Du Xiangsha, Jin Rongchao
Department of Chemistry , Carnegie Mellon University , Pittsburgh , Pennsylvania 15213 , United States.
ACS Nano. 2019 Jul 23;13(7):7383-7387. doi: 10.1021/acsnano.9b04533. Epub 2019 Jun 27.
Recent efforts in nanoscience to control nanoparticles with atomic precision have met with success in solution-phase chemistry, opening new opportunities. The products, atomically precise nanoclusters (NCs), are not only compositionally well-defined but also structurally precise with unprecedented tailoring over the core and surface for specific functionalities. In this Perspective, we first highlight recent work in metal-hydride NCs for applications in catalytic hydrogenation and then reflect on the catalytic opportunities of atomically precise metal NCs. Metal NCs, as a new class of material, hold great promise for realizing the goals of understanding catalytic mechanisms at the atomic/molecular level (., construction of active sites) and developing rules designing new catalysts with high activity and selectivity for important reactions. Tailoring NC catalysts at the atomic level will bring many exciting opportunities in future catalysis research.
纳米科学领域近期致力于以原子精度控制纳米粒子的努力在溶液相化学中取得了成功,带来了新的机遇。这些产物,即原子精确的纳米团簇(NCs),不仅在组成上定义明确,而且在结构上精确,能够对核心和表面进行前所未有的定制以实现特定功能。在这篇展望文章中,我们首先强调金属氢化物纳米团簇在催化氢化应用方面的近期工作,然后思考原子精确的金属纳米团簇的催化机遇。金属纳米团簇作为一类新型材料,在实现原子/分子水平上理解催化机制(例如活性位点的构建)以及制定设计对重要反应具有高活性和选择性的新型催化剂的规则方面具有巨大潜力。在原子水平上定制纳米团簇催化剂将为未来的催化研究带来许多令人兴奋的机遇。