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Effect of Cl- anions on photocatalytic decomposition of gaseous ozone over Au @ Ag/TiO2 catalyst

机译:Cl-对Au @ Ag / TiO2催化剂上气态臭氧光催化分解的影响

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Au core Ag shell composite structure nanoparticles were prepared using a sol method. The Au core Ag shell composite nanoparticles were loaded on TiO2 nanoparticles as support using a modified powder-sol method, enabling the generation of Au @ Ag/TiO2 photocatalysts for photocatalytic decomposition and elimination of ozone. The sols were characterized by means of ultraviolet-visible light (UV-Vis) reflection spectrometry, X-ray photoelectron spectroscopy (XPS), and transmission electron microscopy (TEM). The activity of the Au @ Ag/TiO2 photocatalysts for photocatalytic decomposition and elimination of ozone was evaluated and the effect of Cl- anions on the photocatalytic activity of the catalysts was highlighted. Results showed that Au @ Ag/TiO2 prepared via the modified powder-sol route in the presence of an appropriate amount of NaCl solid as demulsifier had better activity in the photocatalytic decomposition and elimination of ozone. At the same time, Au @ Ag/TiO2 catalysts had better ability to resist poisonous Cl- anions than conventional Au/TiO2 catalyst. The reasons could be, first, that NaCl was capable of reducing the concentration of free Ag+ by adsorption on the surface of Ag particles forming AgCl and enhancing the formation of Au core Ag shell particles, leading to a better resistance to Cl- anions of the catalysts, and, second, AgCl took part in the photocatalytic decomposition of ozone together with Au @ Ag/TiO2 catalysts and had a synergistic effect on the latter, resulting in better photocatalytic activity of Au @ Ag/TiO2 catalysts.
机译:使用溶胶法制备了金核银壳复合结构纳米粒子。使用改进的粉末-溶胶法将金核银壳复合纳米颗粒负载在TiO2纳米颗粒上作为载体,从而能够生成Au @ Ag / TiO2光催化剂用于光催化分解和消除臭氧。通过紫外可见光(UV-Vis)反射光谱,X射线光电子能谱(XPS)和透射电子显微镜(TEM)来表征溶胶。评价了Au @ Ag / TiO2光催化剂对光催化分解和消除臭氧的活性,并重点说明了Cl-阴离子对催化剂光催化活性的影响。结果表明,在适量的NaCl固体破乳剂存在下,通过修饰的粉末-溶胶路线制备的Au @ Ag / TiO2具有更好的光催化分解和消除臭氧的活性。同时,Au @ Ag / TiO2催化剂比常规的Au / TiO2催化剂具有更好的抗有毒氯离子的能力。原因可能是,首先,NaCl能够通过吸附在形成AgCl的Ag颗粒表面来降低游离Ag +的浓度,并增强Au核Ag壳颗粒的形成,从而导致对Cl-的更好的抗性。其次,AgCl与Au @ Ag / TiO2催化剂一起参与了臭氧的光催化分解,并且对后者具有协同作用,从而使Au @ Ag / TiO2催化剂具有更好的光催化活性。

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