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The polyol process: a unique method for easy access to metal nanoparticles with tailored sizes, shapes and compositions

机译:多元醇工艺:一种独特的方法,便于使用量身定制的尺寸,形状和组成的金属纳米粒子

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摘要

After about three decades of development, the polyol process is now widely recognized and practised as a unique soft chemical method for the preparation of a large variety of nanoparticles which can be used in important technological fields. It offers many advantages: low cost, ease of use and, very importantly, already proven scalability for industrial applications. Among the different classes of inorganic nanoparticles which can be prepared in liquid polyols, metals were the first reported. This review aims to give a comprehensive account of the strategies used to prepare monometallic nanoparticles and multimetallic materials with tailored size and shape. As regards monometallic materials, while the preparation of noble as well as ferromagnetic metals is now clearly established, the scope of the polyol process has been extended to the preparation of more electropositive metals, such as post-transition metals and semi-metals. The potential of this method is also clearly displayed for the preparation of alloys, intermetallics and core-shell nanostructures with a very large diversity of compositions and architectures.
机译:经过大约三十年的发展后,多元醇过程现在被广泛认可和实践,作为一种独特的软化化学方法,用于制备各种纳米颗粒,可用于重要的技术领域。它提供了许多优点:成本低,易用性,非常重要,已经证明了工业应用的可扩展性。在可以在液体多元醇中制备的不同类别的无机纳米颗粒中,首先报道金属。该审查旨在全面陈述用于制备单金属纳米颗粒和多金属材料,具有量身定制的尺寸和形状的策略。关于单金属材料,虽然现在明确地建立了贵铃以及铁磁性金属的制备,但多元醇过程的范围已经扩展到制备更高的电工金属,例如过渡后金属和半金属。该方法的潜力也用于制备合金,金属间质和核心 - 壳纳米结构,具有非常大的组合物和架构。

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  • 来源
    《Chemical Society Reviews》 |2018年第14期|共47页
  • 作者单位

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Paris Diderot Sorbonne Paris Cite ITODYS CNRS UMR 7086 15 Rue JA de Baif F-75205 Paris 13 France;

    Univ Toulouse INSA CNRS UPS UMR LPCNO 5215 135 Ave Rangueil F-31077 Toulouse 4 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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