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电泳沉积法制备纳米铝/氧化镍铝热剂薄膜及其动力学研究

Fabrication and kinetics study of nano-Al/NiO thermite film by electrophoretic deposition.

作者信息

Zhang Daixiong, Li Xueming

机构信息

†College of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, China.

出版信息

J Phys Chem A. 2015 May 21;119(20):4688-94. doi: 10.1021/jp5129113. Epub 2015 May 7.

Abstract

Nano-Al/NiO thermites were successfully prepared as film by electrophoretic deposition (EPD). For the key issue of this EPD, a mixture solvent of ethanol-acetylacetone (1:1 in volume) containing 0.00025 M nitric acid was proved to be a suitable dispersion system for EPD. The kinetics of electrophoretic deposition for both nano-Al and nano-NiO were investigated; the linear relation between deposition weight and deposition time in short time and parabolic relation in prolonged time were observed in both EPDs. The critical transition time between linear deposition kinetics and parabolic deposition kinetics for nano-Al and nano-NiO were 20 and 10 min, respectively. The theoretical calculation of the kinetics of electrophoretic deposition revealed that the equivalence ratio of nano-Al/NiO thermites film would be affected by the behavior of electrophoretic deposition for nano-Al and nano-NiO. The equivalence ratio remained steady when the linear deposition kinetics dominated for both nano-Al and nano-NiO. The equivalence ratio would change with deposition time when deposition kinetics for nano-NiO changed into parabolic kinetics dominated after 10 min. Therefore, the rule was suggested to be suitable for other EPD of bicomposites. We also studied thermodynamic properties of electrophoretic nano-Al/NiO thermites film as well as combustion performance.

摘要

通过电泳沉积(EPD)成功制备了纳米铝/氧化镍铝热剂薄膜。对于这种电泳沉积的关键问题,已证明含有0.00025 M硝酸的乙醇 - 乙酰丙酮混合溶剂(体积比1:1)是一种适用于电泳沉积的分散体系。研究了纳米铝和纳米氧化镍的电泳沉积动力学;在两种电泳沉积中均观察到短时间内沉积重量与沉积时间的线性关系以及长时间内的抛物线关系。纳米铝和纳米氧化镍的线性沉积动力学与抛物线沉积动力学之间的临界转变时间分别为20分钟和10分钟。电泳沉积动力学的理论计算表明,纳米铝/氧化镍铝热剂薄膜的当量比会受到纳米铝和纳米氧化镍电泳沉积行为的影响。当纳米铝和纳米氧化镍均以线性沉积动力学为主时,当量比保持稳定。当纳米氧化镍的沉积动力学在10分钟后转变为以抛物线动力学为主时,当量比会随沉积时间而变化。因此,该规则被认为适用于其他双组分复合材料的电泳沉积。我们还研究了电泳纳米铝/氧化镍铝热剂薄膜的热力学性质以及燃烧性能。

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