Ag-fiber/graphene hybrid electrodes for highly flexible and transparent optoelectronic devices

被引:0
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作者
Yooji Hwang
Junhee Choi
Ji-Weon Kim
Jin-Woo Lee
Jae Geun Kim
Ha Hwang
Kwang Wook Choi
Wanghoon Lee
Byeong-Kwon Ju
机构
[1] Display and Nanosystem Laboratory,
[2] School of Electrical Engineering,undefined
[3] Korea University,undefined
[4] 145,undefined
[5] Anam-ro,undefined
[6] Department of Micro/Nano Systems,undefined
[7] Korea University,undefined
[8] R&D Team,undefined
[9] Haesung DS Co.,undefined
[10] Ltd. 508,undefined
[11] Teheran-ro,undefined
[12] Gangnam-gu,undefined
[13] Realistic Media Research Centre,undefined
[14] Gumi Electronics and Information Technology Research Institute,undefined
[15] 202,undefined
[16] 3D Display Centre 350-27,undefined
[17] Gumidaero,undefined
来源
Scientific Reports | / 10卷
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摘要
Transparent conducting electrodes (TCEs) have attracted considerable attention towards the development of flexible optoelectronic devices. In this study, mixed-dimensional TCEs are fabricated based on the two-dimensional graphene and one-dimensional electrospun metal fiber that can address the shortcomings of each electrode. In comparison with other TCEs, the Ag fiber/graphene hybrid electrodes exhibited a highly stable morphology (67% lower peak-to-valley ratio), low sheet resistance (approximately 11 Ω/sq), high transmittance (approximately 94%), high oxidation stability with excellent flexibility, and outstanding chemical stability. The multiple functionalities of the transparent and flexible hybrid structure highlight its potential for applications in emerging electronics and highly stable optoelectronics.
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