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Surface Organometallic Chemistry: Paving the Way Beyond Well-Defined Supported Organometallics and Single-Site Catalysis

机译:表面有机金属化学:铺平超出定义的支持有机金属和单网催化的方式

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The molecular approach to single-site and nanoparticle-based heterogeneous catalysts relies on a stringent control over the surface chemistry, enabled by the judicious choice of dehydroxylated supports and tailored organometallic precursors. Aided by the advanced characterization methods, the field of surface organometallic chemistry (SOMC) has provided molecular-level insights into the mechanism and the nature of active sites of various industrial catalysts. The development of SOMC over the last decades yielded supported catalysts outperforming their homogeneous precursors and provided design principles for catalyst development. Applying the rational structure-activity approach of homogeneous catalysis to the surface species leads to further advances of SOMC, including functional materials for sustainable chemistry, energy storage and imaging, to mention just a few.
机译:单点和基于纳米粒子的异质催化剂的分子方法依赖于对表面化学的严格控制,通过明智地选择脱羟基化的载体和量身定制的有机金属前体。 通过先进的表征方法,表面有机金属化学(SOMC)的领域已经为各种工业催化剂的活性位点的机制和性质提供了分子水平的洞察。 在过去几十年中,SOMC的发展产生了负载型催化剂,优于其均匀的前体,并提供了催化剂发育的设计原理。 将均匀催化的合理结构 - 活性方法应用于表面物种,导致SOMC的进一步进展,包括可持续化学,能源存储和成像的功能材料,提及少数。

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