材料科学
电极
MXenes公司
光电子学
碳化钛
石墨烯
工作职能
碳纳米管
二极管
图层(电子)
纳米技术
复合材料
碳化物
物理化学
化学
作者
Soyeong Ahn,Tae‐Hee Han,Kathleen Maleski,Jinouk Song,Young‐Hoon Kim,Min‐Ho Park,Huanyu Zhou,Seunghyup Yoo,Yury Gogotsi,Tae‐Woo Lee
标识
DOI:10.1002/adma.202000919
摘要
Although several transparent conducting materials such as carbon nanotubes, graphene, and conducting polymers have been intensively explored as flexible electrodes in optoelectronic devices, their insufficient electrical conductivity, low work function, and complicated electrode fabrication processes have limited their practical use. Herein, a 2D titanium carbide (Ti3 C2 ) MXene film with transparent conducting electrode (TCE) properties, including high electrical conductivity (≈11 670 S cm-1 ) and high work function (≈5.1 eV), which are achieved by combining a simple solution processing with modulation of surface composition, is described. A chemical neutralization strategy of a conducting-polymer hole-injection layer is used to prevent detrimental surface oxidation and resulting degradation of the electrode film. Use of the MXene electrode in an organic light-emitting diode leads to a current efficiency of ≈102.0 cd A-1 and an external quantum efficiency of ≈28.5% ph/el, which agree well with the theoretical maximum values from optical simulations. The results demonstrate the strong potential of MXene as a solution-processable electrode in optoelectronic devices and provide a guideline for use of MXenes as TCEs in low-cost flexible optoelectronic devices.
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