Tian R, Xu S-M, Xu Q, Lu C
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.
Sci Adv. 2020 May 20;6(21):eaaz6107. doi: 10.1126/sciadv.aaz6107. eCollection 2020 May.
To achieve efficient polymer-based room-temperature phosphorescence (RTP) materials, covalently embedding phosphors into the polymer matrix appeared as the most appealing approach. However, it is still highly challenging to fabricate RTP materials on a large scale because of the inefficient binding engineering and time-consuming covalent reactions. Here, we have proposed a scalable preparation approach for RTP materials by the facile B─O click reaction between boronic acid-modified phosphors and polyhydroxy polymer matrix. The ab initio molecular dynamics simulations demonstrated that the phosphors were effectively immobilized, resulting in the suppressed nonradiative transitions and activated RTP emission. In comparison to the reported covalent binding time of several hours, such a B─O click reaction can be accomplished within 20 s under ambient environment. The developed strategy simplified the construction of polymer-based RTP polymeric materials by the introduction of facile click chemistry. Our success provides inspirations and possibilities for the scale-up production of RTP materials.
为了获得高效的基于聚合物的室温磷光(RTP)材料,将磷光体共价嵌入聚合物基质似乎是最具吸引力的方法。然而,由于低效的键合工程和耗时的共价反应,大规模制备RTP材料仍然极具挑战性。在此,我们提出了一种通过硼酸修饰的磷光体与多羟基聚合物基质之间简便的B─O点击反应来制备RTP材料的可扩展方法。从头算分子动力学模拟表明,磷光体被有效地固定,从而抑制了非辐射跃迁并激活了RTP发射。与报道的数小时的共价结合时间相比,这种B─O点击反应在环境条件下20秒内即可完成。所开发的策略通过引入简便的点击化学简化了基于聚合物的RTP聚合物材料的构建。我们的成功为RTP材料的规模化生产提供了启示和可能性。