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Inside Back Cover: Dynamic Mirror‐Symmetry Breaking in Bicontinuous Cubic Phases (Angew. Chem. Int. Ed. 48/2014) 下载免费PDF全文
Christian Dressel Prof. Dr. Feng Liu Dr. Marko Prehm Dr. Xiangbing Zeng Prof. Dr. Goran Ungar Prof. Dr. Carsten Tschierske 《Angewandte Chemie (International ed. in English)》2014,53(48):13293-13293
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Christian Dressel Prof. Dr. Feng Liu Dr. Marko Prehm Dr. Xiangbing Zeng Prof. Dr. Goran Ungar Prof. Dr. Carsten Tschierske 《Angewandte Chemie (International ed. in English)》2014,53(48):13115-13120
Chiral segregation of enantiomers or chiral conformers of achiral molecules during self‐assembly in well‐ordered crystalline superstructures has fascinated chemists since Pasteur. Here we report spontaneous mirror‐symmetry breaking in cubic phases formed by achiral multichain‐terminated diphenyl‐2,2′‐bithiophenes. It was found that stochastic symmetry breaking is a general phenomenon observed in bicontinuous cubic liquid crystal phases of achiral rod‐like compounds. In all compounds studied the ${{\it Im}\bar 3m}$ cubic phase is always chiral, while the ${Ia\bar 3d}$ phase is achiral. These intriguing observations are explained by propagation of homochiral helical twist across the entire networks through helix matching at network junctions. In the ${Ia\bar 3d}$ phase the opposing chiralities of the two networks cancel, but not so in the three‐networks ${{\it Im}\bar 3m}$ phase. The high twist in the ${{\it Im}\bar 3m}$ phase explains its previously unrecognized chirality, as well as the origin of this complex structure and the transitions between the different cubic phases. 相似文献
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