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1.
以KNO3为矿化剂,用水热法制备了3D分级结构Bi2WO6微球,通过XRD、SEM、BET对产物进行了表征.探讨了3D分级结构Bi2WO6微球可能的形成机理.以罗丹明B为模型污染物,研究了合成产物的光催化性质.结果表明:在紫外光下,RhB的降解以共轭结构断裂的光催化反应为主;而在可见光照射下,RhB的降解可能是光催化和光敏化共同作用的结果.进一步以吡啶为探针分子,通过吸附吡啶红外光谱探讨了Bi2WO6表面酸性与光催化降解RhB之间的关系.研究显示,Bi2WO6具有较强的表面酸性,增强了Bi2WO6与RhB分子之间吸附作用,有利于染料分子上的电子跃迁至催化剂上,易于发生光敏化和光催化反应.  相似文献   

2.
首先利用水热法制备了由纳米片组装的粒径为1.5–2μm的Bi2WO6微球,然后在微球表面沉积了不同含量的AgCl (5 wt%,10wt%,20wt%,30wt%),制备了异质结构AgCl/Bi2WO6微球光催化剂.利用X射线粉末衍射、扫描电镜、透射电镜、红外光谱、紫外-可见漫反射吸收等手段对所制的光催化剂进行表征,并以紫外光和可见光分别为光源,罗丹明B为降解对象测试了其光催化活性,考察复合不同含量的AgCl对Bi2WO6光催化剂的性能影响.结果表明,沉积AgCl对Bi2WO6的晶体结构、表面性能和光吸收性能没有产生明显影响,但大幅度提高了Bi2WO6的紫外和可见光催化活性.当复合20wt%AgCl时, AgCl/Bi2WO6光催化活性最佳,紫外光下比纯Bi2WO6提高了2.2倍,可见光下提高了1倍.这主要是由于形成的AgCl/Bi2WO6异质结能有效抑制光生电子和空穴的复合,从而提了其光催化性能.  相似文献   

3.
氮氧化物(简称NOx,包括NO和NO2等)是形成二次有机气溶胶的重要前体物,其存在会严重影响空气质量并危害人类健康.目前用于NOx的去除的方法主要有过滤、物理吸附、热催化等.然而,这些技术存在高能耗及产生二次污染等缺点,严重制约其实际应用.近年来,光催化技术作为一种有效处理NOx的环保技术,因其具备在常温下高效处理低浓度NOx(大气污染浓度水平)的优点而获得广泛关注.最近,Bi2WO6光催化剂因其独特的层状结构以及特有的催化性质,表现出良好的可见光催化性能.Bi2WO6光催化性能与催化剂的形貌及尺寸大小密切相关,目前报道的Bi2WO6的形貌有片状、颗粒状、花状、中空微球等.其中,由小纳米颗粒堆积成的中空Bi2WO6微球因其大的比表面积和高的荷质传输速率,表现出显著优于其它形貌的光催化性能.目前已有少量关于中空结构Bi2WO6微球的制备方法的报道,这些方法均需引入纳米球状的"核"作为模板,并在其上生长Bi2WO6胶体颗粒,然后去除"核",从而得到中空结构.譬如,Shang等采用碳纳米球作为"核"制备出Bi2WO6微球,再通过煅烧手段去除碳"核".Thillai与合作者用硅球作为"核",为了得到中空结构Bi2WO6微球,用NaOH将硅"核"刻蚀.然而这类方法均涉及到复杂的制备过程和高昂的运行成本.超生喷雾热分解法是一种常见的制备尺寸可控的纳米球的方法.在之前的工作中,本研究组成功使用超声喷雾热解法制备出具有优良光催化活性的Bi2WO6实心微球.我们首次加入NaCl盐为模板,使用简单的超声喷雾热分解方法制备出具有中空结构的Bi2WO6微球光催化剂,合成过程无需采用复杂的除"核"手段.一系列表征表明:该微球由直径为41?148 nm的纳米片自组装而成,并在表面形成了不均匀分布的孔结构;并对Bi2WO6中空微球的生长机制做了详细的研究,考察了所制备Bi2WO6催化剂去除NO的效率.生长机制研究结果表明,NaCl盐在中空Bi2WO6微球的形成过程中发挥着关键性作用:(1)NaCl盐溶液在超生喷雾热分解法的高温过程中形成NaCl单晶并作为"核"模板,参与中空Bi2WO6微球的形成;(2)Na+离子有助于Bi2WO6微球的微结构-纳米片的生长;(3)Cl?离子有利于Bi2WO6微球表面微孔的形成;(4)NaCl模板水洗后留下中空结构的Bi2WO6微球;(5)NaCl盐也充当着多孔诱发剂,其水洗溢出过程会造成Bi2WO6微球表面的孔结构.性能测试表明,以NaCl盐为模板所制备的中空Bi2WO6微球表现出优异的光催化性能,其在模拟太阳光下去除NO的效率是未添加模板的1.7倍、以KCl为模板的1.5倍、以Na2SO4为模板的1.2倍.BET和DRS分析表明,中空结构Bi2WO6微球具有大的比表面积和高的可见光吸收,对提高催化性能起到重要作用.ESR测试结果表明,?OH和?O2?是中空Bi2WO6微球的光催化反应过程的主要活性物种,?O2?的产生有助于提高光催化剂降解NO的耐受性.  相似文献   

