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Effects of reaction parameters on the preparation of submicron Cu particles by liquid phase reduction method and the study of reaction mechanism

机译:反应参数对液相还原法制备亚微米铜颗粒的影响及反应机理的研究

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摘要

Submicron Cu particles were prepared by reducing Cu~(2+) ions with ascorbic acid via liquid phase reduction method. The oxidation potential of ascorbic acid (C6H8O6) was measured to evaluate the feasibility of the redox reaction at different pH. Ascorbic acid was able to reduce the Cu~(2+) to Cu particles when the solution pH varied between 3 and 7. The effects of the reaction parameters, including the solution pH, the concentration of PVP (polyvinylpyrrolidone) and Cu~(2+), on the preparation of Cu particles were also investigated. The reaction path varied with the solution pH. Cu particles could be directly reduced from Cu~(2+) at pH 3, whereas they are reduced through Cu2O at pH 5 or 7. PVP was effective in inhibiting the agglomeration of Cu particles through steric effect.
机译:通过液相还原法用抗坏血酸还原Cu〜(2+)离子制备亚微米级的Cu粒子。测量了抗坏血酸(C6H8O6)的氧化电位,以评估在不同pH下氧化还原反应的可行性。当溶液的pH在3至7之间变化时,抗坏血酸能够将Cu〜(2+)还原为Cu颗粒。反应参数的影响包括溶液的pH值,PVP(聚乙烯吡咯烷酮)的浓度和Cu〜(2 +),对制备Cu颗粒也进行了研究。反应路径随溶液pH而变化。在pH为3时,Cu可以直接从Cu〜(2+)还原,而在pH为5或7时可以通过Cu2O还原。PVP通过空间效应有效地抑制了Cu的团聚。

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