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制备态钛酸钠对间二硝基苯还原及磺嘧磺隆氧化的光催化活性增强

Enhanced Photocatalytic Activity of as-Prepared Sodium Titanates for m-Dinitrobenzene Reduction and Sulfosulfuron Oxidation.

作者信息

Grover Inderpreet Singh, Singh Satnam, Pal Bonamali

出版信息

J Nanosci Nanotechnol. 2015 Feb;15(2):1490-8. doi: 10.1166/jnn.2015.9072.

Abstract

This paper demonstrates the preparation and photocatalytic activity of sodium titanate nanorods and nanotubes prepared by hydrothermal method using P25-TiO2 as the precursor. XRD results confirmed the monoclinic structure of sodium titanate nanorods obtained after calcinations of orthorhombic sodium titanate nanotubes at 800 °C for 2 h. The BET surface area of sodium titanate nanotubes (176 m2 g-1) was significantly reduced for sodium titanate nanorods (21 m2 g-1) formation because of the collapsing of the hollow interior of the former during its high temperature sintering. The selective formation of m-diaminobenzene by the photoreduction of the m-dinitrobenzene was found to be comparable by sodium titanate nanorods (89.5 ± 0.5%) and P25-TiO2 (98.2 ± 0.8%), whereas Au-deposition (0.5 and 2 wt%) onto sodium titanate nanorods notably altered the products (m-nitroaniline and m-diaminobenzene) distribution after 8 h of UV-light irradiation and which was confirmed later by GC-MS analysis. This high photoactivity of as-prepared nanorods could be credited to better delocalization and longer relaxation lifetime (68 µs) of photoexcited e-/h+ pairs along the length of crystalline sodium titanate nanorods than P25-TiO2 (45 µs) as measured from Time-resolved spectroscopy. The photooxidation of sulfosulfuron herbicide (1000 ppm) and corresponding CO2 formation was found to be highest with sodium titanate nanotubes due to the presence of more hydroxyl groups over the largest surface area that dominates over its least relaxation lifetime (41 µs).

摘要

本文展示了以P25-TiO2为前驱体通过水热法制备的钛酸钠纳米棒和纳米管的制备过程及其光催化活性。X射线衍射(XRD)结果证实,在800℃下煅烧2小时后,正交晶系的钛酸钠纳米管转变为单斜晶系的钛酸钠纳米棒。由于钛酸钠纳米管在高温烧结过程中内部中空结构塌陷,其比表面积(176 m2 g-1)显著降低,从而形成了比表面积为21 m2 g-1的钛酸钠纳米棒。研究发现,钛酸钠纳米棒(89.5 ± 0.5%)和P25-TiO2(98.2 ± 0.8%)对间二硝基苯光还原生成间二苯胺的选择性相当,而在钛酸钠纳米棒上沉积0.5%和2%重量的金后,经过8小时紫外光照射,产物(间硝基苯胺和间二苯胺)分布发生显著变化,这一点随后通过气相色谱-质谱联用(GC-MS)分析得到证实。从时间分辨光谱测量结果来看,与P25-TiO2(45 µs)相比,所制备的纳米棒具有较高的光活性,这可能归因于光激发的电子/空穴对在结晶态钛酸钠纳米棒长度方向上具有更好的离域性和更长的弛豫寿命(68 µs)。由于在最大表面积上存在更多的羟基,且其弛豫寿命最短(41 µs),因此发现钛酸钠纳米管对1000 ppm的磺酰磺隆除草剂的光氧化及相应二氧化碳的生成量最高。

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