4.
首先利用水热法制备了由纳米片组装的粒径为1.5–2μm的Bi2WO6微球,然后在微球表面沉积了不同含量的AgC l(5 wt%,10 wt%,20 wt%,30 wt%),制备了异质结构Ag Cl/Bi2WO6微球光催化剂.利用X射线粉末衍射、扫描电镜、透射电镜、红外光谱、紫外-可见漫反射吸收等手段对所制的光催化剂进行表征,并以紫外光和可见光分别为光源,罗丹明B为降解对象测试了其光催化活性,考察复合不同含量的AgC l对Bi2WO6光催化剂的性能影响.结果表明,沉积AgC l对Bi2WO6的晶体结构、表面性能和光吸收性能没有产生明显影响,但大幅度提高了Bi2WO6的紫外和可见光催化活性.当复合20 wt%Ag Cl时,AgC l/Bi2WO6光催化活性最佳,紫外光下比纯Bi2WO6提高了2.2倍,可见光下提高了1倍.这主要是由于形成的Ag Cl/Bi2WO6异质结能有效抑制光生电子和空穴的复合,从而提了其光催化性能.  相似文献   

5.
采用水热法制备Bi2WO6-BiPO4异质结光催化剂.利用模拟太阳光照射下的罗丹明B降解实验评价了Bi2WO6-BiPO4复合物的光催化性能.结果表明,Bi2WO6-BiPO4光催化活性比Bi2WO6和BiPO4高得多.当Bi2WO6与BiPO4的摩尔比为1:1时复合光催化剂对罗丹明B的降解率最高.Bi2WO6-BiPO4催化活性增强主要归结为两者之间形成了有效的异质结结构,其内建电场能够促进光生载流子的分离.同时,Bi2WO6的加入增强了其对可见光的吸收.研究表明O2^· -和h^+在光催化降解过程中是主要的活性物种.  相似文献   

6.
以一种实验室自合成的双子季铵盐为表面活性剂,采用水热法,通过调节pH值,制备出由Bi2WO6纳米片自组装而成的不同片状团簇微球。研究了不同Bi2WO6片状团簇微球的物相结构、成分、晶体形貌和光致发光特性,探讨了其可能的生长机理。结果表明,在这种多季胺阳离子作用下,pH值对Bi2WO6片状团簇微球的物相、形貌和光致发光性能有明显的影响,随着pH值的增大,Bi2WO6片状团簇微球在(131)晶面处呈现明显的择优取向生长,在pH=5时,Bi2WO6微球可达到最大的发光强度。  相似文献   

