Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers

Development of strategies for the synthesis of pi-conjugated polymers is hampered by limited solubility. Here, the authors report a synthetic protocol based on the search for specific vibrational modes through an appropriate tailoring of the p-conjugation of the precursors, in order to increase the...

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Autores principales: Bruno de la Torre, Adam Matěj, Ana Sánchez-Grande, Borja Cirera, Benjamin Mallada, Eider Rodríguez-Sánchez, José Santos, Jesús I. Mendieta-Moreno, Shayan Edalatmanesh, Koen Lauwaet, Michal Otyepka, Miroslav Medveď, Álvaro Buendía, Rodolfo Miranda, Nazario Martín, Pavel Jelínek, David Écija
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/20b3b59652a4494db7a1c5bcc5c1bf82
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spelling oai:doaj.org-article:20b3b59652a4494db7a1c5bcc5c1bf822021-12-02T17:41:19ZTailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers10.1038/s41467-020-18371-22041-1723https://doaj.org/article/20b3b59652a4494db7a1c5bcc5c1bf822020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18371-2https://doaj.org/toc/2041-1723Development of strategies for the synthesis of pi-conjugated polymers is hampered by limited solubility. Here, the authors report a synthetic protocol based on the search for specific vibrational modes through an appropriate tailoring of the p-conjugation of the precursors, in order to increase the attempt frequency of a chemical reaction.Bruno de la TorreAdam MatějAna Sánchez-GrandeBorja CireraBenjamin MalladaEider Rodríguez-SánchezJosé SantosJesús I. Mendieta-MorenoShayan EdalatmaneshKoen LauwaetMichal OtyepkaMiroslav MedveďÁlvaro BuendíaRodolfo MirandaNazario MartínPavel JelínekDavid ÉcijaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Bruno de la Torre
Adam Matěj
Ana Sánchez-Grande
Borja Cirera
Benjamin Mallada
Eider Rodríguez-Sánchez
José Santos
Jesús I. Mendieta-Moreno
Shayan Edalatmanesh
Koen Lauwaet
Michal Otyepka
Miroslav Medveď
Álvaro Buendía
Rodolfo Miranda
Nazario Martín
Pavel Jelínek
David Écija
Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
description Development of strategies for the synthesis of pi-conjugated polymers is hampered by limited solubility. Here, the authors report a synthetic protocol based on the search for specific vibrational modes through an appropriate tailoring of the p-conjugation of the precursors, in order to increase the attempt frequency of a chemical reaction.
format article
author Bruno de la Torre
Adam Matěj
Ana Sánchez-Grande
Borja Cirera
Benjamin Mallada
Eider Rodríguez-Sánchez
José Santos
Jesús I. Mendieta-Moreno
Shayan Edalatmanesh
Koen Lauwaet
Michal Otyepka
Miroslav Medveď
Álvaro Buendía
Rodolfo Miranda
Nazario Martín
Pavel Jelínek
David Écija
author_facet Bruno de la Torre
Adam Matěj
Ana Sánchez-Grande
Borja Cirera
Benjamin Mallada
Eider Rodríguez-Sánchez
José Santos
Jesús I. Mendieta-Moreno
Shayan Edalatmanesh
Koen Lauwaet
Michal Otyepka
Miroslav Medveď
Álvaro Buendía
Rodolfo Miranda
Nazario Martín
Pavel Jelínek
David Écija
author_sort Bruno de la Torre
title Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
title_short Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
title_full Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
title_fullStr Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
title_full_unstemmed Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
title_sort tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/20b3b59652a4494db7a1c5bcc5c1bf82
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