Song Yiting, Duan Xiujuan, Jiang Ya-Nan, Ma Yuchen
School of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong 250100, People's Republic of China.
J Phys Chem Lett. 2024 Jul 4;15(26):6890-6895. doi: 10.1021/acs.jpclett.4c01354. Epub 2024 Jun 27.
Organic materials that can emit ultralong room-temperature phosphorescence (RTP) have attracted a great deal of interest. Whether the pure boric acid (BA) solid can emit RTP and the origin of the RTP in BA caused a debate recently. Herein, our first-principles calculations and experimental measurements suggest that RTP of BA originates from the B-O-O-B group in a (HBO) species, which can be formed by polymerization of two dehydrogenated BA molecules under light irradiation. The calculated absorption, fluorescence, and phosphorescence spectra of B-O-O-B match well with the experiments. Experimental X-ray photoelectron and X-ray absorption spectra evidence the existence of B-O-O-B in BA. The O-O bond in B-O-O-B can break upon optical excitation, creating two B-O radicals. Radiative transition from localized dangling orbitals of the B-O radicals to the delocalized orbitals of the crystal bulk leads to the observed RTP. Our calculated phosphorescence lifetime is ∼1 s, which agrees well with the experiment.
能够发射超长室温磷光(RTP)的有机材料引起了广泛关注。纯硼酸(BA)固体是否能发射RTP以及BA中RTP的起源最近引发了一场争论。在此,我们的第一性原理计算和实验测量表明,BA的RTP源于(HBO)物种中的B-O-O-B基团,该基团可由两个脱氢BA分子在光照下聚合形成。计算得到的B-O-O-B的吸收、荧光和磷光光谱与实验结果吻合良好。实验X射线光电子能谱和X射线吸收光谱证明了BA中存在B-O-O-B。B-O-O-B中的O-O键在光激发时会断裂,产生两个B-O自由基。从B-O自由基的局域悬空轨道到晶体本体的离域轨道的辐射跃迁导致了观察到的RTP。我们计算的磷光寿命约为1 s,与实验结果吻合良好。