研究钛酸丁酯水解沉淀法制备纳米 Ti O2 粒子的方法 ,考察水解反应介质组成、酸碱性、回流与共沸处理 ,添加聚合物等反应与处理条件对所制得 Ti O2 粒子粒径、形貌的影响 .发现钛酸丁酯在碱性或中性条件下 ,醇水之比较小的含少量聚乙二...研究钛酸丁酯水解沉淀法制备纳米 Ti O2 粒子的方法 ,考察水解反应介质组成、酸碱性、回流与共沸处理 ,添加聚合物等反应与处理条件对所制得 Ti O2 粒子粒径、形貌的影响 .发现钛酸丁酯在碱性或中性条件下 ,醇水之比较小的含少量聚乙二醇的介质中水解反应 ,低温短时间脱除有机溶剂并经低温短时煅烧所制得的纳米 Ti O2 粒子是由数个锐钛晶型晶粒构成的纳米 Ti O2 粒子 ,粒子粒径小 。展开更多
The transition metal ion doped TiO 2 nanoparticles were prepared with hydrothermal method, and the effects of doping different metal ions on the ability of TiO 2 in photocatalyzing degradation of rhodamine B(RB) were ...The transition metal ion doped TiO 2 nanoparticles were prepared with hydrothermal method, and the effects of doping different metal ions on the ability of TiO 2 in photocatalyzing degradation of rhodamine B(RB) were studied. The results showed that the doping of Fe 3+ , Co 2+ , Ni 2+ and Cr 3+ in TiO 2 nanoparticles made the photocatalytic efficiency of the TiO 2 particles reduce and the higher the initial content of Fe 3+ , the lower the ability of TiO 2 in photocatalyzing the degradation of RB. But the doping of Zn 2+ and Cd 2+ , especially Zn 2+ , made the photocatalytic efficiency of the TiO 2 particles enhance, showing a great increase of the rate constant( k ) and the initial reaction rate( r ini ).展开更多
文摘研究钛酸丁酯水解沉淀法制备纳米 Ti O2 粒子的方法 ,考察水解反应介质组成、酸碱性、回流与共沸处理 ,添加聚合物等反应与处理条件对所制得 Ti O2 粒子粒径、形貌的影响 .发现钛酸丁酯在碱性或中性条件下 ,醇水之比较小的含少量聚乙二醇的介质中水解反应 ,低温短时间脱除有机溶剂并经低温短时煅烧所制得的纳米 Ti O2 粒子是由数个锐钛晶型晶粒构成的纳米 Ti O2 粒子 ,粒子粒径小 。
文摘The transition metal ion doped TiO 2 nanoparticles were prepared with hydrothermal method, and the effects of doping different metal ions on the ability of TiO 2 in photocatalyzing degradation of rhodamine B(RB) were studied. The results showed that the doping of Fe 3+ , Co 2+ , Ni 2+ and Cr 3+ in TiO 2 nanoparticles made the photocatalytic efficiency of the TiO 2 particles reduce and the higher the initial content of Fe 3+ , the lower the ability of TiO 2 in photocatalyzing the degradation of RB. But the doping of Zn 2+ and Cd 2+ , especially Zn 2+ , made the photocatalytic efficiency of the TiO 2 particles enhance, showing a great increase of the rate constant( k ) and the initial reaction rate( r ini ).