π-Conjugated amino acid derivatives have interesting chiroptical activities in their coassemblies. Then circularly dichroism (CD) and CPL spectra of individual and coassembled systems were collected (
Fig. 2 and Fig. S29 in Supporting information). Exciton-type Cotton effects at the maxima absorbance of Ala were observed, which show positive and negative bands respectively for L- and D-enantiomer (
Fig. 2a). Dissymmetry
g-factor (
gabs) was determined as ±0.002 at 325 nm. The Cotton effects of self-assembled Ala indicate the chirality transfer from amino acids to benzimidazole chromophores within chiral architectures. The introduction of Mal would enhance the CD signal intensities as well as the absorbance, which is consistent to the above conclusions with respect to the hydrophilicity brought by Mal. The chiral assemblies were expected to be enhanced based on the enlarged g
abs values (±0.004 at 314 nm, 1 equiv. Mal). The enhancement of CD signal was also observed in the Val and Phe coassembled systems (
Figs. 2b and
c). Val individually shows negligible Cotton effects and
gabs. The participation of Mal induces the emergence of Cotton effects with
gabs up to ±0.001 at 316 nm (10 equiv. Mal). The maxima
gabs of Phe was also boosted from ±0.0004 to ±0.0016 by coassembly. The intensity of Cotton effects in supramolecular self-assemblies are associated to the screw sense (degree) and distance between the chromophores. The boosted
g-factors by Mal no doubtly improve the helical packing of
π-conjugated amino acids. Photoluminescence (PL) spectra of different self-assemblies and coassemblies with Mal were collected in their solution state, as shown in Fig. S30 (Supporting information). Compared to the individual self-assemblies, the presence of 10 molar equiv. Mal would greatly shrink the PL intensity, which was observed in the three examples. A bathochromic shift occurred to Phe/Mal coassembly, in consistent with the CPL spectroscopy. The declined PL intensity suggests the participation of Mal into the coassemblies. We also evaluated their CPL properties to reveal their potential in chiroptical materials. Ala individually afforded PL and CPL peaks located at 380 nm (
Fig. 3d). After adding Mal, shoulder peaks at around 450 nm emerged with a shift of CPL curves, which possibly caused by the enhanced aromatic interactions. The dissymmetry g-factors (
glum) were determined as ±0.03 at 380 nm, which are among the highest values of organic self-assemblies [
21]. Similarly, coassembly of Mal with Val or Phe induced the emergence of new PL and CPL bands at 450 nm with
glum values at 10
−2 grade (
Figs. 2e and
f). CPL spectra indicate that the present coassembly systems are potential chiroptical materials with tunable photophysical properties. CD and CPL spectroscopy reflect chirality at the ground and photoexcited state respectively. The changes of CD and CPL signal are relative independent to each other due to the structural relaxation and other factors. The coassembly between organic small acids and TBIB derivatives could change the chiral packing of chromophores which has significant influence on the Cotton effects, due to the CD signal is proportional to the screw sense between chromophores. However, this effect is not pronounced in the emergence of CPL spectra.