Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria

2D electronic spectroscopy enables a spatially-averaged view of the electronic structure of a heterogeneous system. Here, the authors extend it to sub-micron resolution and ~106 times better sensitivity, to resolve spatially varying excitonic structure in a heterogeneous mixture of photosynthetic ce...

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Autores principales: Vivek Tiwari, Yassel Acosta Matutes, Alastair T. Gardiner, Thomas L. C. Jansen, Richard J. Cogdell, Jennifer P. Ogilvie
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/7149b8f4130d415293f0e8b256e98c51
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spelling oai:doaj.org-article:7149b8f4130d415293f0e8b256e98c512021-12-02T17:31:58ZSpatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria10.1038/s41467-018-06619-x2041-1723https://doaj.org/article/7149b8f4130d415293f0e8b256e98c512018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06619-xhttps://doaj.org/toc/2041-17232D electronic spectroscopy enables a spatially-averaged view of the electronic structure of a heterogeneous system. Here, the authors extend it to sub-micron resolution and ~106 times better sensitivity, to resolve spatially varying excitonic structure in a heterogeneous mixture of photosynthetic cells.Vivek TiwariYassel Acosta MatutesAlastair T. GardinerThomas L. C. JansenRichard J. CogdellJennifer P. OgilvieNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-10 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Vivek Tiwari
Yassel Acosta Matutes
Alastair T. Gardiner
Thomas L. C. Jansen
Richard J. Cogdell
Jennifer P. Ogilvie
Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
description 2D electronic spectroscopy enables a spatially-averaged view of the electronic structure of a heterogeneous system. Here, the authors extend it to sub-micron resolution and ~106 times better sensitivity, to resolve spatially varying excitonic structure in a heterogeneous mixture of photosynthetic cells.
format article
author Vivek Tiwari
Yassel Acosta Matutes
Alastair T. Gardiner
Thomas L. C. Jansen
Richard J. Cogdell
Jennifer P. Ogilvie
author_facet Vivek Tiwari
Yassel Acosta Matutes
Alastair T. Gardiner
Thomas L. C. Jansen
Richard J. Cogdell
Jennifer P. Ogilvie
author_sort Vivek Tiwari
title Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
title_short Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
title_full Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
title_fullStr Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
title_full_unstemmed Spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
title_sort spatially-resolved fluorescence-detected two-dimensional electronic spectroscopy probes varying excitonic structure in photosynthetic bacteria
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/7149b8f4130d415293f0e8b256e98c51
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AT yasselacostamatutes spatiallyresolvedfluorescencedetectedtwodimensionalelectronicspectroscopyprobesvaryingexcitonicstructureinphotosyntheticbacteria
AT alastairtgardiner spatiallyresolvedfluorescencedetectedtwodimensionalelectronicspectroscopyprobesvaryingexcitonicstructureinphotosyntheticbacteria
AT thomaslcjansen spatiallyresolvedfluorescencedetectedtwodimensionalelectronicspectroscopyprobesvaryingexcitonicstructureinphotosyntheticbacteria
AT richardjcogdell spatiallyresolvedfluorescencedetectedtwodimensionalelectronicspectroscopyprobesvaryingexcitonicstructureinphotosyntheticbacteria
AT jenniferpogilvie spatiallyresolvedfluorescencedetectedtwodimensionalelectronicspectroscopyprobesvaryingexcitonicstructureinphotosyntheticbacteria
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