化工学报 ›› 2011, Vol. 62 ›› Issue (S2): 179-183.DOI: 10.3969/j.issn.0438-1157.2011.z2.033

• 材料化学工程与纳米技术 • 上一篇    

甘油中水合TiO2及不同晶型纳米TiO2光致变色现象

罗孜怡,黄婉霞,罗轶,冯修军   

  1. 四川大学材料科学与工程学院
  • 收稿日期:2011-03-15 出版日期:2011-12-20 发布日期:2011-12-20
  • 通讯作者: 罗孜怡

Photochromic property of hydrous TiO2 and different crystalline nano-TiO2 in glycerol

LUO Ziyi,HUANG Wanxia,LUO Yi,FENG Xiujun   

  • Received:2011-03-15 Online:2011-12-20 Published:2011-12-20

摘要: 系统地研究了甘油中水合TiO2及不同晶型纳米TiO2的光致变色现象。实验结果显示无定型水合TiO2具有最明显的变色行为,锐钛型纳米TiO2变色程度次之,金红石型纳米TiO2没有明显变色现象发生,混晶型(金红石和锐钛)纳米TiO2的变色程度介于金红石型和锐钛型之间。XPS结果表明TiO2的光致变色是由Ti3+引起的。从电子-空穴对复合率影响Ti 3+形成的角度对实验现象作出了详细解释,电子-空穴对复合率越高,Ti3+形成率越低,从而变色程度越浅;并运用双注入机制和小极子模型阐述了不同晶型TiO2的光致变色机理。分析了甘油环境对TiO2光致变色现象的影响,得出甘油对TiO2的光致变色行为有促进作用。

关键词: TiO2, 晶型, 光致变色, 甘油, Ti3+

Abstract: The photochromic of nano-TiO2 with different crystals and the hydrous TiO2 in the glycerol environment were systematic studied in this paper. Experimental results showed that,amorphous TiO2(hydrous TiO2)has the most obvious discoloration,while rutile nano-TiO2 has no obvious coloration,the degree of discoloration of anatase nano-TiO2 is between rutile and amorphous,the mixed crystals(rutile and anatase)nano-TiO2 is weaker than anatase but stronger than rutile. The samples were characterized by X-ray photoelectron spectroscopy(XPS)and UV-visible(UV-vis),and the results indicated that the Ti3+ existed in the colored sample and the visible absorption spectrum of samples were significantly different before and after colored. The double-injection mechanism and the small polaron model were used to describe the photochromic mechanism of TiO2. The electron-hole recombination rate effected on the Ti3+ formation and the effects of glycerin for TiO2 photochromic phenomenon were investigated in this paper. The formation rate of Ti3+ decreased with the increasing of the electron-hole recombination rate,which leaded to the weakening of the color. The glycerin could promote the photochromic of TiO2..

Key words: titanium dioxide, crystal, photochromic, glycerin, Ti3+

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