Efficient and Limiting Reactions in Aqueous Light-Induced Hydrogen Evolution Systems using Molecular Catalysts and Quantum Dots

Autor/a

Gimbert-Suriñach, Carolina

Albero, Josep

Stoll, Thibaut

Fortage, Jerôme

Collomb, Marie-Noëlle

Deronzier, Alain

Palomares, Emilio

Llobet, Antoni

Fecha de publicación

2014



Resumen

<p> Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel dependence. It has recently been proven that the use of quantum dots as light harvesters in combination with catalysts is a valuable strategy to obtain photogenerated hydrogen. However, the light to hydrogen conversion efficiency of these systems is reported to be lower than 40%. The low conversion efficiency is mainly due to losses occurring at the different interfacial charge-transfer reactions taking place in the multicomponent system during illumination. In this work we have analyzed all the involved reactions in the hydrogen evolution catalysis of a model system composed of CdTe quantum dots, a molecular cobalt catalyst and vitamin C as sacrificial electron donor. The results demonstrate that the electron transfer from the quantum dots to the catalyst occurs fast enough and efficiently (nanosecond time scale), while the back electron transfer and catalysis are much slower (millisecond and microsecond time scales). Further improvements of the photodriven proton reduction should focus on the catalytic rate enhancement, which should be at least in the hundreds of nanoseconds time scale.</p> <p> &nbsp;</p>

Tipo de documento

Artículo

Lengua

Inglés

Publicado por

American Chemical Society

Es versión de

Journal of the American Chemical Society

Número del acuerdo de la subvención

CTQ2013-49075-R

Documentos relacionados

MINECO with FEDER Funds

Proyectos I+D+I - Retos 2013

PRO-H

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