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首页> 外文期刊>Angewandte Chemie >Atom-by-Atom Resolution of Structure-Function Relations over Low-Nuclearity Metal Catalysts
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Atom-by-Atom Resolution of Structure-Function Relations over Low-Nuclearity Metal Catalysts

机译:逐个原子分辨率的低核金属催化剂结构功能关系

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Controlling the structure sensitivity of catalyzed reactions over metals is central to developing atom-efficient chemical processes. Approaching the minimum ensemble size, the properties enter a non-scalable regime in which each atom counts. Almost all trends in this ultra-small frontier derive from surface science approaches using model systems, because of both synthetic and analytical challenges. Exploiting the unique coordination chemistry of carbon nitride, we discriminate through experiments and simulations the interplay between the geometry, electronic structure, and reactivity of palladium atoms, dimers, and trimers. Catalytic tests evidence application-dependent requirements of the active ensemble. In the semi-hydrogenation of alkynes, the nuclearity primarily impacts activity, whereas the selectivity and stability are affected in Suzuki coupling. This powerful approach will provide practical insights into the design of heterogeneous catalysts comprising well-defined numbers of atoms.
机译:控制催化反应对金属的结构敏感性是开发原子有效化学过程的核心。接近最小合奏大小,该属性输入每个原子计数的不可扩展的制度。由于合成和分析挑战,这种超小型前沿的几乎所有趋势都来自表面科学方法,因为合成和分析挑战。利用碳氮化物的独特协调化学,我们通过实验区分和模拟几何形状,电子结构和钯原子,二聚体和三聚体的反应性之间的相互作用。催化测试有效集合的证据依赖性要求。在炔烃的半氢化中,核心主要影响活性,而选择性和稳定性受到铃木偶联的影响。这种强大的方法将提供对包括明确定义数量的原子的异质催化剂的设计的实用洞察。

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