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Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite

Graphene – two-dimensional (2D) sheets of carbon atoms linked in a honeycomb pattern – has unique properties that exhibit great promise for various applications including solar cells. Herein we prepared two-dimensional (2D) reduced graphene oxide (rGO) nanosheets from naturally abundant graphite fla...

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Autores principales: Suragtkhuu, Selengesuren, Tserendavag, Odonchimeg, Vandandoo, Ulziibayar, Bati, Abdulaziz S. R., Bat-Erdene, Munkhjargal, Shapter, Joseph G., Batmunkh, Munkhbayar, Davaasambuu, Sarangerel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050030/
https://www.ncbi.nlm.nih.gov/pubmed/35496556
http://dx.doi.org/10.1039/d0ra01423k
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author Suragtkhuu, Selengesuren
Tserendavag, Odonchimeg
Vandandoo, Ulziibayar
Bati, Abdulaziz S. R.
Bat-Erdene, Munkhjargal
Shapter, Joseph G.
Batmunkh, Munkhbayar
Davaasambuu, Sarangerel
author_facet Suragtkhuu, Selengesuren
Tserendavag, Odonchimeg
Vandandoo, Ulziibayar
Bati, Abdulaziz S. R.
Bat-Erdene, Munkhjargal
Shapter, Joseph G.
Batmunkh, Munkhbayar
Davaasambuu, Sarangerel
author_sort Suragtkhuu, Selengesuren
collection PubMed
description Graphene – two-dimensional (2D) sheets of carbon atoms linked in a honeycomb pattern – has unique properties that exhibit great promise for various applications including solar cells. Herein we prepared two-dimensional (2D) reduced graphene oxide (rGO) nanosheets from naturally abundant graphite flakes (obtained from Tuv aimag in Mongolia) using solution processed chemical oxidation and thermal reduction methods. As a proof of concept, we used our rGO as a hole transporting material (HTM) in perovskite solar cells (PSCs). Promisingly, the use of rGO in the hole transporting layer (HTL) not only enhanced the photovoltaic efficiency of PSCs, but also improved the device stability. In particular, the best performing PSC employing rGO nanosheets exhibited a power conversion efficiency (PCE) of up to 18.13%, while the control device without rGO delivered a maximum efficiency of 17.26%. The present work demonstrates the possibilities for solving PSC issues (stability) using nanomaterials derived from naturally abundant graphite sources.
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spelling pubmed-90500302022-04-29 Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite Suragtkhuu, Selengesuren Tserendavag, Odonchimeg Vandandoo, Ulziibayar Bati, Abdulaziz S. R. Bat-Erdene, Munkhjargal Shapter, Joseph G. Batmunkh, Munkhbayar Davaasambuu, Sarangerel RSC Adv Chemistry Graphene – two-dimensional (2D) sheets of carbon atoms linked in a honeycomb pattern – has unique properties that exhibit great promise for various applications including solar cells. Herein we prepared two-dimensional (2D) reduced graphene oxide (rGO) nanosheets from naturally abundant graphite flakes (obtained from Tuv aimag in Mongolia) using solution processed chemical oxidation and thermal reduction methods. As a proof of concept, we used our rGO as a hole transporting material (HTM) in perovskite solar cells (PSCs). Promisingly, the use of rGO in the hole transporting layer (HTL) not only enhanced the photovoltaic efficiency of PSCs, but also improved the device stability. In particular, the best performing PSC employing rGO nanosheets exhibited a power conversion efficiency (PCE) of up to 18.13%, while the control device without rGO delivered a maximum efficiency of 17.26%. The present work demonstrates the possibilities for solving PSC issues (stability) using nanomaterials derived from naturally abundant graphite sources. The Royal Society of Chemistry 2020-03-03 /pmc/articles/PMC9050030/ /pubmed/35496556 http://dx.doi.org/10.1039/d0ra01423k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Suragtkhuu, Selengesuren
Tserendavag, Odonchimeg
Vandandoo, Ulziibayar
Bati, Abdulaziz S. R.
Bat-Erdene, Munkhjargal
Shapter, Joseph G.
Batmunkh, Munkhbayar
Davaasambuu, Sarangerel
Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
title Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
title_full Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
title_fullStr Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
title_full_unstemmed Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
title_short Efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
title_sort efficiency and stability enhancement of perovskite solar cells using reduced graphene oxide derived from earth-abundant natural graphite
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050030/
https://www.ncbi.nlm.nih.gov/pubmed/35496556
http://dx.doi.org/10.1039/d0ra01423k
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