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Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells

A new class of pyridyl benzimdazole based Ru complex decorated polyaniline assembly (PANI-Ru) was covalently grafted onto reduced graphene oxide sheets (rGO) via covalent functionalization approach. The covalent attachment of PANI-Ru with rGO was confirmed from XPS analysis and Raman spectroscopy. T...

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Autores principales: Vinoth, R., Babu, S. Ganesh, Bharti, Vishal, Gupta, V., Navaneethan, M., Bhat, S. Venkataprasad, Muthamizhchelvan, C., Ramamurthy, Praveen C., Sharma, Chhavi, Aswal, Dinesh K., Hayakawa, Yasuhiro, Neppolian, B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5320515/
https://www.ncbi.nlm.nih.gov/pubmed/28225039
http://dx.doi.org/10.1038/srep43133
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author Vinoth, R.
Babu, S. Ganesh
Bharti, Vishal
Gupta, V.
Navaneethan, M.
Bhat, S. Venkataprasad
Muthamizhchelvan, C.
Ramamurthy, Praveen C.
Sharma, Chhavi
Aswal, Dinesh K.
Hayakawa, Yasuhiro
Neppolian, B.
author_facet Vinoth, R.
Babu, S. Ganesh
Bharti, Vishal
Gupta, V.
Navaneethan, M.
Bhat, S. Venkataprasad
Muthamizhchelvan, C.
Ramamurthy, Praveen C.
Sharma, Chhavi
Aswal, Dinesh K.
Hayakawa, Yasuhiro
Neppolian, B.
author_sort Vinoth, R.
collection PubMed
description A new class of pyridyl benzimdazole based Ru complex decorated polyaniline assembly (PANI-Ru) was covalently grafted onto reduced graphene oxide sheets (rGO) via covalent functionalization approach. The covalent attachment of PANI-Ru with rGO was confirmed from XPS analysis and Raman spectroscopy. The chemical bonding between PANI-Ru and rGO induced the electron transfer from Ru complex to rGO via backbone of the conjugated PANI chain. The resultant hybrid metallopolymer assembly was successfully demonstrated as an electron donor in bulk heterojunction polymer solar cells (PSCs). A PSC device fabricated with rGO/PANI-Ru showed an utmost ~6 fold and 2 fold enhancement in open circuit potential (V(oc)) and short circuit current density (J(sc)) with respect to the standard device made with PANI-Ru (i.e., without rGO) under the illumination of AM 1.5 G. The excellent electronic properties of rGO significantly improved the electron injection from PANI-Ru to PCBM and in turn the overall performance of the PSC device was enhanced. The ultrafast excited state charge separation and electron transfer role of rGO sheet in hybrid metallopolymer was confirmed from ultrafast spectroscopy measurements. This covalent modification of rGO with metallopolymer assembly may open a new strategy for the development of new hybrid nanomaterials for light harvesting applications.
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spelling pubmed-53205152017-03-01 Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells Vinoth, R. Babu, S. Ganesh Bharti, Vishal Gupta, V. Navaneethan, M. Bhat, S. Venkataprasad Muthamizhchelvan, C. Ramamurthy, Praveen C. Sharma, Chhavi Aswal, Dinesh K. Hayakawa, Yasuhiro Neppolian, B. Sci Rep Article A new class of pyridyl benzimdazole based Ru complex decorated polyaniline assembly (PANI-Ru) was covalently grafted onto reduced graphene oxide sheets (rGO) via covalent functionalization approach. The covalent attachment of PANI-Ru with rGO was confirmed from XPS analysis and Raman spectroscopy. The chemical bonding between PANI-Ru and rGO induced the electron transfer from Ru complex to rGO via backbone of the conjugated PANI chain. The resultant hybrid metallopolymer assembly was successfully demonstrated as an electron donor in bulk heterojunction polymer solar cells (PSCs). A PSC device fabricated with rGO/PANI-Ru showed an utmost ~6 fold and 2 fold enhancement in open circuit potential (V(oc)) and short circuit current density (J(sc)) with respect to the standard device made with PANI-Ru (i.e., without rGO) under the illumination of AM 1.5 G. The excellent electronic properties of rGO significantly improved the electron injection from PANI-Ru to PCBM and in turn the overall performance of the PSC device was enhanced. The ultrafast excited state charge separation and electron transfer role of rGO sheet in hybrid metallopolymer was confirmed from ultrafast spectroscopy measurements. This covalent modification of rGO with metallopolymer assembly may open a new strategy for the development of new hybrid nanomaterials for light harvesting applications. Nature Publishing Group 2017-02-22 /pmc/articles/PMC5320515/ /pubmed/28225039 http://dx.doi.org/10.1038/srep43133 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Vinoth, R.
Babu, S. Ganesh
Bharti, Vishal
Gupta, V.
Navaneethan, M.
Bhat, S. Venkataprasad
Muthamizhchelvan, C.
Ramamurthy, Praveen C.
Sharma, Chhavi
Aswal, Dinesh K.
Hayakawa, Yasuhiro
Neppolian, B.
Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
title Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
title_full Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
title_fullStr Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
title_full_unstemmed Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
title_short Ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
title_sort ruthenium based metallopolymer grafted reduced graphene oxide as a new hybrid solar light harvester in polymer solar cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5320515/
https://www.ncbi.nlm.nih.gov/pubmed/28225039
http://dx.doi.org/10.1038/srep43133
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