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Efficient cleavage of aryl ether C-O linkages by Rh-Ni and Ru-Ni nanoscale catalysts operating in water.


ABSTRACT: Bimetallic Ru-Ni and Rh-Ni nanocatalysts coated with a phase transfer agent efficiently cleave aryl ether C-O linkages in water in the presence of hydrogen. For dimeric substrates with weaker C-O linkages, i.e. α-O-4 and β-O-4 bonds, low loadings of the precious metal (Rh or Ru) in the nanocatalysts quantitatively afford monomers, whereas for the stronger 4-O-5 linkage higher amounts of the precious metal are required to achieve complete conversion. Under the optimized, relatively mild operating conditions, the C-O bonds in a range of substituted ether compounds are efficiently cleaved, and mechanistic insights into the reaction pathways are provided. This work paves the way to sustainable approaches for the hydrogenolysis of C-O bonds.

SUBMITTER: Bulut S 

PROVIDER: S-EPMC6049526 | biostudies-literature | 2018 Jul

REPOSITORIES: biostudies-literature

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Efficient cleavage of aryl ether C-O linkages by Rh-Ni and Ru-Ni nanoscale catalysts operating in water.

Bulut Safak S   Siankevich Sviatlana S   van Muyden Antoine P AP   Alexander Duncan T L DTL   Savoglidis Georgios G   Zhang Jiaguang J   Hatzimanikatis Vassily V   Yan Ning N   Dyson Paul J PJ  

Chemical science 20180606 25


Bimetallic Ru-Ni and Rh-Ni nanocatalysts coated with a phase transfer agent efficiently cleave aryl ether C-O linkages in water in the presence of hydrogen. For dimeric substrates with weaker C-O linkages, <i>i.e.</i> α-<i>O</i>-4 and β-<i>O</i>-4 bonds, low loadings of the precious metal (Rh or Ru) in the nanocatalysts quantitatively afford monomers, whereas for the stronger 4-<i>O</i>-5 linkage higher amounts of the precious metal are required to achieve complete conversion. Under the optimize  ...[more]

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