependent photocatalytic activity of octahedral anatase particles prepared by ultrasonication-hydrothermal reaction of titanates

机译:钛酸酯的超声-水热反应制备八面体锐钛矿颗粒的形貌依赖性光催化活性

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摘要

Octahedral anatase particles (OAPs) were prepared by an ultrasonication (US) hydrothermal (HT) reaction of partially proton-exchanged potassium titanate nanowires (TNWs). The structural/physical properties of OAP-containing samples, including specific surface area, crystallinity, crystallite size, particle aspect ratio, composition and total OAP content, were analyzed. Photocatalytic activities of samples were measured under irradiation (>290 nm) for oxidative decomposition of acetic acid (CO2 system) and dehydrogenation of methanol (H-2 system) under aerobic and deaerated conditions, respectively. Total density of electron traps (ETs) was measured by double-beam photoacoustic spectroscopy (DB-PAS). Mobility and lifetime of charge carriers (electrons) were investigated by the time-resolved microwave conductivity (TRMC) method. The effects of synthesis parameters, i.e., HT duration, HT temperature and US duration, on properties and photocatalytic activities of final products were examined in detail. The sample prepared with 1 h US duration and 6 h HT duration at 433 K using 267 mg of TNWs in 80 mL of Milli-Q water exhibited the highest photocatalytic activity. It was found that change in HT duration or HT temperature while keeping the other conditions the same resulted in changes in all properties and photocatalytic activity. On the other hand, duration of US treatment, before HT reaction, influenced the morphology of both the reagent (by TNWs breaking) and final products (change in total OAP content); samples prepared with various US durations exhibited almost the same structural/physical properties evaluated in this study but were different in morphology and photocatalytic activity. This enabled clarification of the correlation between morphology and photocatalytic activity, i.e., the higher the total OAP content was, the higher was the level of photocatalytic activity, especially in the CO2 system. Although the decay after maximum TRMC signal intensity (I-max) was almost constant for all samples used in this study, photocatalytic activities were roughly proportional to Imax, which tended to be proportional to total OAP content. Assuming that Imax corresponds to the product of density of electrons in mobile shallow ETs and their mobility, the results suggest that OAP particles have beneficial shallow ETs in higher density and thereby the OAP content governs the photocatalytic activities. Thus, morphology-dependent photocatalytic activity of OAP-containing particles was reasonably interpreted by density of ETs presumably located on the exposed {101} facets.
机译:通过部分质子交换的钛酸钾纳米线(TNWs)的超声(US)水热(HT)反应制备八面体锐钛矿颗粒(OAP)。分析了包含OAP的样品的结构/物理特性,包括比表面积,结晶度,微晶尺寸,颗粒长宽比,组成和总OAP含量。在有氧和脱气条件下,分别在乙酸(CO2系统)和乙酸(H-2系统)的辐射(> 290 nm)下测量样品的光催化活性。电子陷阱(ETs)的总密度通过双束光声光谱法(DB-PAS)测量。通过时间分辨微波电导率(TRMC)方法研究了载流子(电子)的迁移率和寿命。详细检查了合成参数,即HT持续时间,HT温度和US持续时间对最终产物的性质和光催化活性的影响。使用267 mg TNW在80 mL Milli-Q水中在433 K下以1 h US持续时间和6 h HT持续时间制备的样品表现出最高的光催化活性。发现在保持其他条件相同的同时,HT持续时间或HT温度的改变导致所有性质和光催化活性的改变。另一方面,在HT反应之前,US处理的持续时间影响了试剂(通过TNW的破坏)和最终产物(总OAP含量的变化)的形态。在不同的美国持续时间下制备的样品显示出在这项研究中评估的几乎相同的结构/物理性质,但是在形态和光催化活性上有所不同。这使得能够澄清形态与光催化活性之间的相关性,即,总OAP含量越高,光催化活性的水平越高,尤其是在CO 2系统中。尽管对于本研究中使用的所有样品,最大TRMC信号强度(I-max)之后的衰减几乎恒定,但光催化活性与Imax大致成比例,而Imax则与总OAP含量成比例。假设Imax对应于流动的浅层ET中电子密度与其迁移率的乘积,结果表明OAP颗粒具有较高密度的有益浅层ET,因此OAP含量决定着光催化活性。因此,通过推测可能位于暴露的{101}面上的ET的密度可以合理地解释含OAP的颗粒的形态依赖的光催化活性。

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