Department of Advanced Materials Chemistry, Korea University (Sejong), Sejong, 30019, South Korea.
Phys Chem Chem Phys. 2018 Jun 27;20(25):17458-17463. doi: 10.1039/c8cp02603c.
We have synthesised mono-(NpCb) and bis-[(N,N-phenyl-1-naphthylamino)benzo]-o-caboranes (NpCbNp), which show anomalously intense aggregation-induced emission (AIE) at long wavelengths and monomer emission at short wavelengths. The actual concentration of the aggregator in intense AIE is very low, so absorption spectroscopy is unsuitable for detecting small changes in the absorbance. Hence, to understand the aggregation pattern, we employ excitation spectroscopy, since this method has excellent sensitivity in compliance with the emission intensity. Moreover, we carried out synchronous fluorescence spectroscopic measurements to confirm that the aggregator is different from the monomeric species. The excitation spectrum shows distinguishable differences between the AIE and the normal emission. For the triad NpCbNp, the excitation spectrum for the AIE is located at a shorter wavelength than that for the monomeric emission spectrum, which means that the AIE is attributed to the H-type aggregator. On the other hand, for the dyad NpCb, the excitation spectrum for the AIE is observed at an identical wavelength as that for the monomeric species, which indicates that the aggregator is of the oblique type.
我们合成了单-(NpCb)和双-[(N,N-苯基-1-萘基氨基)苯并]-o-碳硼烷(NpCbNp),它们在长波长处表现出异常强烈的聚集诱导发射(AIE)和短波长处的单体发射。在强烈的 AIE 中,聚集剂的实际浓度非常低,因此吸收光谱不适合检测吸光度的微小变化。因此,为了了解聚集模式,我们采用了激发光谱,因为这种方法具有与发射强度一致的优异灵敏度。此外,我们进行了同步荧光光谱测量,以确认聚集剂与单体物种不同。激发光谱在 AIE 和正常发射之间显示出可区分的差异。对于三联体 NpCbNp,AIE 的激发光谱位于比单体发射光谱更短的波长处,这意味着 AIE 归因于 H 型聚集剂。另一方面,对于二联体 NpCb,AIE 的激发光谱在与单体物种相同的波长处观察到,这表明聚集剂为斜型。