Hu Ming, Ye Feng-Ying, Du Cong, Wang Weizhou, Zhou Ting-Ting, Gao Miao-Li, Liu Minghua, Zheng Yan-Song
Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
Beijing National Laboratory for Molecular Science (BNLMS), CAS Key Laboratory of Colloid Interface and Chemical Thermodynamics, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
ACS Nano. 2021 Oct 26;15(10):16673-16682. doi: 10.1021/acsnano.1c06644. Epub 2021 Sep 21.
Tetraphenylethylene and its derivatives are a class of aggregation-induced emission (AIE) compounds that are most extensively and successfully studied. It has been found that the simplest TPE is easy to crystallize into homochiral M crystals or P crystals. However, no research on circularly polarized luminescence (CPL) of TPE solid is documented. In this paper, we report that TPE can grow into big and nonefflorescent single crystals in single helical conformation and has large birefringence that is comparative with commercially available products. The TPE single crystals can emit strong CPL with a very high value up to 0.53. Moreover, the sense and magnitude of CPL signals can be willfully tuned by simple rotation of the single crystal due to anisotropy of the crystals. This simple and promising CPL photonic material integrates emission, chirality, and birefringence together in one single crystal without needing an additional chiral dopant or conjugate polymer that can produce linearly polarized light. After being ground into fine powder and pressed as KBr pellets, the obtained nanocrystals of TPE also emit strong CPL light. Exceptionally, by mixing other achiral luminescent dyes together with TPE powder in KBr pellets, induced CPL signals were obtained, which could give full-color CPL emission. Although there were no interactions between TPE and the dyes in the pellets, induced CPL signals were realized through radiative energy transfer, providing a very simple method for the tuning of CPL emission.
四苯基乙烯及其衍生物是一类研究最为广泛且成功的聚集诱导发光(AIE)化合物。已发现最简单的四苯基乙烯易于结晶形成手性纯的M晶体或P晶体。然而,尚无关于四苯基乙烯固体圆偏振发光(CPL)的研究报道。在本文中,我们报道四苯基乙烯能够以单螺旋构象生长成大的且不风化的单晶,并且具有与市售产品相当的大双折射。四苯基乙烯单晶能够发射强CPL,其高达0.53的非常高的值。此外,由于晶体的各向异性,通过简单旋转单晶就可以随意调节CPL信号的方向和强度。这种简单且有前景的CPL光子材料在一个单晶中集成了发光、手性和双折射,无需额外的手性掺杂剂或共轭聚合物来产生线偏振光。将其研磨成细粉并压制成KBr片后,所得的四苯基乙烯纳米晶体也能发射强CPL光。特别地,通过将其他非手性发光染料与四苯基乙烯粉末在KBr片中混合,获得了诱导CPL信号,其能够产生全色CPL发射。尽管在片中四苯基乙烯与染料之间没有相互作用,但通过辐射能量转移实现了诱导CPL信号,为调节CPL发射提供了一种非常简单的方法。