7.
采用水热法制备了一系列Bi2WO6/Zn O异质结光催化剂,并对其进行X射线衍射(XRD)、紫外-可见光谱(UV-Vis DRS)、扫描电镜(SEM)、光电子能谱(EDS)等手段对其结构性质进行了表征。在含酚废水的液相反应体系中,研究了异质结Bi2WO6/Zn O复合光催化剂光催化降解苯酚的性能。结果表明,Bi2WO6/Zn O异质结的形成可以有效的抑制光生电子和空穴对的结合,使其光催化活性明显优于纯的Zn O和Bi2WO6;另外,异质结型Bi2WO6/Zn O复合光催化剂的表面OH·自由基更有利于光催化活性的提高。当Bi2WO6复合量为4wt%时,异质结Bi2WO6/Zn O复合光催化剂光催化降解苯酚的效果最佳。  相似文献   

8.
本文以Na2WO4·2H2O和Bi(NO3)3·5H2O为原料,采用水热法合成Bi2WO6光催化剂,利用XRD、SEM对Bi2WO6光催化剂的形貌及晶型进行了表征,结果表明,180℃/6h条件下合成的Bi2WO6光催化剂的结晶度良好,具有Bi2WO6特征峰,为规则层状多孔疏松绒线团状Bi2WO6,平均晶粒尺寸为0.283nm。以亮绿SF淡黄为目标降解染料,考察绒线团状Bi2WO6光催化剂光催化性能,研究绒线团状Bi2WO6光催化剂吸附和光催化降解染料的动力学规律,并探讨绒线团状Bi2WO6光催化剂投加量、不同光源、染料溶液的初始浓度、反应时间等因素对亮绿SF淡黄吸附和光催化降解的影响。实验结果表明:在298K,pH=7,绒线团状Bi2WO6用量为2g/L,亮绿SF淡黄的初始浓度为5mg·L-1,以氙灯(300W)为光源,搅拌2h,亮绿SF淡黄降解率达90.2%。绒线团状Bi2WO6可见光降解亮绿SF淡黄符合一级反应速率动力学方程。  相似文献   

9.
花状结构Bi2WO6多孔微球: 组装及光催化性能   总被引:2,自引:2,他引:0  
利用表面活性剂十六烷基三甲基溴化铵(CTAB)、十二烷基苯磺酸钠(SDBS)作为结构导向剂,在水热条件下合成了由纳米片组装而成的Bi2WO6花状多孔微球的新颖结构。探讨了反应时间、表面活性剂种类等因素对产物形貌、结构和性能的影响。在氙灯照射下,发现使用CTAB所得到的Bi2WO6比添加SDBS所得到的样品具有更高的催化罗丹明B降解的活性,原因是前者具有较大的比表面积和吸收阈值。同时提出了晶体可能的生长机理为各向异性生长特性和自组装-Ostwald熟化过程的结合。  相似文献   

10.
以Bi(NO3)3.5H2O、Na2WO4.2H2O为反应物,采用水热法,经由葡萄糖炭化合成了碳修饰Bi2WO6(C-Bi2WO6)催化剂;考察了C-Bi2WO6光催化降解3种邻苯二甲酸酯(PAEs)的催化性能.结果表明:C-Bi2WO6对PAEs的降解效果优于Bi2WO6,特别是在葡萄糖与Na2WO4.2H2O质量比约10∶100条件下得到的催化剂的催化性能最优.与此同时,当PAEs的pH=6时,降解效果最好;而PAEs的浓度也对PAEs的光催化降解有一定的影响.  相似文献   

11.
Bismuth tungstate (Bi(2)WO(6)) has attracted great research interest as an important visible-light-responsive photocatalyst. In this paper, we report a facile hydrothermal route for the shape-controlled synthesis of micro/nanostructured Bi(2)WO(6), without adding surfactants or templates. The results show that various morphologies of Bi(2)WO(6) including coralloid spherical particles, packed nanosheets, fluffy microspheres, and plates can be obtained by adjusting the pH values of the precursors. The as-prepared porous fluffy microspheres with a hierarchical architecture synthesized at pH 8 exhibit the highest photocatalytic activity for the degradation of Rhodamine (RhB) under visible light irradiation. The photodegradation efficiency reaches as high as 99% within 20 min irradiation. This enhanced photocatalytic activity can be attributed to the unique porous structure and high BET surface area of fluffy microspheres with hierarchical architecture.  相似文献   

