Department of Physics, Ulsan National Institute of Science and Technology, Ulsan 44919, Republic of Korea.
UNIST Central Research Facilities & School of Natural Science, Ulsan National Institute of Science and Technology, Ulsan 44919, Republic of Korea.
J Phys Chem B. 2020 Oct 15;124(41):9246-9254. doi: 10.1021/acs.jpcb.0c07163. Epub 2020 Oct 5.
We study the effect of purification and impurities on the self-assembly and phase behavior of lyotropic chromonic liquid crystals (LCLCs). LCLC molecules in water stack to form aggregates; then, the elongated nanoaggregates align to make liquid crystalline phases. Utilizing multiple experimental techniques, we unveil impurities in commercial Sunset Yellow FCF (SSY), a representative LCLC, and how the precipitation-based purification promotes the formation of the aggregates and mesophase. We further explore the roles of intrinsic impurities, i.e., byproducts of the SSY synthesis, whose molecular structures are almost identical to that of SSY but differ only in the number and position of sulfonate groups. Combining quantum chemical calculations of molecular structures and experimental investigation of aggregate structures and phase behavior, we propose that the impurities of the planar shapes behave as planar SSY, i.e., participating in aggregate formation, whereas the nonplanar one disrupts the nematic phase. These results highlight the critical roles of the impurities and deepen our understanding of self-assembled aggregates and their aligned mesophases.
我们研究了纯化和杂质对溶致液晶(LCLC)的自组装和相行为的影响。LCLC 分子在水中堆积形成聚集体;然后,拉长的纳米聚集体排列形成液晶相。利用多种实验技术,我们揭示了商用日落黄 FCF(SSY)中的杂质,以及基于沉淀的纯化如何促进聚集体和中间相的形成。我们进一步探讨了内在杂质的作用,即 SSY 合成的副产物,其分子结构几乎与 SSY 相同,但在磺酸盐基团的数量和位置上有所不同。通过对分子结构的量子化学计算和对聚集体结构和相行为的实验研究,我们提出,平面形状的杂质表现为平面 SSY,即参与聚集体形成,而非平面的杂质则破坏向列相。这些结果突出了杂质的关键作用,加深了我们对自组装聚集体及其排列中间相的理解。