Laboratorium für Organische Chemie, ETH Zürich, Hönggerberg, HCI, CH-8093 Zürich, Switzerland.
Org Biomol Chem. 2012 Oct 21;10(39):8016-26. doi: 10.1039/c2ob25983d.
Axially chiral, 3,5-dihydro-4H-dinaphtho[2,1-c:1',2'-e]azepine (dinaphthazepine) and 1,1'-binaphthyl-2,2'-disulfonimide (dinaphthosulfonimide) moieties were rigidly connected via N-p-phenylene linkers to photochemically (E)/(Z)-isomerisable 1,2-diethynylethene scaffolds. The chemical stability of the resulting systems was found to be critically related to the other substituents on the central π-conjugated scaffold. High helical twisting power (HTP), up to 315 μm(-1), for the induction of a cholesteric liquid-crystalline phase through doping of a nematic phase was measured, resulting from the introduction of the chiral, mesogenic 1,1'-binaphthyl motifs. Single crystal X-ray analysis revealed that the phenylene spacer is in π-conjugation with the N-atom of the dinaphthazepine but not with the N-atom of the dinaphthosulfonimide moiety. This difference in orientation results in visible-transparency in the electronic absorption spectrum and higher (E)/(Z)-photoisomerisation quantum yields of the dinaphthosulfonimide-derived chiral dopants, as compared to the dinaphthazepine systems, which feature intramolecular charge-transfer absorption in the visible region.
轴手性的 3,5-二氢-4H-二萘并[2,1-c:1',2'-e]氮杂卓(二萘并氮杂卓)和 1,1'-联萘-2,2'-二磺酰亚胺(二萘并磺酰亚胺)部分通过 N-对亚苯基连接体刚性连接到光化学(E)/(Z)可异构化的 1,2-二乙炔基乙烯支架上。发现所得系统的化学稳定性与中心π共轭支架上的其他取代基密切相关。通过掺杂向列相,测量到高达 315 μm(-1)的螺旋扭曲功率(HTP),以诱导胆甾相液晶相,这是由于引入手性介晶 1,1'-联萘基图案。单晶 X 射线分析表明,苯撑间隔基与二萘并氮杂卓的 N-原子处于π键合状态,但与二萘并磺酰亚胺部分的 N-原子没有处于π键合状态。这种取向的差异导致电子吸收光谱中的可见光透明度,以及二萘并磺酰亚胺衍生的手性掺杂剂的(E)/(Z)光异构化量子产率更高,与二萘并氮杂卓体系相比,后者在可见区域具有分子内电荷转移吸收。