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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Morphology Control of TiO2 Nanoparticle in Microemulsion and Its Photocatalytic Property
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Morphology Control of TiO2 Nanoparticle in Microemulsion and Its Photocatalytic Property

机译:纳米TiO2微乳液的形貌控制及其光催化性能。

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TiO2 nanoparticles with controlled morphology and high photoactivity were prepared using a microemulsion-mediated hydrothermal method in this study, and the particles were characterized by means of TEM, XRD, BET, and BJH analysis. As the hydrothermal temperature is elevated, mean pore diameter, crystalline size, and crystallinity of the particles increase gradually, while the surface area decreases significantly, and the morphology changes from a spherical into a rod-like shape. The morphology transition mechanism of the TiO2 crystal has been put forward based on a decrease in intensity of the microemulsion interface and an increase in collision efficiency between droplets with increasing the hydrothermal temperature. The photocatalytic activity of the TiO2 particles synthesized at 120-200 °C is relatively low due to their weak crystallinity, though they have high surface area of 146-225 m2/g and small crystalline size of 6-10 nm. However, the TiO2 samples prepared at 250-350 °C with low surface area (28-90 m2/g) exhibit high activity on the degradation of Rhodamine B (RhB), which is comparable or higher than that of the commercial P-25. The reason is ascribed to their high crystallinity that determines material activity in this temperature region. This study reveals that the effects of the surface area, crystallinity, and crystalline size on TiO2 activity are interdependent, and the balance between these factors is important for improving the photoactivity of the catalyst.
机译:本研究采用微乳液介导的水热法制备了形貌可控,光活性高的TiO2纳米颗粒,并通过TEM,XRD,BET和BJH分析对其进行了表征。随着水热温度的升高,颗粒的平均孔径,晶体尺寸和结晶度逐渐增加,而表面积却显着减小,并且形态从球形变为棒状。随着水热温度的升高,基于微乳液界面强度的降低和液滴间碰撞效率的提高,提出了TiO2晶体的形貌转变机理。尽管它们具有146-225m2 / g的高表面积和6-10nm的小晶体尺寸,但是由于它们的弱结晶性,在120-200℃下合成的TiO2颗粒的光催化活性相对较低。但是,在250-350°C下制备的TiO2样品具有较低的表面积(28-90 m2 / g),对罗丹明B(RhB)的降解表现出很高的活性,与市售P-25相当或更高。 。原因是由于它们的高结晶度决定了该温度范围内的材料活性。这项研究表明,表面积,结晶度和晶体尺寸对TiO2活性的影响是相互依存的,并且这些因素之间的平衡对于提高催化剂的光活性很重要。

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