Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes
The chemically reduced graphene oxide (rGO) was transferred onto polyethylene terephthalate (PET) substrates and then used as transparent and conductive electrodes for flexible organic photovoltaic (OPV) devices. The performance of the OPV devices mainly depends on the charge transport efficiency th...
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sg-ntu-dr.10356-944132020-06-01T10:21:14Z Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes Yin, Zongyou Sun, Shuangyong Salim, Teddy Wu, Shixin Huang, Xiao He, Qiyuan Lam, Yeng Ming Zhang, Hua School of Materials Science & Engineering DRNTU::Engineering::Materials The chemically reduced graphene oxide (rGO) was transferred onto polyethylene terephthalate (PET) substrates and then used as transparent and conductive electrodes for flexible organic photovoltaic (OPV) devices. The performance of the OPV devices mainly depends on the charge transport efficiency through rGO electrodes when the optical transmittance of rGO is above 65%. However, if the transmittance of rGO is less than 65%, the performance of the OPV device is dominated by the light transmission efficiency, that is, the transparency of rGO films. After the tensile strain (2.9%) was applied on the fabricated OPV device, it can sustain a thousand cycles of bending. Our work demonstrates the highly flexible property of rGO films, which provide the potential applications in flexible optoelectronics. 2012-09-19T08:48:09Z 2019-12-06T18:55:35Z 2012-09-19T08:48:09Z 2019-12-06T18:55:35Z 2010 2010 Journal Article Yin, Z., Sun, S., Salim, T., Wu, S., Huang, X., He, Q., et al. (2010). Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes. ACS Nano, 4(9), 5263-5268. https://hdl.handle.net/10356/94413 http://hdl.handle.net/10220/8580 10.1021/nn1015874 en ACS nano © 2010 American Chemical Society. |
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DRNTU::Engineering::Materials Yin, Zongyou Sun, Shuangyong Salim, Teddy Wu, Shixin Huang, Xiao He, Qiyuan Lam, Yeng Ming Zhang, Hua Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
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The chemically reduced graphene oxide (rGO) was transferred onto polyethylene terephthalate (PET) substrates and then used as transparent and conductive electrodes for flexible organic photovoltaic (OPV) devices. The performance of the OPV devices mainly depends on the charge transport efficiency through rGO electrodes when the optical transmittance of rGO is above 65%. However, if the transmittance of rGO is less than 65%, the performance of the OPV device is dominated by the light transmission efficiency, that is, the transparency of rGO films. After the tensile strain (2.9%) was applied on the fabricated OPV device, it can sustain a thousand cycles of bending. Our work demonstrates the highly flexible property of rGO films, which provide the potential applications in flexible optoelectronics. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Yin, Zongyou Sun, Shuangyong Salim, Teddy Wu, Shixin Huang, Xiao He, Qiyuan Lam, Yeng Ming Zhang, Hua |
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Article |
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Yin, Zongyou Sun, Shuangyong Salim, Teddy Wu, Shixin Huang, Xiao He, Qiyuan Lam, Yeng Ming Zhang, Hua |
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Yin, Zongyou |
title |
Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
title_short |
Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
title_full |
Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
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Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
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Organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
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organic photovoltaic devices using highly flexible reduced graphene oxide films as transparent electrodes |
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2012 |
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https://hdl.handle.net/10356/94413 http://hdl.handle.net/10220/8580 |
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