Precisely Patterned Growth of Ultra-Long Single-Crystalline Organic Microwire Arrays for Near-Infrared Photodetectors

被引:27
|
作者
Wang, Hui [1 ]
Deng, Wei [1 ]
Huang, Liming [1 ]
Zhang, Xiujuan [1 ]
Jie, Jiansheng [1 ]
机构
[1] Soochow Univ, Jiangsu Key Lab Carbon Based Funct Mat & Devices, Inst Funct Nano & Soft Mat FUNSOM, Collaborat Innovat Ctr Suzhou Nano Sci & Technol, Suzhou 215123, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
micro/nanocrystals; organic microwire arrays; precise positioning and patterning; photoresist-assisted evaporation method; near-infrared; photodetector; FIELD-EFFECT TRANSISTORS; NANOWIRE ARRAYS; PERFORMANCE; SEMICONDUCTOR; AIR; EVAPORATION; RIBBONS; FILMS; WIRES;
D O I
10.1021/acsami.5b12190
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Owing to extraordinary properties, smalt-molecule organic micro/nanocrystals are identified to be prospective system to construct new-generation organic electronic and optoelectronic devices. Alignment and patterning of organic micro/nanocrystals at desired locations are prerequisite for their device applications in practice. Though various methods have been developed to control their directional growth and alignment, high-throughput precise positioning and patterning of the organic micro/nanocrystals at desired locations remains a challenge. Here, we report a photoresist-assisted evaporation method for large-area growth of precisely positioned ultralong methyl-squarylium (MeSq) microwire (MW) arrays. Positions as well as alignment densities of the MWs can be precisely controlled with the aid of the photoresist-template that fabricated by photolithography process. This strategy enables large-scale fabrication of organic MW arrays with nearly the same accuracy, uniformity, and reliability as photolithography. Near-infrared (NIR) photodetectors based on the MeSq MW arrays show excellent photoresponse behavior and are capable of detecting 808 nm light with high stability and reproducibility. The high on/off ratio of 1600 is significantly better than other organic nanostructure-based optical switchers. More importantly, this strategy can be readily extended to other organic molecules,: revealing the great potential of photoresist-assisted evaporation method for future high-performance organic optoelectronic devices.
引用
收藏
页码:7912 / 7918
页数:7
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