Water-induced ultralong room temperature phosphorescence by constructing hydrogen-bonded networks

被引:0
|
作者
Ya-Chuan Liang
Yuan Shang
Kai-Kai Liu
Zhen Liu
Wen-Jie Wu
Qian Liu
Qi Zhao
Xue-Ying Wu
Lin Dong
Chong-Xin Shan
机构
[1] Zhengzhou University,Henan Key Laboratory of Diamond Optoelectronic Materials and Devices, School of Physics and Engineering
[2] Zhengzhou University,Super Computer Center, Smart City Institute
[3] Zhengzhou University,The college of Chemistry and Molecular Engineering
来源
Nano Research | 2020年 / 13卷
关键词
water-induced; phosphorescence; triplet states; hydrogen-bonded networks;
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中图分类号
学科分类号
摘要
Room temperature phosphorescence (RTP) materials show potential applications in information security and optoelectronic devices, but it is still a challenge to achieve RTP in organic materials under water ambient due to the unstable property of triplet states. Herein, water-induced RTP has been demonstrated in the organic microrod (OMR). Noting that the RTP intensity of the as-prepared OMR is greatly enhanced when water is introduced, and the reason for the enhancement can be attributed to the formation of hydrogen-bonded networks inside the OMR. The hydrogen-bonded networks can confine the molecular motion effectively, leading to the stability of triplet states; thus the lifetime of the OMR can reach 1.64 s after introducing water. By virtue of the long lifetime of the OMR in the presence of water, multilevel data encryption based on the OMR has been demonstrated.
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页码:875 / 881
页数:6
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