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Support effects in a Rh diamine complex heterogenized on carbon materials

机译:在碳材料上rh二胺络合物中的支持作用

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摘要

The Rh diamine complex [Rh(COD)NH2(CH2)2NH(CH2)3Si(OCH3)3] BF4 was heterogenized by covalent bonding on two carbon xerogels and on carbon nanofibers, with the objective of preparing hydrogenation hybrid catalysts. Gas adsorption, SEM, TEM, DTP, ICP-OES and XPS were used for characterization. The results indicate that the active molecule is mainly located in supermicropores and produces microporosity blockage. The hybrid catalysts are more active than the homogeneous complex, but the Rh complex is partially reduced upon reaction. This modification is related to the nature of the support, which also shows effects in the stabilization against sintering of the Rh particles formed. The support porosity is a key factor in the selectivity differences between the catalysts.
机译:通过在两种碳杂波和碳纳米纤维上的共价键合,Rh二胺络合物[RH(COD)NH 2(CH2)2NH(CH 2)2NH(CH2)3SI(OCH3)3] BF4通过共价键合,其目的是制备氢化杂交催化剂的目的。 气体吸附,SEM,TEM,DTP,ICP-OES和XPS用于表征。 结果表明,活性分子主要位于超胶质孔中并产生微孔堵塞。 杂交催化剂比均相复合物更活跃,但在反应时部分地降低了rh络合物。 该修饰与支撑的性质有关,其也显示出在稳定抵抗形成的Rh颗粒的烧结中的效果。 支撑孔隙率是催化剂之间的选择性差异的关键因素。

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