12.
以Bi(NO3)3·5H2O和Na2WO3 ·2H2O为原料,以柠檬酸为络合剂,采用辅助水热法制备了Bi2WO6纳米片,运用X射线衍射、扫描电镜、场发射高分辨透射电镜、拉曼光谱、红外光谱和紫外-可见漫反射光谱等手段对样品进行了表征,并考察了该催化剂光催化去除甲基橙反应性能.结果表明,通过调节体系的pH值可制得结晶度良好...  相似文献   

13.
Surface-fluorinated TiO2 (F-TiO2) particles were prepared via the HF etching method. The surface characteristics of fluorinated TiO2, the adsorption modes of dyes, and the reaction pathways for the photocatalytic degradation of dye pollutants under visible light irradiation were investigated. It was found that, in the treatment of TiO2 by HF etching, F(-) not only displaces surface HO(-) but also substitutes some surface lattice oxygen. Using zwitterionic Rhodamine B (RhB) dye as a model, the change of the adsorption mode of RhB on F-TiO2 relative to that on pure TiO2 was validated by adsorption isotherms, X-ray photoelectron spectroscopy (XPS), and IR techniques for the first time. RhB preferentially anchors on pure TiO2 through the carboxylic (-COOH) group, while its adsorption group is switched to the cationic moiety (-NEt 2 group) on F-TiO2. Both the photocatalytic degradation kinetics and mechanisms were drastically changed after surface fluorination. Dyes with positively charged nitrogen-alkyl groups such as methylene blue (MB), malachite green (MG), Rhodamine 6G (Rh6G), and RhB all underwent a rapid N-dealkylation process on F-TiO2, while on pure TiO2 direct cleavage of dye chromophore ring structures predominated. The relationship between surface fluorination and the degradation rate/pathway of dyes under visible irradiation was also discussed in terms of the effect of fluorination on the surface adsorption of dyes and on the energy band structure of TiO2.  相似文献   

14.
Visible light-induced Bi(2)WO(6)/rectorite (BR) composites were prepared by a sol-gel method. The as-prepared samples were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), UV-vis diffuse reflectance spectrum, Fourier transform infrared (FTIR) spectrum, X-ray photoelectron spectroscopy (XPS) and Brunauer-Emmet-Teller (BET). The UV absorption edges of the BR-450 catalyst showed a marked red shift as compared to that of the pure Bi(2)WO(6). The photocatalytic activities of the as-prepared samples were evaluated by the photocatalytic degradation of 4BS dye in aqueous solution under visible light irradiation (>420 nm). The results showed that the BR-450 catalyst exhibited a strong adsorption capability and a higher photocatalytic degradation activity than the pure Bi(2)WO(6) for 4BS dye, which could be attributed to the synergetic effects of the adsorbability of rectorite and the photocatalytic property of Bi(2)WO(6) in it.  相似文献   

15.
Visible-light-induced degradation of rhodamine B by nanosized Bi2WO6   总被引:7,自引:0,他引:7  
Visible-light-induced photodegradation of rhodamine B over nanosized Bi2WO6 has been observed. Bi2WO6 exhibited a high photoactivity to photodegrade rhodamine B in the central pH solution under visible irradiation (lambda > 420 nm). After five recycles for the photodegradation of rhodamine B, the catalyst did not exhibit any significant loss of activity, confirming the photocatalyst is essentially stable. The total organic carbon measurement displayed that a high degree of mineralization was achieved in the present photochemical system. The results of density functional theory calculation illuminated that the visible-light absorption band in the Bi2WO6 catalyst is attributed to the band transition from the hybrid orbitals of Bi6s and O2p to the W5d orbitals. The Bi2WO6-assisted photocatalytic degradation of rhodamine occurs via two competitive processes: a photocatalytic process and a photosensitized process. The transformation of rhodamine is mainly via the photocatalytic process. Kinetic studies by using electron spin resonance and the radical scavenger technologies suggest that *OH is not the dominant photooxidant. Direct hole transfers and O2*- could take part in Bi2WO6 photocatalysis. This study provided a possible treatment approach for organic pollutants by using visible light in aqueous ecosystems.  相似文献   

