1044558-25-9Relevant academic research and scientific papers
In Situ Generation of Azonia-Containing Polyelectrolytes for Luminescent Photopatterning and Superbug Killing
Liu, Xiaolin,Li, Mengge,Han, Ting,Cao, Bing,Qiu, Zijie,Li, Yuanyuan,Li, Qiyao,Hu, Yubing,Liu, Zhiyang,Lam, Jacky W. Y.,Hu, Xianglong,Tang, Ben Zhong
, p. 11259 - 11268 (2019)
Polyelectrolytes play an important role in both natural biological systems and human society, and their synthesis, functional exploration, and profound application are thus essential for biomimicry and creating new materials. In this study, we developed an efficient synthetic methodology for in situ generation of azonia-containing polyelectrolytes in a one-pot manner by using readily accessible nonionic reactant in the presence of commercially available cheap ionic species. The resulting polyelectrolytes are emissive in the solid state and can readily form luminescent photopatterns with different colors. The azonia-containing polyelectrolytes possess extraordinary potency of reactive oxygen species (ROS) generation, enabling them to impressively kill methicillin-resistant Staphylococcus aureus (MRSA), a drug resistant superbug, both in vitro and in vivo.
Highly Efficient Orange-Red Thermally Activated Delayed Fluorescence Compounds Comprising Dual Dicyano-Substituted Pyrazine/Quinoxaline Acceptors
Li, Hejun,Yang, Tong,Wang, Jiaxuan,Xie, Ning,Wang, Qingyang,Xu, Yincai,Zhao, Yuguang,Liang, Baoyan
, p. 95 - 102 (2021/02/02)
The π-conjugation of molecules has a large influence on their excited state properties, especially for red thermally activated delayed fluorescence (TADF) materials. Two orange-red TADF compounds comprising dual dicyano-substituted pyrazine/quinoxaline ac
