Cargando…

Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface

[Image: see text] Semiconducting π-conjugated polymers have attracted significant interest for applications in light-emitting diodes, field-effect transistors, photovoltaics, and nonlinear optoelectronic devices. Central to the success of these functional organic materials is the facile tunability o...

Descripción completa

Detalles Bibliográficos
Autores principales: Riss, Alexander, Wickenburg, Sebastian, Gorman, Patrick, Tan, Liang Z., Tsai, Hsin-Zon, de Oteyza, Dimas G., Chen, Yen-Chia, Bradley, Aaron J., Ugeda, Miguel M., Etkin, Grisha, Louie, Steven G., Fischer, Felix R., Crommie, Michael F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022646/
https://www.ncbi.nlm.nih.gov/pubmed/24387223
http://dx.doi.org/10.1021/nl403791q
_version_ 1782316444990570496
author Riss, Alexander
Wickenburg, Sebastian
Gorman, Patrick
Tan, Liang Z.
Tsai, Hsin-Zon
de Oteyza, Dimas G.
Chen, Yen-Chia
Bradley, Aaron J.
Ugeda, Miguel M.
Etkin, Grisha
Louie, Steven G.
Fischer, Felix R.
Crommie, Michael F.
author_facet Riss, Alexander
Wickenburg, Sebastian
Gorman, Patrick
Tan, Liang Z.
Tsai, Hsin-Zon
de Oteyza, Dimas G.
Chen, Yen-Chia
Bradley, Aaron J.
Ugeda, Miguel M.
Etkin, Grisha
Louie, Steven G.
Fischer, Felix R.
Crommie, Michael F.
author_sort Riss, Alexander
collection PubMed
description [Image: see text] Semiconducting π-conjugated polymers have attracted significant interest for applications in light-emitting diodes, field-effect transistors, photovoltaics, and nonlinear optoelectronic devices. Central to the success of these functional organic materials is the facile tunability of their electrical, optical, and magnetic properties along with easy processability and the outstanding mechanical properties associated with polymeric structures. In this work we characterize the chemical and electronic structure of individual chains of oligo-(E)-1,1′-bi(indenylidene), a polyacetylene derivative that we have obtained through cooperative C1–C5 thermal enediyne cyclizations on Au(111) surfaces followed by a step-growth polymerization of the (E)-1,1′-bi(indenylidene) diradical intermediates. We have determined the combined structural and electronic properties of this class of oligomers by characterizing the atomically precise chemical structure of individual monomer building blocks and oligomer chains (via noncontact atomic force microscopy (nc-AFM)), as well as by imaging their localized and extended molecular orbitals (via scanning tunneling microscopy and spectroscopy (STM/STS)). Our combined structural and electronic measurements reveal that the energy associated with extended π-conjugated states in these oligomers is significantly lower than the energy of the corresponding localized monomer orbitals, consistent with theoretical predictions.
format Online
Article
Text
id pubmed-4022646
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-40226462014-05-19 Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface Riss, Alexander Wickenburg, Sebastian Gorman, Patrick Tan, Liang Z. Tsai, Hsin-Zon de Oteyza, Dimas G. Chen, Yen-Chia Bradley, Aaron J. Ugeda, Miguel M. Etkin, Grisha Louie, Steven G. Fischer, Felix R. Crommie, Michael F. Nano Lett [Image: see text] Semiconducting π-conjugated polymers have attracted significant interest for applications in light-emitting diodes, field-effect transistors, photovoltaics, and nonlinear optoelectronic devices. Central to the success of these functional organic materials is the facile tunability of their electrical, optical, and magnetic properties along with easy processability and the outstanding mechanical properties associated with polymeric structures. In this work we characterize the chemical and electronic structure of individual chains of oligo-(E)-1,1′-bi(indenylidene), a polyacetylene derivative that we have obtained through cooperative C1–C5 thermal enediyne cyclizations on Au(111) surfaces followed by a step-growth polymerization of the (E)-1,1′-bi(indenylidene) diradical intermediates. We have determined the combined structural and electronic properties of this class of oligomers by characterizing the atomically precise chemical structure of individual monomer building blocks and oligomer chains (via noncontact atomic force microscopy (nc-AFM)), as well as by imaging their localized and extended molecular orbitals (via scanning tunneling microscopy and spectroscopy (STM/STS)). Our combined structural and electronic measurements reveal that the energy associated with extended π-conjugated states in these oligomers is significantly lower than the energy of the corresponding localized monomer orbitals, consistent with theoretical predictions. American Chemical Society 2014-01-03 2014-05-14 /pmc/articles/PMC4022646/ /pubmed/24387223 http://dx.doi.org/10.1021/nl403791q Text en Copyright © 2014 American Chemical Society Terms of Use CC-BY (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html)
spellingShingle Riss, Alexander
Wickenburg, Sebastian
Gorman, Patrick
Tan, Liang Z.
Tsai, Hsin-Zon
de Oteyza, Dimas G.
Chen, Yen-Chia
Bradley, Aaron J.
Ugeda, Miguel M.
Etkin, Grisha
Louie, Steven G.
Fischer, Felix R.
Crommie, Michael F.
Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface
title Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface
title_full Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface
title_fullStr Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface
title_full_unstemmed Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface
title_short Local Electronic and Chemical Structure of Oligo-acetylene Derivatives Formed Through Radical Cyclizations at a Surface
title_sort local electronic and chemical structure of oligo-acetylene derivatives formed through radical cyclizations at a surface
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022646/
https://www.ncbi.nlm.nih.gov/pubmed/24387223
http://dx.doi.org/10.1021/nl403791q
work_keys_str_mv AT rissalexander localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT wickenburgsebastian localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT gormanpatrick localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT tanliangz localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT tsaihsinzon localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT deoteyzadimasg localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT chenyenchia localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT bradleyaaronj localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT ugedamiguelm localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT etkingrisha localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT louiesteveng localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT fischerfelixr localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface
AT crommiemichaelf localelectronicandchemicalstructureofoligoacetylenederivativesformedthroughradicalcyclizationsatasurface