TY - JOUR
T1 - Network Phases with Multiple-Junction Geometries at the Gyroid-Diamond Transition
AU - Cai, Xiaoqian
AU - Hauche, Sebastian
AU - Poppe, Silvio
AU - Cao, Yu
AU - Zhang, Lei
AU - Huang, Chang
AU - Tschierske, Carsten
AU - Liu, Feng
N1 - Publisher Copyright:
© 2023 American Chemical Society.
PY - 2023/1/18
Y1 - 2023/1/18
N2 - A novel phase sequence for the transition from the double diamond to the double gyroid cubic phases via two non-cubic intermediate phases, an orthorhombic Fmmm (O69) phase and a hexagonal P63/m (H176) phase, is reported for specifically designed bolapolyphiles composed of a linear rod-like bistolane core with sticky glycerol ends and two branched central and two linear peripheral side chains. These liquid crystalline (LC) phases represent members of a new class of unicontinuous network phases, formed by longitudinal rod bundles with polar spheres acting as junctions and the alkyl chains forming the continuum around them. In contrast to previously known bicontinuous cubic networks, they combine different junctions with different angles in a common structure, and one of them even represents a triple network instead of the usually found double networks. This provides new perspectives for the design of soft network phases with enhanced structural complexity, inspiring the search for new supramolecular networks, nano-particle arrays, and photonic band-gap materials.
AB - A novel phase sequence for the transition from the double diamond to the double gyroid cubic phases via two non-cubic intermediate phases, an orthorhombic Fmmm (O69) phase and a hexagonal P63/m (H176) phase, is reported for specifically designed bolapolyphiles composed of a linear rod-like bistolane core with sticky glycerol ends and two branched central and two linear peripheral side chains. These liquid crystalline (LC) phases represent members of a new class of unicontinuous network phases, formed by longitudinal rod bundles with polar spheres acting as junctions and the alkyl chains forming the continuum around them. In contrast to previously known bicontinuous cubic networks, they combine different junctions with different angles in a common structure, and one of them even represents a triple network instead of the usually found double networks. This provides new perspectives for the design of soft network phases with enhanced structural complexity, inspiring the search for new supramolecular networks, nano-particle arrays, and photonic band-gap materials.
UR - https://www.scopus.com/pages/publications/85146037419
U2 - 10.1021/jacs.2c10462
DO - 10.1021/jacs.2c10462
M3 - 文章
C2 - 36603102
AN - SCOPUS:85146037419
SN - 0002-7863
VL - 145
SP - 1000
EP - 1010
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 2
ER -