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Current advances in precious metal core–shell catalyst design

机译:贵金属核-壳催化剂设计的最新进展

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摘要

Precious metal nanoparticles are commonly used as the main active components of various catalysts. Given their high cost, limited quantity, and easy loss of catalytic activity under severe conditions, precious metals should be used in catalysts at low volumes and be protected from damaging environments. Accordingly, reducing the amount of precious metals without compromising their catalytic performance is difficult, particularly under challenging conditions. As multifunctional materials, core–shell nanoparticles are highly important owing to their wide range of applications in chemistry, physics, biology, and environmental areas. Compared with their single-component counterparts and other composites, core–shell nanoparticles offer a new active interface and a potential synergistic effect between the core and shell, making these materials highly attractive in catalytic application. On one hand, when a precious metal is used as the shell material, the catalytic activity can be greatly improved because of the increased surface area and the closed interfacial interaction between the core and the shell. On the other hand, when a precious metal is applied as the core material, the catalytic stability can be remarkably improved because of the protection conferred by the shell material. Therefore, a reasonable design of the core–shell catalyst for target applications must be developed. We summarize the latest advances in the fabrications, properties, and applications of core–shell nanoparticles in this paper. The current research trends of these core–shell catalysts are also highlighted.
机译:贵金属纳米粒子通常用作各种催化剂的主要活性成分。鉴于其高成本,数量有限以及在苛刻条件下容易丧失催化活性的特点,贵金属应以小体积用于催化剂中,并应避免受到破坏性环境的影响。因此,减少贵金属的量而不损害其催化性能是困难的,特别是在具有挑战性的条件下。作为多功能材料,核壳纳米粒子由于在化学,物理,生物学和环境领域的广泛应用而非常重要。与单组分对应物和其他复合材料相比,核-壳纳米粒子提供了新的活性界面以及核和壳之间的潜在协同效应,使这些材料在催化应用中极具吸引力。一方面,当贵金属用作壳材料时,由于表面积增加和核与壳之间的封闭界面相互作用,催化活性可以大大提高。另一方面,当使用贵金属作为芯材时,由于壳材料赋予的保护作用,可以显着提高催化稳定性。因此,必须针对目标应用开发合理的核壳催化剂设计。我们在本文中总结了核-壳纳米颗粒的制备,性能和应用方面的最新进展。这些核壳催化剂的当前研究趋势也得到了强调。

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