| Literature DB >> 26758799 |
Hongkun Li1,2,3, Xiaoyan Zheng2, Huimin Su4, Jacky W Y Lam2,5, Kam Sing Wong4, Shan Xue1, Xuejiao Huang1, Xuhui Huang2, Bing Shi Li1, Ben Zhong Tang2,5.
Abstract
A chiral tetraphenylethene derivative with twoEntities:
Year: 2016 PMID: 26758799 PMCID: PMC4725923 DOI: 10.1038/srep19277
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Synthetic route to TPE-DVAL.
SA = sodium ascorbate.
Figure 2(a) Absorption spectrum of TPE-DVAL in 1,2-dichloroethane (DCE). (b) CD spectra of TPE-DVAL solution (in DCE, concentration: 0.5 mg mL−1) and film prepared by natural evaporation of its DCE solution (concentration: 0.5 mg mL−1) on a quartz substrate.
Figure 3(a) PL spectra of TPE-DVAL in pure DCM and DCM/hexane mixtures with different volume fractions of hexane (fH). Concentration: 10 μM. λex: 320 nm. (b) Plot of relative emission peak intensity (I/I0) at 444 nm versus hexane fraction of the DCM/hexane mixtures, where I = peak intensity and I0 = peak intensity in pure DCM.
Figure 4Plots of (a) CPL and PL and (b) CPL dissymmetry factor (gem) versus wavelength of cast film of TPE-DVAL formed by evaporation of its DCE solution.
Figure 5(a–c) SEM and (d) TEM images of TPE-DVAL formed by natural evaporation of its DCE solution, concentration: 1 × 10−4 M.
Figure 6Optimized (a) monomer, (b) dimers, (c) tetramers structures based on AM1//HF/6-31G* method in Gaussian 09 program, and (d) energy minimized nanofiber structures of TPE-DVAL. (a) optimized monomer structure in different views; (b) optimized dimers D1, D2, D3 and D4 in both front- and side-view with binding energy (in kJ/mol) below each structure; (c) optimized tetramers T1, T2, and T3 with binding energy (in kJ/mol) below each structure. (d) Proposed assembly flows of TPE-DVAL: single column packing (step1), bi-column association (step 2); longitudinal elongation of bi-column association (step 3).
Figure 7Structural analysis of the intermolecular interactions in the energy-favored
(a) longitudinal and (b) lateral pack models, which are extracted from dimer D1 and D2 in Fig. 6, respectively.