Department of Chemistry, National Institute of Technology Tiruchirappalli, Tiruchirappalli, Tamil Nadu 620015, India.
J Phys Chem B. 2021 Jul 15;125(27):7447-7455. doi: 10.1021/acs.jpcb.1c02750. Epub 2021 Jul 1.
Strongly coupled dye aggregates with tailored exciton properties may find their use in developing artificial light-harvesting and optoelectronic devices. Here, we report the control of tubular pseudoisocyanine (PIC) dye J- and H-aggregate formation with tunable exciton fluorescence using lithocholic acid (LCA) as a template. The LCA-templated PIC J-aggregate nanotubes formed at a higher LCA/PIC molar ratio (≥5:1) exhibit a sharp, red-shifted absorption band (at 555 nm), intense fluorescence (at 565 nm), and shorter lifetime (200 ps), all indicating their strong superradiance properties. In contrast, the H-aggregate nanotubes formed at a lower LCA/PIC molar ratio (2:1) exhibit a significantly blue-shifted absorption band (at 420 nm) and highly red-shifted fluorescence emission (at 600 nm) with enhanced lifetime (4.40 ns). The controlled switching of the optical properties of the PIC dye aggregates achieved by controlling the LCA/PIC molar ratio could serve as an important guideline for the design of organic photo-functional materials.
具有定制激子性质的强耦合染料聚集体可能会在开发人工光捕获和光电设备中找到应用。在这里,我们报告了使用石胆酸 (LCA) 作为模板来控制具有可调谐激子荧光的管状假吲哚菁 (PIC) 染料 J- 和 H- 聚集体形成。在较高的 LCA/PIC 摩尔比(≥5:1)下形成的 LCA 模板化 PIC J- 聚集体纳米管表现出尖锐的红移吸收带(在 555nm 处)、强烈的荧光(在 565nm 处)和较短的寿命(200ps),所有这些都表明它们具有很强的超辐射性质。相比之下,在较低的 LCA/PIC 摩尔比(2:1)下形成的 H- 聚集体纳米管表现出明显的蓝移吸收带(在 420nm 处)和高度红移的荧光发射(在 600nm 处),并具有增强的寿命(4.40ns)。通过控制 LCA/PIC 摩尔比来控制 PIC 染料聚集体的光学性质的这种可控切换可以作为设计有机光功能材料的重要指导原则。