材料科学
异质结
掺杂剂
纳米技术
透明导电膜
光电子学
兴奋剂
超晶格
氧化物
透射率
柔性电子器件
导电体
纳米尺度
印刷电子产品
薄膜
复合材料
墨水池
冶金
作者
Youxiong Ye,Andrew B. Hamlin,Julia E. Huddy,Md. Saifur Rahman,William J. Scheideler
标识
DOI:10.1002/adfm.202204235
摘要
Abstract 2D conducting metal oxides offer unprecedented control of thin film electrostatics at the nanoscale. A scalable, rapid, and low‐cost approach is presented to printing transparent conductive oxides (TCOs) via spontaneous low‐temperature Cabrera‐Mott oxidation of compliant liquid metals. Repeating heterostructures of these 2D oxide layers are exploited to produce an exceptional, 100× increase in conductivity while simultaneously raising the visible range optical transmittance. This innovative approach employs defect modulation doping at the type I heterojunction between InO x /GaO x , exceeding the achievable performance with ITO, which is otherwise limited by poor dopant activation at low temperatures. The exceptional performance of these multilayer 2D TCO superlattices exceeds that of competing TCOs printed from sol‐gels and nanoparticles, establishing a 100× faster process to fabricate flexible inorganic electronics.
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