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A versatile route to fabricate single atom catalysts with high chemoselectivity and regioselectivity in hydrogenation

机译:生产氢化中具有高化学选择性和区域选择性的单原子催化剂的通用途径

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摘要

Preparation of single atom catalysts (SACs) is of broad interest to materials scientists and chemists but remains a formidable challenge. Herein, we develop an efficient approach to synthesize SACs via a precursor-dilution strategy, in which metalloporphyrin (MTPP) with target metals are co-polymerized with diluents (tetraphenylporphyrin, TPP), followed by pyrolysis to N-doped porous carbon supported SACs (M1/N-C). Twenty-four different SACs, including noble metals and non-noble metals, are successfully prepared. In addition, the synthesis of a series of catalysts with different surface atom densities, bi-metallic sites, and metal aggregation states are achieved. This approach shows remarkable adjustability and generality, providing sufficient freedom to design catalysts at atomic-scale and explore the unique catalytic properties of SACs. As an example, we show that the prepared Pt1/N-C exhibits superior chemoselectivity and regioselectivity in hydrogenation. It only converts terminal alkynes to alkenes while keeping other reducible functional groups such as alkenyl, nitro group, and even internal alkyne intact.
机译:材料科学家和化学家对单原子催化剂(SAC)的制备有着广泛的兴趣,但仍然是一个巨大的挑战。本文中,我们开发了一种通过前体稀释策略合成SAC的有效方法,其中金属卟啉(MTPP)与目标金属与稀释剂(四苯基卟啉,TPP)共聚,然后热解为N掺杂的多孔碳负载的SAC( M1 / NC)。成功制备了24种不同的SAC,包括贵金属和非贵金属。另外,实现了一系列具有不同表面原子密度,双金属位和金属聚集态的催化剂的合成。该方法显示出显着的可调节性和通用性,为在原子级设计催化剂和探索SAC的独特催化性能提供了足够的自由度。作为一个例子,我们表明,所制备的Pt1 / N-C在氢化中表现出优异的化学选择性和区域选择性。它仅将末端炔烃转化为烯烃,同时保留其他可还原的官能团,例如烯基,硝基,甚至内部炔烃保持完整。

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