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深入了解反应物结构效应在钯/碳催化醛加氢反应中的作用

An Insight into the Role of Reactant Structure Effect in Pd/C Catalysed Aldehyde Hydrogenation.

作者信息

Stucchi Marta, Vasile Francesca, Cattaneo Stefano, Villa Alberto, Chieregato Alessandro, Vandegehuchte Bart D, Prati Laura

机构信息

Chemistry Department, University of Milan, Via Golgi 19, 20133 Milan, Italy.

TotalEnergies Research Center-Qatar (TRCQ), Qatar Science & Technology Park, Al Gharrafa, Doha P.O. Box 9803, Qatar.

出版信息

Nanomaterials (Basel). 2022 Mar 9;12(6):908. doi: 10.3390/nano12060908.

Abstract

The different activity of a 1% Pd/carbon catalyst towards aromatic and aliphatic aldehydes hydrogenation has been explored by C NMR relaxation. The ratio between T1 relaxation times of adsorbed (ads) and free diffusing (bulk) molecules (T1/T1) can be used as an indicator of the relative strength of interaction between the reactant and the catalytic surface, where the lower the T1/T1, the higher the adsorption strength. It can be seen that 1% Pd/carbon showed a reverse catalytic behaviour towards benzaldehyde and octanal hydrogenation, which can be explained by analysing the T1 relaxation times related to each substrate in the presence of the catalyst. Comparing and correlating the different T1/T1 values, we were able to prove that the different catalytic results mainly depend on the contrasting adsorption behaviour of substrates on the catalyst. Moreover, the role of the solvent has been disclosed, as NMR results revealed that the adsorption of the reactants was strongly affected by the choice of solvent, which is revealed to be critical in modulating catalytic activity. As a consequence, T1/T1 measurements can provide a guide to the selection of appropriate reaction conditions for improving catalytic activity.

摘要

通过碳核磁共振弛豫研究了1%钯/碳催化剂对芳香醛和脂肪醛氢化反应的不同活性。吸附分子(ads)和自由扩散分子(本体)的T1弛豫时间之比(T1/T1)可作为反应物与催化表面相互作用相对强度的指标,其中T1/T1越低,吸附强度越高。可以看出,1%钯/碳对苯甲醛和辛醛氢化反应表现出相反的催化行为,这可以通过分析催化剂存在下与每种底物相关的T1弛豫时间来解释。通过比较和关联不同的T1/T1值,我们能够证明不同的催化结果主要取决于底物在催化剂上不同的吸附行为。此外,溶剂的作用也已揭示,因为核磁共振结果表明反应物的吸附受到溶剂选择的强烈影响,这在调节催化活性方面至关重要。因此,T1/T1测量可为选择合适的反应条件以提高催化活性提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4668/8955477/a316d5e0ac2a/nanomaterials-12-00908-g001.jpg

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