Cargando…
Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces
Functional porphyrins have attracted intense attention due to their remarkably high extinction coefficients in the visible region and potential for optical and energy‐related applications. Two new routes to functionalised SWNTs have been established using a bulky Zn(II)‐porphyrin featuring thiolate...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5724654/ https://www.ncbi.nlm.nih.gov/pubmed/28444700 http://dx.doi.org/10.1002/chem.201605232 |
_version_ | 1783285397943484416 |
---|---|
author | Mao, Boyang Calatayud, David G. Mirabello, Vincenzo Kuganathan, Navaratnarajah Ge, Haobo Jacobs, Robert M. J. Shepherd, Ashley M. Ribeiro Martins, José A. Bernardino De La Serna, Jorge Hodges, Benjamin J. Botchway, Stanley W. Pascu, Sofia I. |
author_facet | Mao, Boyang Calatayud, David G. Mirabello, Vincenzo Kuganathan, Navaratnarajah Ge, Haobo Jacobs, Robert M. J. Shepherd, Ashley M. Ribeiro Martins, José A. Bernardino De La Serna, Jorge Hodges, Benjamin J. Botchway, Stanley W. Pascu, Sofia I. |
author_sort | Mao, Boyang |
collection | PubMed |
description | Functional porphyrins have attracted intense attention due to their remarkably high extinction coefficients in the visible region and potential for optical and energy‐related applications. Two new routes to functionalised SWNTs have been established using a bulky Zn(II)‐porphyrin featuring thiolate groups at the periphery. We probed the optical properties of this zinc(II)‐substituted, bulky aryl porphyrin and those of the corresponding new nano‐composites with single walled carbon nanotube (SWNTs) and coronene, as a model for graphene. We report hereby on: i) the supramolecular interactions between the pristine SWNTs and Zn(II)‐porphyrin by virtue of π–π stacking, and ii) a novel covalent binding strategy based on the Bingel reaction. The functional porphyrins used acted as dispersing agent for the SWNTs and the resulting nanohybrids showed improved dispersibility in common organic solvents. The synthesized hybrid materials were probed by various characterisation techniques, leading to the prediction that supramolecular polymerisation and host–guest functionalities control the fluorescence emission intensity and fluorescence lifetime properties. For the first time, XPS studies highlighted the differences in covalent versus non‐covalent attachments of functional metalloporphyrins to SWNTs. Gas‐phase DFT calculations indicated that the Zn(II)‐porphyrin interacts non‐covalently with SWNTs to form a donor–acceptor complex. The covalent attachment of the porphyrin chromophore to the surface of SWNTs affects the absorption and emission properties of the hybrid system to a greater extent than in the case of the supramolecular functionalisation of the SWNTs. This represents a synthetic challenge as well as an opportunity in the design of functional nanohybrids for future sensing and optoelectronic applications. |
format | Online Article Text |
id | pubmed-5724654 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-57246542017-12-12 Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces Mao, Boyang Calatayud, David G. Mirabello, Vincenzo Kuganathan, Navaratnarajah Ge, Haobo Jacobs, Robert M. J. Shepherd, Ashley M. Ribeiro Martins, José A. Bernardino De La Serna, Jorge Hodges, Benjamin J. Botchway, Stanley W. Pascu, Sofia I. Chemistry Full Papers Functional porphyrins have attracted intense attention due to their remarkably high extinction coefficients in the visible region and potential for optical and energy‐related applications. Two new routes to functionalised SWNTs have been established using a bulky Zn(II)‐porphyrin featuring thiolate groups at the periphery. We probed the optical properties of this zinc(II)‐substituted, bulky aryl porphyrin and those of the corresponding new nano‐composites with single walled carbon nanotube (SWNTs) and coronene, as a model for graphene. We report hereby on: i) the supramolecular interactions between the pristine SWNTs and Zn(II)‐porphyrin by virtue of π–π stacking, and ii) a novel covalent binding strategy based on the Bingel reaction. The functional porphyrins used acted as dispersing agent for the SWNTs and the resulting nanohybrids showed improved dispersibility in common organic solvents. The synthesized hybrid materials were probed by various characterisation techniques, leading to the prediction that supramolecular polymerisation and host–guest functionalities control the fluorescence emission intensity and fluorescence lifetime properties. For the first time, XPS studies highlighted the differences in covalent versus non‐covalent attachments of functional metalloporphyrins to SWNTs. Gas‐phase DFT calculations indicated that the Zn(II)‐porphyrin interacts non‐covalently with SWNTs to form a donor–acceptor complex. The covalent attachment of the porphyrin chromophore to the surface of SWNTs affects the absorption and emission properties of the hybrid system to a greater extent than in the case of the supramolecular functionalisation of the SWNTs. This represents a synthetic challenge as well as an opportunity in the design of functional nanohybrids for future sensing and optoelectronic applications. John Wiley and Sons Inc. 2017-05-19 2017-07-21 /pmc/articles/PMC5724654/ /pubmed/28444700 http://dx.doi.org/10.1002/chem.201605232 Text en © 2017 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Full Papers Mao, Boyang Calatayud, David G. Mirabello, Vincenzo Kuganathan, Navaratnarajah Ge, Haobo Jacobs, Robert M. J. Shepherd, Ashley M. Ribeiro Martins, José A. Bernardino De La Serna, Jorge Hodges, Benjamin J. Botchway, Stanley W. Pascu, Sofia I. Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces |
title | Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces |
title_full | Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces |
title_fullStr | Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces |
title_full_unstemmed | Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces |
title_short | Fluorescence‐Lifetime Imaging and Super‐Resolution Microscopies Shed Light on the Directed‐ and Self‐Assembly of Functional Porphyrins onto Carbon Nanotubes and Flat Surfaces |
title_sort | fluorescence‐lifetime imaging and super‐resolution microscopies shed light on the directed‐ and self‐assembly of functional porphyrins onto carbon nanotubes and flat surfaces |
topic | Full Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5724654/ https://www.ncbi.nlm.nih.gov/pubmed/28444700 http://dx.doi.org/10.1002/chem.201605232 |
work_keys_str_mv | AT maoboyang fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT calatayuddavidg fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT mirabellovincenzo fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT kuganathannavaratnarajah fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT gehaobo fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT jacobsrobertmj fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT shepherdashleym fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT ribeiromartinsjosea fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT bernardinodelasernajorge fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT hodgesbenjaminj fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT botchwaystanleyw fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces AT pascusofiai fluorescencelifetimeimagingandsuperresolutionmicroscopiesshedlightonthedirectedandselfassemblyoffunctionalporphyrinsontocarbonnanotubesandflatsurfaces |