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Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization

The synthesis of 1‐Fc‐ (3), 1‐Br‐6‐Fc‐ (5 a), 2‐Br‐7‐Fc‐ (7 a), 1,6‐Fc(2)‐ (5 b), 2,7‐Fc(2)‐pyrene (7 b), 3,6‐Fc(2)‐9,10‐phenanthrenedione (10), and 3,6‐Fc(2)‐9,10‐dimethoxyphenanthrene (12; Fc=Fe(η(5)‐C(5)H(4))(η(5)‐C(5)H(5))) is discussed. Of these compounds, 10 and 12 form 1D or 2D coordination p...

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Autores principales: Preuß, Andrea, Notz, Sebastian, Kovalski, Eduard, Korb, Marcus, Blaudeck, Thomas, Hu, Xiao, Schuster, Jörg, Miesel, Dominique, Rüffer, Tobias, Hildebrandt, Alexander, Schreiter, Katja, Spange, Stefan, Schulz, Stefan E., Lang, Heinrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7064959/
https://www.ncbi.nlm.nih.gov/pubmed/31650632
http://dx.doi.org/10.1002/chem.201904450
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author Preuß, Andrea
Notz, Sebastian
Kovalski, Eduard
Korb, Marcus
Blaudeck, Thomas
Hu, Xiao
Schuster, Jörg
Miesel, Dominique
Rüffer, Tobias
Hildebrandt, Alexander
Schreiter, Katja
Spange, Stefan
Schulz, Stefan E.
Lang, Heinrich
author_facet Preuß, Andrea
Notz, Sebastian
Kovalski, Eduard
Korb, Marcus
Blaudeck, Thomas
Hu, Xiao
Schuster, Jörg
Miesel, Dominique
Rüffer, Tobias
Hildebrandt, Alexander
Schreiter, Katja
Spange, Stefan
Schulz, Stefan E.
Lang, Heinrich
author_sort Preuß, Andrea
collection PubMed
description The synthesis of 1‐Fc‐ (3), 1‐Br‐6‐Fc‐ (5 a), 2‐Br‐7‐Fc‐ (7 a), 1,6‐Fc(2)‐ (5 b), 2,7‐Fc(2)‐pyrene (7 b), 3,6‐Fc(2)‐9,10‐phenanthrenedione (10), and 3,6‐Fc(2)‐9,10‐dimethoxyphenanthrene (12; Fc=Fe(η(5)‐C(5)H(4))(η(5)‐C(5)H(5))) is discussed. Of these compounds, 10 and 12 form 1D or 2D coordination polymers in the solid state. (Spectro)Electrochemical studies confirmed reversible Fc/Fc(+) redox events between −130 and 160 mV. 1,6‐ and 2,7‐Substitution in 5 a (E°′=−130 mV) and 7 a (E°′=50 mV) influences the redox potentials, whereas the ones of 5 b and 7 b (E°′=20 mV) are independent. Compounds 5 b, 7 b, 10, and 12 show single Fc oxidation processes with redox splittings between 70 and 100 mV. UV/Vis/NIR spectroelectrochemistry confirmed a weak electron transfer between Fe(II)/Fe(III) in mixed‐valent [5 b](+) and [12](+). DFT calculations showed that 5 b non‐covalently interacts with the single‐walled carbon nanotube (SWCNT) sidewalls as proven by, for example, disentangling experiments. In addition, CV studies of the as‐obtained dispersions confirmed exohedral attachment of 5 b at the SWCNTs.
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spelling pubmed-70649592020-03-16 Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization Preuß, Andrea Notz, Sebastian Kovalski, Eduard Korb, Marcus Blaudeck, Thomas Hu, Xiao Schuster, Jörg Miesel, Dominique Rüffer, Tobias Hildebrandt, Alexander Schreiter, Katja Spange, Stefan Schulz, Stefan E. Lang, Heinrich Chemistry Full Papers The synthesis of 1‐Fc‐ (3), 1‐Br‐6‐Fc‐ (5 a), 2‐Br‐7‐Fc‐ (7 a), 1,6‐Fc(2)‐ (5 b), 2,7‐Fc(2)‐pyrene (7 b), 3,6‐Fc(2)‐9,10‐phenanthrenedione (10), and 3,6‐Fc(2)‐9,10‐dimethoxyphenanthrene (12; Fc=Fe(η(5)‐C(5)H(4))(η(5)‐C(5)H(5))) is discussed. Of these compounds, 10 and 12 form 1D or 2D coordination polymers in the solid state. (Spectro)Electrochemical studies confirmed reversible Fc/Fc(+) redox events between −130 and 160 mV. 1,6‐ and 2,7‐Substitution in 5 a (E°′=−130 mV) and 7 a (E°′=50 mV) influences the redox potentials, whereas the ones of 5 b and 7 b (E°′=20 mV) are independent. Compounds 5 b, 7 b, 10, and 12 show single Fc oxidation processes with redox splittings between 70 and 100 mV. UV/Vis/NIR spectroelectrochemistry confirmed a weak electron transfer between Fe(II)/Fe(III) in mixed‐valent [5 b](+) and [12](+). DFT calculations showed that 5 b non‐covalently interacts with the single‐walled carbon nanotube (SWCNT) sidewalls as proven by, for example, disentangling experiments. In addition, CV studies of the as‐obtained dispersions confirmed exohedral attachment of 5 b at the SWCNTs. John Wiley and Sons Inc. 2020-01-23 2020-02-26 /pmc/articles/PMC7064959/ /pubmed/31650632 http://dx.doi.org/10.1002/chem.201904450 Text en © 2019 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the 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
Preuß, Andrea
Notz, Sebastian
Kovalski, Eduard
Korb, Marcus
Blaudeck, Thomas
Hu, Xiao
Schuster, Jörg
Miesel, Dominique
Rüffer, Tobias
Hildebrandt, Alexander
Schreiter, Katja
Spange, Stefan
Schulz, Stefan E.
Lang, Heinrich
Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization
title Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization
title_full Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization
title_fullStr Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization
title_full_unstemmed Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization
title_short Ferrocenyl‐Pyrenes, Ferrocenyl‐9,10‐Phenanthrenediones, and Ferrocenyl‐9,10‐Dimethoxyphenanthrenes: Charge‐Transfer Studies and SWCNT Functionalization
title_sort ferrocenyl‐pyrenes, ferrocenyl‐9,10‐phenanthrenediones, and ferrocenyl‐9,10‐dimethoxyphenanthrenes: charge‐transfer studies and swcnt functionalization
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7064959/
https://www.ncbi.nlm.nih.gov/pubmed/31650632
http://dx.doi.org/10.1002/chem.201904450
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