Kumar Jatish, Nakashima Takuya, Tsumatori Hiroyuki, Kawai Tsuyoshi
Graduate School of Materials Science, Nara Institute of Science and Technology, NAIST, 8916-5 Takayama, Ikoma, Nara 630-0192, Japan.
J Phys Chem Lett. 2014 Jan 16;5(2):316-21. doi: 10.1021/jz402615n. Epub 2014 Jan 2.
The self-assembly of a chiral perylene bisimide bichromophoric derivative possessing a 1,1'-binaphthalene bridge was investigated by adopting two different methodologies, leading to the formation of aggregates with dissimilar morphologies. The chiral nature of the aggregated structures was optically probed with the help of circular dichroism (CD), vibrational circular dichroism (VCD), and circularly polarized luminescence (CPL). The one-dimensional aggregates formed in methylcyclohexane (MCH) exhibited twice the value of luminescence dissymmetry factor (glum) when compared with the spherical aggregates formed in chloroform at higher concentration. The summation of excitonic couplings between the individual chromophoric units in an aggregated system is responsible for the remarkably high luminescence dissymmetry exhibited by the chiral aggregates. The nanostructures could be successfully embedded into polymer films, leading to the fabrication of solid-state materials with high CPL dissymmetry that can find novel applications in chiroptical sensing, memory, and light-emitting devices based on organic nanoparticles.
采用两种不同方法研究了具有1,1'-联萘桥的手性苝二酰亚胺双发色团衍生物的自组装过程,结果形成了形态各异的聚集体。借助圆二色性(CD)、振动圆二色性(VCD)和圆偏振发光(CPL)对聚集结构的手性本质进行了光学探测。与在较高浓度氯仿中形成的球形聚集体相比,在甲基环己烷(MCH)中形成的一维聚集体的发光不对称因子(glum)值高出两倍。聚集体系中各个发色团单元之间的激子耦合总和是手性聚集体表现出极高发光不对称性的原因。这些纳米结构能够成功嵌入聚合物薄膜中,从而制备出具有高CPL不对称性的固态材料,可在基于有机纳米粒子的手性光学传感、记忆和发光器件中找到新的应用。