Pd@(BiPy-PEG-OMe) is a catalyst comprised of palladium nanoparticles (Pd-NPs) stabilized and made water soluble by 2,2'-bipyridine- end-functionalized polyethylene glycol monomethyl ether (BiPy-PEG-OMe). The catalyst has been used in the past for nitrile hydrogenation. In this work, we prove that it is also very active for photocatalytic hydrogen generation, which might be true for more catalysts of its kind and therefore worthy of further investigation. Using the inexpensive photosensitizer Eosin Y, high turnover numbers (TONs) of over 4500 were achieved for the evolution of molecular hydrogen from pure water under visible-light irradiation. Replacing Eosin Y, which showed only a short lifetime under experimental conditions (i.e. a few hours), by a novel osmium-based metal complex, which is also characterized by its crystal structure, the longevity of the system can be boosted to over one and a half months with a maximum TON of 1500. Combining excellent yield and stability is a clear goal for further research.

Application of a Water-Soluble Matrix-Stabilized Palladium Nanoparticle Catalyst for Photcatalytic Hydrogen Generation with High Activity and Stabiity

Capozzoli Laura;Oberhauser Werner;
2018

Abstract

Pd@(BiPy-PEG-OMe) is a catalyst comprised of palladium nanoparticles (Pd-NPs) stabilized and made water soluble by 2,2'-bipyridine- end-functionalized polyethylene glycol monomethyl ether (BiPy-PEG-OMe). The catalyst has been used in the past for nitrile hydrogenation. In this work, we prove that it is also very active for photocatalytic hydrogen generation, which might be true for more catalysts of its kind and therefore worthy of further investigation. Using the inexpensive photosensitizer Eosin Y, high turnover numbers (TONs) of over 4500 were achieved for the evolution of molecular hydrogen from pure water under visible-light irradiation. Replacing Eosin Y, which showed only a short lifetime under experimental conditions (i.e. a few hours), by a novel osmium-based metal complex, which is also characterized by its crystal structure, the longevity of the system can be boosted to over one and a half months with a maximum TON of 1500. Combining excellent yield and stability is a clear goal for further research.
2018
Istituto di Chimica dei Composti OrganoMetallici - ICCOM -
Green Chemistry
hydrogen
palladium
nanoparticles
photocatalysis
polyethylene glycol
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/376734
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