Identification of active sites on supported metal catalysts with carbon nanotube hydrogen highways
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Briggs, Nicholas M.
Barrett, Lawrence
Wegener, Evan C.
Herrera, Leidy V.
Gomez, Laura A.
Miller, Jeffrey T.
Crossley, Steven P.
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A
Data Nutrition Label92/100
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Assessed Jul 1, 2026
Abstract
Catalysts consisting of metal particles supported on reducible oxides exhibit promising
activity and selectivity for a variety of current and emerging industrial processes. Enhanced
catalytic activity can arise from direct contact between the support and the metal or from
metal-induced promoter effects on the oxide. Discovering the source of enhanced catalytic
activity and selectivity is challenging, with conflicting arguments often presented based on
indirect evidence. Here, we separate the metal from the support by a controlled distance
while maintaining the ability to promote defects via the use of carbon nanotube hydrogen
highways. As illustrative cases, we use this approach to show that the selective transformation
of furfural to methylfuran over Pd/TiO2 occurs at the Pd-TiO2 interface while anisole
conversion to phenol and cresol over Cu/TiO2 is facilitated by exposed Ti3+ cations on the
support. This approach can be used to clarify many conflicting arguments in the literature
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Briggs, N. M.; Barrett, L.; Wegener, E. C.; Herrera, L. V.; Gomez, L. A.; Miller, J. T.; Crossley, S. P.Identification of Active Sites on Supported Metal Catalysts with Carbon Nanotube Hydrogen Highways. Nat. Commun.2018, 9, 3827, 10.1038/s41467-018-06100-9
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