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Formation and Properties of Stabilized Aluminum Nanoparticles

机译:稳定铝纳米粒子的形成与性能

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The wet-chemical synthesis of aluminum nanoparticles was investigated systematically by using dimethylethylamine alane and 1 -methylpyrrolidine alane as precursors and molecules with one or a pair of carboxylic acid groups as surface passivation agents. Dimethylethylamine alane was more reactive, capable of yielding well-defined and dispersed aluminum nanoparticles. 1 -Methylpyrrolidine alane was less reactive and more complex in the catalytic decomposition reaction, for which various experimental parameters and conditions were used and evaluated. The results suggested that the passivation agent played dual roles of trapping aluminum particles to keep them nanoscale during the alane decomposition and protecting the aluminum nanoparticles postproduction from surface oxidation and that an appropriate balance between the rate of alane decomposition (depending more sensitively on the reaction temperature) and the timing in the introduction of the passivation agent into the reaction mixture was critical to the desired product mixes and/or morphologies. Some fundamental and technical issues on the alane decomposition and the protection of the resulting aluminum nanoparticles are discussed.
机译:以二甲基乙胺铝烷和1-甲基吡咯烷铝烷为前驱体,以一个或一对羧酸基团的分子为表面钝化剂,系统地研究了铝纳米颗粒的湿化学合成。二甲基乙胺铝烷反应性更高,能够产生定义明确且分散的铝纳米颗粒。 1-甲基吡咯烷铝烷在催化分解反应中反应性较低并且较复杂,为此使用和评估了各种实验参数和条件。结果表明,钝化剂在捕获铝颗粒以保持其在铝烷分解过程中保持纳米级并保护铝纳米颗粒的生产不受表面氧化的双重作用以及铝烷分解速率之间的适当平衡(更敏感地取决于反应温度) )和将钝化剂引入反应混合物中的时间对所需的产物混合物和/或形态至关重要。讨论了铝烷分解和所得铝纳米颗粒的保护方面的一些基本和技术问题。

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