He Zihan, Gao Heqi, Zhang Shitong, Zheng Shuyuan, Wang Yunzhong, Zhao Zihao, Ding Dan, Yang Bing, Zhang Yongming, Yuan Wang Zhang
School of Chemistry and Chemical Engineering, Shanghai Key Lab of Electrical Insulation and Thermal Aging, Shanghai Electrochemical Energy Devices Research Center, Shanghai Jiao Tong University, Shanghai, 200240, China.
State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Bioactive Materials, Ministry of Education, College of Life Sciences, Nankai University, Tianjin, 300071, China.
Adv Mater. 2019 May;31(18):e1807222. doi: 10.1002/adma.201807222. Epub 2019 Mar 25.
Pure organic persistent room-temperature phosphorescence (p-RTP) under ambient conditions is attractive but challenging due to the slow intersystem crossing process and susceptibility of triplet excitons. Fabrication of pure organic RTP luminogens with simultaneously high efficiency and ultralong lifetime still remains a daunting job, owing to their conflicting requirements for the T nature of (n,π*) and (π,π*) characteristics, respectively. Herein, a group of amide-based derivatives with efficient p-RTP is developed through the incorporation of spin-orbital-coupling-promoting groups of carbonyl and aromatic π units, giving impressive p-RTP with lifetime and efficiency of up to 710.6 ms and 10.2%, respectively. Furthermore, two of the luminogens demonstrate intense p-RTP after vigorous mechanical stimulation, indicating their robust nature, which is rarely encountered. Efficient and robust p-RTP even in the amorphous state endows them promising potential for encryption and bioimaging with facile fabrication processes. A bioimaging study with live mice indicates that such highly robust p-RTP is tremendously beneficial for in vivo afterglow imaging with an ultrahigh signal-to-background ratio of 428. These results strongly imply the possibility of realizing efficient and robust p-RTP from pure organics even without meticulous protection, thus paving the way to their promising and versatile applications.
在环境条件下实现纯有机室温磷光(p-RTP)颇具吸引力,但由于系间窜越过程缓慢以及三重态激子的敏感性,这一过程充满挑战。由于对(n,π*)和(π,π*)特性的T性质分别有相互冲突的要求,制备同时具有高效率和超长寿命的纯有机RTP发光体仍然是一项艰巨的任务。在此,通过引入羰基和芳香π单元的自旋轨道耦合促进基团,开发了一组具有高效p-RTP的酰胺基衍生物,其p-RTP令人印象深刻,寿命和效率分别高达710.6毫秒和10.2%。此外,其中两种发光体在剧烈机械刺激后表现出强烈的p-RTP,表明它们具有罕见的稳健性质。即使在非晶态下也具有高效且稳健的p-RTP,这赋予了它们在加密和生物成像方面的潜力,且制备过程简便。对活体小鼠的生物成像研究表明,这种高度稳健的p-RTP对于体内余辉成像极为有利,其超高的信背比达到428。这些结果强烈暗示,即使无需精心保护,从纯有机物中实现高效且稳健的p-RTP也是有可能的,从而为其有前景的广泛应用铺平了道路。