16.
社会经济快速发展的同时, 也带来了日益严峻的环境污染问题. 半导体光催化氧化技术因节能环保而在环境领域有广阔的应用前景. 作为最具有代表性的半导体光催化材料, TiO2因为其禁带宽度(3.2 eV)比较大, 只能被紫外光激发, 因而对太阳能的利用率较低. 作为一种最简单的含铋层状氧化物, Bi2WO6的禁带宽度(2.7 eV)相对较小, 可以部分利用太阳光中的可见光, 因而受到广大研究者的青睐. 但是, Bi2WO6光催化材料的可见光响应范围较窄, 仅能被波长小于450 nm的光激发, 且激发后的光生载流子容易复合, 导致光催化效率不高. 因此, 迫切需要对Bi2WO6光催化材料进行结构修饰与改性,采用拓展其光响应范围和抑制载流子复合, 来提高其光催化活性.本文采用离子交换法原位合成了具有核-壳结构的Bi2S3@Bi2WO6纳米片, 充分利用Bi2S3优良的可见光响应性能和半导体异质结光催化剂的构建, 来提高Bi2WO6的光催化活性. 结果表明, 随着Na2S·9H2O用量从0增加到1.5 g, 所得催化剂的光活性不断提高, X3B的降解速率常数由0.40×10-3min-1增加到6.6×10-3min-1, 催化剂活性提高了16.5倍. 当进一步增加Na2S·9H2O的用量时(1.5-3.0 g), 复合催化剂的光活性下降. 这是由于过多Na2S·9H2O的引入导致在催化剂表面生成了没有光活性的NaBiS2层(Bi2S3+ Na2S = 2NaBiS2), 占据了催化剂的活性位点, 阻碍了染料分子与催化剂的直接接触. Bi2WO6@Bi2S3异质结纳米片光活性的提高, 可归因于Bi2S3的敏化作用极大拓展了复合催化剂的光响应范围; 另一方面, Bi2WO6和Bi2S3两者之间的半导体异质结效应有效促进了光生载流子在空间的有效分离, 抑制了光生电子-空穴的复合, 从而提高了复合催化剂的催化效率. 本研究为其他半导体复合材料的原位生长制备提供了新的思路.  相似文献   

17.
The photocatalytic degradation for some kinds of dye-constituent aromatics with TiO2 in the presence of phosphate anions in aqueous dispersion was investigated under both visible light (λ>480 nm) and UV irradiation. The influences of phosphate anion upon the degradation of organics under these different conditions was revealed by the measurement of point of zero ξ-potential (P ZC) of TiO2, UV-VIS spectra, HPLC and LC-MS. The adsorption and photodegradation of some organics, which adsorb on the surface of TiO2 by a dominating group bearing a positive charge, was enhanced, while that of others, which adsorb on the surface of TiO2 by a dominating group bearing negative charge, was depressed by the presence of phosphate anions under UV irradiation at the experimental conditions (pH 4.3). It was confirmed that better adsorption of organics on the surface of TiO2 had an advantage in their photocatalytic degradation under UV irradiation. On the other hand, although the adsorption of rhodamine B (RhB) and methylene Blue (MB) markedly increased, their degradation under visible light irradiation was depressed in the presence of phosphate anions. It is suggested that phosphate anion greatly blocked the electron transfer from excited RhB and MB molecules as RhB and MB molecules predominantly adsorbed on the surface of TiO2 through the electrostatic interaction with surface adsorbed phosphate anions.  相似文献   

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