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首页> 外文期刊>International Journal of Quantum Chemistry >Designed synthesis of cobalt and its alloys by polyol process
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Designed synthesis of cobalt and its alloys by polyol process

机译:多元醇法设计合成钴及其合金

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摘要

The role of polyol, precursor and reaction promoting agents in the synthesis of metal and alloy nanoparticles using polyol process has been investigated by analyzing the reaction steps involved in the synthesis of cobalt in Co ion-polyol-[OH?] ion system in detail. The reducing potential of polyols and the easiness with which any metal salt can react to form reducible complexes has been evaluated using the orbital molecular theory and the results were experimentally verified. The reduction limit of polyol and their extension using reaction promoting agents such as [OH?] ions is also explained. The reduction of cobalt is preceded by various reaction stages of complex/compound formation, which has been fully identified. Furthermore, the reducing form of cobalt has been identified as either cobalt alkoxide or cobalt hydroxide. The results confirmed that the complex forming reactions that take place prior to the formation of the precursor, which finally get reduced to metal, play a decisive role in determining the physical properties of the nanoparticles. The approach can be extended to reduce any metals or alloys using polyol process.
机译:通过详细分析Co离子-多元醇-[OH2]离子体系中钴合成所涉及的反应步骤,研究了多元醇,前体和反应促进剂在使用多元醇工艺合成金属和合金纳米颗粒中的作用。使用轨道分子理论评估了多元醇的还原潜力,以及任何金属盐都能反应形成可还原络合物的难易程度,并通过实验验证了结果。还说明了多元醇的还原极限及其使用反应促进剂如[OH 2]离子的延伸。钴的还原是在复杂的/化合物形成的各个反应阶段之前进行的,这一阶段已被充分确认。此外,已将钴的还原形式鉴定为醇钴盐或氢氧化钴。结果证实,在前体形成之前发生的复杂的形成反应最终被还原为金属,在决定纳米颗粒的物理性质方面起着决定性的作用。该方法可以扩展为使用多元醇工艺还原任何金属或合金。

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