Cargando…

ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water

A precious metal and Cd-free photocatalyst system for efficient CO(2) reduction in water is reported. The hybrid assembly consists of ligand-free ZnSe quantum dots (QDs) as a visible-light photosensitiser combined with a phosphonic acid-functionalised Ni(cyclam) catalyst, NiCycP. This precious metal...

Descripción completa

Detalles Bibliográficos
Autores principales: Kuehnel, Moritz F., Sahm, Constantin D., Neri, Gaia, Lee, Jonathan R., Orchard, Katherine L., Cowan, Alexander J., Reisner, Erwin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5911736/
https://www.ncbi.nlm.nih.gov/pubmed/29732127
http://dx.doi.org/10.1039/c7sc04429a
_version_ 1783316264981102592
author Kuehnel, Moritz F.
Sahm, Constantin D.
Neri, Gaia
Lee, Jonathan R.
Orchard, Katherine L.
Cowan, Alexander J.
Reisner, Erwin
author_facet Kuehnel, Moritz F.
Sahm, Constantin D.
Neri, Gaia
Lee, Jonathan R.
Orchard, Katherine L.
Cowan, Alexander J.
Reisner, Erwin
author_sort Kuehnel, Moritz F.
collection PubMed
description A precious metal and Cd-free photocatalyst system for efficient CO(2) reduction in water is reported. The hybrid assembly consists of ligand-free ZnSe quantum dots (QDs) as a visible-light photosensitiser combined with a phosphonic acid-functionalised Ni(cyclam) catalyst, NiCycP. This precious metal-free photocatalyst system shows a high activity for aqueous CO(2) reduction to CO (Ni-based TON(CO) > 120), whereas an anchor-free catalyst, Ni(cyclam)Cl(2), produced three times less CO. Additional ZnSe surface modification with 2-(dimethylamino)ethanethiol (MEDA) partially suppresses H(2) generation and enhances the CO production allowing for a Ni-based TON(CO) of > 280 and more than 33% selectivity for CO(2) reduction over H(2) evolution, after 20 h visible light irradiation (λ > 400 nm, AM 1.5G, 1 sun). The external quantum efficiency of 3.4 ± 0.3% at 400 nm is comparable to state-of-the-art precious metal photocatalysts. Transient absorption spectroscopy showed that band-gap excitation of ZnSe QDs is followed by rapid hole scavenging and very fast electron trapping in ZnSe. The trapped electrons transfer to NiCycP on the ps timescale, explaining the high performance for photocatalytic CO(2) reduction. With this work we introduce ZnSe QDs as an inexpensive and efficient visible light-absorber for solar fuel generation.
format Online
Article
Text
id pubmed-5911736
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-59117362018-05-04 ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water Kuehnel, Moritz F. Sahm, Constantin D. Neri, Gaia Lee, Jonathan R. Orchard, Katherine L. Cowan, Alexander J. Reisner, Erwin Chem Sci Chemistry A precious metal and Cd-free photocatalyst system for efficient CO(2) reduction in water is reported. The hybrid assembly consists of ligand-free ZnSe quantum dots (QDs) as a visible-light photosensitiser combined with a phosphonic acid-functionalised Ni(cyclam) catalyst, NiCycP. This precious metal-free photocatalyst system shows a high activity for aqueous CO(2) reduction to CO (Ni-based TON(CO) > 120), whereas an anchor-free catalyst, Ni(cyclam)Cl(2), produced three times less CO. Additional ZnSe surface modification with 2-(dimethylamino)ethanethiol (MEDA) partially suppresses H(2) generation and enhances the CO production allowing for a Ni-based TON(CO) of > 280 and more than 33% selectivity for CO(2) reduction over H(2) evolution, after 20 h visible light irradiation (λ > 400 nm, AM 1.5G, 1 sun). The external quantum efficiency of 3.4 ± 0.3% at 400 nm is comparable to state-of-the-art precious metal photocatalysts. Transient absorption spectroscopy showed that band-gap excitation of ZnSe QDs is followed by rapid hole scavenging and very fast electron trapping in ZnSe. The trapped electrons transfer to NiCycP on the ps timescale, explaining the high performance for photocatalytic CO(2) reduction. With this work we introduce ZnSe QDs as an inexpensive and efficient visible light-absorber for solar fuel generation. Royal Society of Chemistry 2018-01-24 /pmc/articles/PMC5911736/ /pubmed/29732127 http://dx.doi.org/10.1039/c7sc04429a Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Kuehnel, Moritz F.
Sahm, Constantin D.
Neri, Gaia
Lee, Jonathan R.
Orchard, Katherine L.
Cowan, Alexander J.
Reisner, Erwin
ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water
title ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water
title_full ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water
title_fullStr ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water
title_full_unstemmed ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water
title_short ZnSe quantum dots modified with a Ni(cyclam) catalyst for efficient visible-light driven CO(2) reduction in water
title_sort znse quantum dots modified with a ni(cyclam) catalyst for efficient visible-light driven co(2) reduction in water
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5911736/
https://www.ncbi.nlm.nih.gov/pubmed/29732127
http://dx.doi.org/10.1039/c7sc04429a
work_keys_str_mv AT kuehnelmoritzf znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater
AT sahmconstantind znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater
AT nerigaia znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater
AT leejonathanr znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater
AT orchardkatherinel znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater
AT cowanalexanderj znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater
AT reisnererwin znsequantumdotsmodifiedwithanicyclamcatalystforefficientvisiblelightdrivenco2reductioninwater