MOCVD法合成活性炭负载型TiO(2):操作参数研究

Xing-Wang Zhang, Ming-Hua Zhou, Le-Cheng Lei, Su Xu
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引用次数: 15

摘要

将金属有机化学气相沉积(MOCVD)技术应用于活性炭负载型二氧化钛光催化剂的制备。考察了载气流量、源温度、沉积温度等条件参数对沉积速率的影响。在载气流速为400 ml/min、源温度为423 K、沉积温度为913 K的条件下,沉积速率最大可达8.2 mg/(g x h)。在753 ~ 913 K温度下,沉积速率符合Arrhenius行为,对应的活化能E(a)为51.09 kJ/mol。当沉积温度为773 ~ 973 K时,TiO(2)仅存在于锐钛矿相。随着沉积温度从1073 K增加到1273 K,金红石含量从7%急剧增加到70%。结果表明,在773 K的沉积温度和448 K的较高源温度下,tio2颗粒分布较细,主要分布在10 ~ 20 nm范围内。
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Synthesis of TiO(2) supported on activated carbon by MOCVD: operation parameters study.

The metallo-organic chemical vapor deposition (MOCVD) technique has been applied to the preparation of the photocatalyst titanium dioxide supported on activated carbon. The effects of various condition parameters such as carrier gas flow rate, source temperature and deposition temperature on the deposition rate were investigated. The maximum deposition rate of 8.2 mg/(g x h) was obtained under conditions of carrier gas flow rate of 400 ml/min, source temperature of 423 K and deposition temperature of 913 K. The deposition rate followed Arrhenius behavior at temperature of 753 K to 913 K, corresponding to activation energy E(a) of 51.09 kJ/mol. TiO(2) existed only in anatase phase when the deposition temperature was 773 K to 973 K. With increase of deposition temperature from 1073 K to 1273 K, the rutile content sharply increased from 7% to 70%. It was found that a deposition temperature of 773 K and a higher source temperature of 448 K resulted in finely dispersed TiO(2) particles, which were mainly in the range of 10-20 nm.

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