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Structured carbons as supports for hydrogenation hybrid catalysts prepared by the immobilization of a Rh diamine complex

机译:结构化碳作为固定化Rh二胺配合物制备的氢化杂化催化剂的载体

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摘要

A CNF-monolith sample (carbon nanofibres grown on a ceramic monolith), and a granular carbon xerogel have been used as supports for hybrid catalysts where the active species is an Rh diamine complex. The advantages of these supports are their open porous structure and their morphology, which make catalyst handling easier and avoid difficult separation processes. The obtained catalysts are noticeably more active than the homogeneous Rh complex and are stable against leaching. At first use, partial reduction of the Rh complex takes place and nanometer-sized Rh particles develop, which increases the catalyst activity. Despite the open porous structure, mass transport limitations are present, especially in the case of the carbon xerogel based catalyst. Differences in internal mass transfer limitations are essentially due to the different diffusional path lengths.
机译:CNF整料样品(在陶瓷整料上生长的碳纳米纤维)和粒状碳干凝胶已被用作杂化催化剂的载体,其中活性物质是Rh二胺配合物。这些载体的优点是其开放的多孔结构及其形态,这使得催化剂的处理更加容易并避免了困难的分离过程。所获得的催化剂明显比均相Rh络合物更具活性,并且对浸出稳定。首次使用时,Rh络合物发生部分还原,并形成了纳米级Rh颗粒,从而提高了催化剂活性。尽管具有开放的多孔结构,但是仍然存在传质限制,特别是在基于碳干凝胶的催化剂的情况下。内部传质限制的差异主要是由于不同的扩散路径长度。

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