Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells

DNA templated gold wires (AuWs) were fabricated on Pt sputtered ITO (Pt/ITO) substrates using ‘scribing’ or ‘writing’ method to be used as a modified counter electrode (CE) in Dye sensitized solar cells. The gold nanoparticles (AuNPs) bind to DNA in aqueous solution due to the polyanionic nature of...

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Main Authors: Shakir, Sehar, Foo, Yiing Yee, Rizan, Nastaran, Abd-ur-Rehman, Hafiz M., Yunus, Kamran, Phang, Siew Moi, Periasamy, Vengadesh
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Published: Springer 2018
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Online Access:http://eprints.um.edu.my/20713/
https://doi.org/10.1007/s10854-017-8411-3
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spelling my.um.eprints.207132019-03-18T03:53:12Z http://eprints.um.edu.my/20713/ Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells Shakir, Sehar Foo, Yiing Yee Rizan, Nastaran Abd-ur-Rehman, Hafiz M. Yunus, Kamran Phang, Siew Moi Periasamy, Vengadesh Q Science (General) QC Physics QH Natural history DNA templated gold wires (AuWs) were fabricated on Pt sputtered ITO (Pt/ITO) substrates using ‘scribing’ or ‘writing’ method to be used as a modified counter electrode (CE) in Dye sensitized solar cells. The gold nanoparticles (AuNPs) bind to DNA in aqueous solution due to the polyanionic nature of DNA. When a scribe is made on the dropcasted Au-DNA solution, the diffusion of Au-DNA complex occurs towards the edges of the scribe due to the coffee ring effect. Capillary force induces evaporation of water that also forces the Au-DNA complex to migrate towards the scribed edges. Meanwhile, the AuNPs are reduced on the surface of DNA to form active seed for nucleation and growth of AuWs. DNA molecules act as a scaffold to arrange the nanoparticles into well-connected submicron to nanoscale wires. The cyclic voltammetry measurements showed that AuWs/Pt/ITO CE exhibited better electro-catalytic activity and higher conductivity than conventional Pt/ITO CE due to the synergistic effect of Pt and AuWs network on ITO. The DSSC fabricated using TiO2 photoanode, N719 dye, I3 −/I− electrolyte and AuWs/Pt/ITO CE showed a 36% increase in efficiency as compared to the cells made under same parameters but using conventional (Pt/ITO) CE. Springer 2018 Article PeerReviewed Shakir, Sehar and Foo, Yiing Yee and Rizan, Nastaran and Abd-ur-Rehman, Hafiz M. and Yunus, Kamran and Phang, Siew Moi and Periasamy, Vengadesh (2018) Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells. Journal of Materials Science: Materials in Electronics, 29 (6). pp. 4602-4611. ISSN 0957-4522 https://doi.org/10.1007/s10854-017-8411-3 doi:10.1007/s10854-017-8411-3
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QC Physics
QH Natural history
spellingShingle Q Science (General)
QC Physics
QH Natural history
Shakir, Sehar
Foo, Yiing Yee
Rizan, Nastaran
Abd-ur-Rehman, Hafiz M.
Yunus, Kamran
Phang, Siew Moi
Periasamy, Vengadesh
Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells
description DNA templated gold wires (AuWs) were fabricated on Pt sputtered ITO (Pt/ITO) substrates using ‘scribing’ or ‘writing’ method to be used as a modified counter electrode (CE) in Dye sensitized solar cells. The gold nanoparticles (AuNPs) bind to DNA in aqueous solution due to the polyanionic nature of DNA. When a scribe is made on the dropcasted Au-DNA solution, the diffusion of Au-DNA complex occurs towards the edges of the scribe due to the coffee ring effect. Capillary force induces evaporation of water that also forces the Au-DNA complex to migrate towards the scribed edges. Meanwhile, the AuNPs are reduced on the surface of DNA to form active seed for nucleation and growth of AuWs. DNA molecules act as a scaffold to arrange the nanoparticles into well-connected submicron to nanoscale wires. The cyclic voltammetry measurements showed that AuWs/Pt/ITO CE exhibited better electro-catalytic activity and higher conductivity than conventional Pt/ITO CE due to the synergistic effect of Pt and AuWs network on ITO. The DSSC fabricated using TiO2 photoanode, N719 dye, I3 −/I− electrolyte and AuWs/Pt/ITO CE showed a 36% increase in efficiency as compared to the cells made under same parameters but using conventional (Pt/ITO) CE.
format Article
author Shakir, Sehar
Foo, Yiing Yee
Rizan, Nastaran
Abd-ur-Rehman, Hafiz M.
Yunus, Kamran
Phang, Siew Moi
Periasamy, Vengadesh
author_facet Shakir, Sehar
Foo, Yiing Yee
Rizan, Nastaran
Abd-ur-Rehman, Hafiz M.
Yunus, Kamran
Phang, Siew Moi
Periasamy, Vengadesh
author_sort Shakir, Sehar
title Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells
title_short Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells
title_full Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells
title_fullStr Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells
title_full_unstemmed Electro-catalytic and structural studies of DNA templated gold wires on platinum/ITO as modified counter electrode in dye sensitized solar cells
title_sort electro-catalytic and structural studies of dna templated gold wires on platinum/ito as modified counter electrode in dye sensitized solar cells
publisher Springer
publishDate 2018
url http://eprints.um.edu.my/20713/
https://doi.org/10.1007/s10854-017-8411-3
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score 13.18916