Department of Energy Systems Engineering, Daegu Gyeongbuk Institute of Science and Technology (DGIST), 50-1 Sang-Ri, Hyeonpung-Myeon, Dalseong-Gun, Daegu, 711-873, Korea.
Nanoscale. 2013 Sep 7;5(17):7750-5. doi: 10.1039/c3nr02320f.
A new AgNW-graphene hybrid transparent conducting electrode (TCE) was prepared by dry-transferring a chemical vapor deposition (CVD)-grown monolayer graphene onto a pristine AgNW TCE. The AgNW-graphene hybrid TCE exhibited excellent optical and electrical properties as well as mechanical flexibility. The AgNW-graphene hybrid TCE showed highly enhanced thermal oxidation and chemical stabilities because of the superior gas-barrier property of the graphene protection layer. Furthermore, the organic solar cells with the AgNW-graphene hybrid TCE showed excellent photovoltaic performance as well as superior long-term stability under ambient conditions.
通过将化学气相沉积(CVD)生长的单层石墨烯干法转移到原始的 AgNW 透明导电电极(TCE)上,制备了一种新型的 AgNW-石墨烯杂化 TCE。AgNW-石墨烯杂化 TCE 表现出优异的光学和电学性能以及机械柔韧性。由于石墨烯保护层的优异气体阻隔性能,AgNW-石墨烯杂化 TCE 表现出高度增强的热氧化和化学稳定性。此外,具有 AgNW-石墨烯杂化 TCE 的有机太阳能电池在环境条件下表现出优异的光伏性能和卓越的长期稳定性。