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廖良生教授课题组在Chemistry-A European Journal上发表论文
发布时间:2016-03-10 点击:1206

题目:

The Control of Conjugation Lengths and Steric Hindrance to Modulate Aggregation-Induced Emission with High Electroluminescence Properties and Interesting Optical Properties

 

 

作者:

Miao-Miao Xue, Yue-Min Xie, Lin-Song Cui, Xiang-Yang Liu, Xiao-Dong Yuan, Yong-Xi Li, Zuo-Quan Jiang,* and Liang-Sheng Liao*a

 

 

单位:

Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, Suzhou 215123 (P. R. China)

 

 

摘要:

A series of novel AIE-active (aggregation-induced emission) molecules, named SAF-2-TriPE, SAF-3-TriPE, and SAF-4-TriPE, were designed and synthesized through facile reaction procedures. We found that incorporation of the spiro-acridine-fluorene (SAF) group, which is famous for its excellent hole-transporting ability and rigid structure, at different substitution positions on the phenyl ring affected the conjugation lengths of these compounds. Consequently, we have obtained molecules with different emission colors and properties without sacrificing good EL (electroluminescence) characteristics. Accordingly, a device that was based on compound SAF-2-TriPE displayed superior EL characteristics: it emitted green light with hc, max=10.5 cdA-1 and hext, max=4.22 %, whereas a device that was based on compound SAF-3-TriPE emitted blue-green light with hc, max=3.9 cdA-1 and hext, max=1.71 %. These compounds also displayed different AIE performances: when the fraction of water in the THF solutions of these compounds was increased, we observed a significant improvement in the ΦF of compounds SAF-2-TriPE and SAF-3-TriPE; in contrast, compound SAF-4-TriPE showed an abnormal phenomenon, in that it emitted a strong fluorescence in both pure THF solution and in the aggregated state without a significant change in ΦF. Overall, this systematic study confirmed a relationship between the regioisomerism of the luminophore structure and its AIE activity and the resulting electroluminescent performance in non-doped devices.

 

影响因子:

5.731

 

 

分区情况:

2

 

 

链接:

http://onlinelibrary.wiley.com/doi/10.1002/chem.201503041/full

 


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