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Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry

Improving the performance of p-type photoelectrodes represents a key challenge toward significant advancement in the field of tandem dye-sensitized solar cells. Herein, we demonstrate the application of boron-doped nanocrystalline diamond (B:NCD) thin films, covalently functionalized with a dithieno...

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Autores principales: Raymakers, Jorne, Krysova, Hana, Artemenko, Anna, Čermák, Jan, Nicley, Shannon S., Verstappen, Pieter, Gielen, Sam, Kromka, Alexander, Haenen, Ken, Kavan, Ladislav, Maes, Wouter, Rezek, Bohuslav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9086440/
https://www.ncbi.nlm.nih.gov/pubmed/35548149
http://dx.doi.org/10.1039/c8ra07545j
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author Raymakers, Jorne
Krysova, Hana
Artemenko, Anna
Čermák, Jan
Nicley, Shannon S.
Verstappen, Pieter
Gielen, Sam
Kromka, Alexander
Haenen, Ken
Kavan, Ladislav
Maes, Wouter
Rezek, Bohuslav
author_facet Raymakers, Jorne
Krysova, Hana
Artemenko, Anna
Čermák, Jan
Nicley, Shannon S.
Verstappen, Pieter
Gielen, Sam
Kromka, Alexander
Haenen, Ken
Kavan, Ladislav
Maes, Wouter
Rezek, Bohuslav
author_sort Raymakers, Jorne
collection PubMed
description Improving the performance of p-type photoelectrodes represents a key challenge toward significant advancement in the field of tandem dye-sensitized solar cells. Herein, we demonstrate the application of boron-doped nanocrystalline diamond (B:NCD) thin films, covalently functionalized with a dithienopyrrole–benzothiadiazole push–pull chromophore, as alternative photocathodes. First, a primary functional handle is introduced on H-terminated diamond via electrochemical diazonium grafting. Afterwards, Sonogashira cross-coupling and Cu(i) catalyzed azide–alkyne cycloaddition (CuAAC) reactions are employed to attach the chromophore, enabling the comparison of the degree of surface functionalization and the importance of the employed linker at the diamond-dye interface. X-ray photoelectron spectroscopy shows that surface functionalization via CuAAC results in a slightly higher chromophore coverage compared to the Sonogashira cross-coupling. However, photocurrents and photovoltages, obtained by photoelectrochemical and Kelvin probe measurements, are approximately three times larger on photocathodes functionalized via Sonogashira cross-coupling. Surface functionalization via Sonogashira cross-coupling is thus considered the preferential method for the development of diamond-based hybrid photovoltaics.
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spelling pubmed-90864402022-05-10 Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry Raymakers, Jorne Krysova, Hana Artemenko, Anna Čermák, Jan Nicley, Shannon S. Verstappen, Pieter Gielen, Sam Kromka, Alexander Haenen, Ken Kavan, Ladislav Maes, Wouter Rezek, Bohuslav RSC Adv Chemistry Improving the performance of p-type photoelectrodes represents a key challenge toward significant advancement in the field of tandem dye-sensitized solar cells. Herein, we demonstrate the application of boron-doped nanocrystalline diamond (B:NCD) thin films, covalently functionalized with a dithienopyrrole–benzothiadiazole push–pull chromophore, as alternative photocathodes. First, a primary functional handle is introduced on H-terminated diamond via electrochemical diazonium grafting. Afterwards, Sonogashira cross-coupling and Cu(i) catalyzed azide–alkyne cycloaddition (CuAAC) reactions are employed to attach the chromophore, enabling the comparison of the degree of surface functionalization and the importance of the employed linker at the diamond-dye interface. X-ray photoelectron spectroscopy shows that surface functionalization via CuAAC results in a slightly higher chromophore coverage compared to the Sonogashira cross-coupling. However, photocurrents and photovoltages, obtained by photoelectrochemical and Kelvin probe measurements, are approximately three times larger on photocathodes functionalized via Sonogashira cross-coupling. Surface functionalization via Sonogashira cross-coupling is thus considered the preferential method for the development of diamond-based hybrid photovoltaics. The Royal Society of Chemistry 2018-09-26 /pmc/articles/PMC9086440/ /pubmed/35548149 http://dx.doi.org/10.1039/c8ra07545j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Raymakers, Jorne
Krysova, Hana
Artemenko, Anna
Čermák, Jan
Nicley, Shannon S.
Verstappen, Pieter
Gielen, Sam
Kromka, Alexander
Haenen, Ken
Kavan, Ladislav
Maes, Wouter
Rezek, Bohuslav
Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry
title Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry
title_full Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry
title_fullStr Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry
title_full_unstemmed Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry
title_short Functionalization of boron-doped diamond with a push–pull chromophore via Sonogashira and CuAAC chemistry
title_sort functionalization of boron-doped diamond with a push–pull chromophore via sonogashira and cuaac chemistry
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9086440/
https://www.ncbi.nlm.nih.gov/pubmed/35548149
http://dx.doi.org/10.1039/c8ra07545j
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