Strong plasmonic fluorescence enhancement of individual plant light-harvesting complexes

dc.contributor.authorKyeyune, Farooq
dc.contributor.authorBotha, Joshua Leon
dc.contributor.authorVan Heerden, Bertus
dc.contributor.authorMaly, Pavel
dc.contributor.authorVan Grondelle, Rienk
dc.contributor.authorDiale, M. (Mmantsae Moche)
dc.contributor.authorKruger, T.P.J. (Tjaart)
dc.contributor.emailtjaart.kruger@up.ac.zaen_ZA
dc.date.accessioned2020-03-11T09:07:33Z
dc.date.issued2019-07
dc.description.abstractPlasmonic coupling of metallic nanoparticles and adjacent pigments can dramatically increase the brightness of the pigments due to the enhanced local electric field. Here, we demonstrate that the fluorescence brightness of a single plant light-harvesting complex (LHCII) can be significantly enhanced when coupled to a gold nanorod (AuNR). The AuNRs utilized in this study were prepared via chemical reactions, and the hybrid system was constructed using a simple and economical spin-assisted layer-by-layer technique. Enhancement of fluorescence brightness of up to 240-fold was observed, accompanied by a 109-fold decrease in the average (amplitude-weighted) fluorescence lifetime from approximately 3.5 ns down to 32 ps, corresponding to an excitation enhancement of 63-fold and emission enhancement of up to 3.8-fold. This large enhancement is due to the strong spectral overlap of the longitudinal localized surface plasmon resonance of the utilized AuNRs and the absorption or emission bands of LHCII. This study provides an inexpensive strategy to explore the fluorescence dynamics of weakly emitting photosynthetic light-harvesting complexes at the single molecule level.en_ZA
dc.description.departmentPhysicsen_ZA
dc.description.embargo2020-07-29
dc.description.librariangl2020en_ZA
dc.description.sponsorshipThe National Research Foundation (NRF), South Africa grant no. 102431 (F. K.), grant no. 8990, 94107, 112085 and 109302 (T. P. J. K.). T. P. J. K. was further supported by the Photonics Initiative of South Africa, Rental Pool Programme of the National Laser Centre, South Africa, Department of Science and Technology and the University of Pretoria through the Research Development Programme, Strategic Research Funding and the Institutional Research Theme on Energy. M. D. acknowledges funding from the NRF Nanotechnology Flagship Program grant no. 88021. J. L. B. was supported by the Vrije Universiteit Amsterdam–NRF South Africa Desmond Tutu Programme. B. v. H was supported by the Department of Science and Technology–NRF grant no. 115463. R. v. G. gratefully acknowledges his “Academy Professor” grant from the Netherlands Royal Academy of Arts and Sciences (KNAW).en_ZA
dc.description.urihttps://pubs.rsc.org/en/journals/journalissues/nr#!recentarticles&adven_ZA
dc.identifier.citationKyeyune, F., Botha, J.L., Van Heerden, B. et al. 2019, 'Strong plasmonic fluorescence enhancement of individual plant light-harvesting complexes', Nanoscale, vol. 11, no. 32, pp. 15139-15146.en_ZA
dc.identifier.issn2040-3364 (print)
dc.identifier.issn2040-3372 (online)
dc.identifier.other10.1039/c9nr04558a
dc.identifier.urihttp://hdl.handle.net/2263/73709
dc.language.isoenen_ZA
dc.publisherRoyal Society of Chemistryen_ZA
dc.rights© The Royal Society of Chemistry 2019en_ZA
dc.subjectPlant light-harvesting complexen_ZA
dc.subjectLight-harvesting complex (LHCII)en_ZA
dc.subjectFluorescenceen_ZA
dc.subjectPhotosynthetic light-harvesting complexen_ZA
dc.subjectSingle molecule spectroscopy (SMS)en_ZA
dc.titleStrong plasmonic fluorescence enhancement of individual plant light-harvesting complexesen_ZA
dc.typePostprint Articleen_ZA

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