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Surfactant-free large scale synthesis of Co3O4 quantum dots at room temperature

机译:室温下无​​表面活性剂大规模合成Co3O4量子点

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Co3O4 quantum dots (QDs) with diameter of 3-5 nm were successfully prepared by a facile surfactant-free large-scale synthesis strategy at room temperature in ethanol. The formation of Co3O4 QDs follows the sequence of Co2+ +2OH(-) -> Co(OH)(2) -> CoOOH -> Co3O4. It is demonstrated that the dissolved oxygen and the bubbling of compressed air are the two keys for the synthesis of Co3O4 QDs. The produced Co (OH)(2) was oxidized to CoOOH by the oxygen dissolving in ethanol. In order to synthesize pure phase Co3O4 QDs, compressed air has to be bubbled into the solution vigorously to promote the decomposition of CoOOH by removing the oxygen evolved from the decomposition reaction. Due to small particle size and inherent properties of Co3O4, the QDs have excellent electrochemical performance and high longterm electrochemical stability. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:通过简便的无表面活性剂大规模合成策略,在室温下于乙醇中成功制备了直径为3-5 nm的Co3O4量子点(QD)。 Co3O4 QD的形成遵循Co2 + + 2OH(-)-> Co(OH)(2)-> CoOOH-> Co3O4的顺序。结果表明,溶解氧和压缩空气鼓泡是合成Co3O4 QD的两个关键。通过将氧气溶解在乙醇中,将生成的Co(OH)(2)氧化为CoOOH。为了合成纯相Co3O4 QD,必须将压缩空气大力鼓入溶液中,以通过除去分解反应中产生的氧气来促进CoOOH的分解。由于小颗粒和Co3O4的固有特性,这些量子点具有出色的电化学性能和较高的长期电化学稳定性。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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