Miyamoto Nobuyoshi, Miyoshi Momoka, Kato Riki, Nakashima Yuji, Iwano Hiroyuki, Kato Takashi
Department of Life, Environment and Applied Chemistry, Faculty of Engineering, Fukuoka Institute of Technology, 3-30-1, Wajiro-Higashi, Higashiku, Fukuoka 811-0295, Japan.
Department of Life, Environment and Applied Chemistry, Graduate School of Engineering, Fukuoka Institute of Technology, 3-30-1, Wajiro-Higashi, Higashiku, Fukuoka 811-0295, Japan.
Sci Adv. 2024 Jun 7;10(23):eadk6452. doi: 10.1126/sciadv.adk6452. Epub 2024 Jun 5.
Self-assemblies of anisotropic colloidal particles into colloidal liquid crystals and well-defined superlattices are of great interest for hierarchical nanofabrications that are applicable for various functional materials. Inorganic nanosheets obtained by exfoliation of layered crystals have been highlighted as the intriguing colloidal units; however, the size polydispersity of the nanosheets has been preventing precise design of the assembled structures and their functions. Here, we demonstrate that the anionic titanate nanosheets with monodisperse size reversibly form very unusual superstructured mesophases through finely tunable weak attractive interactions between the nanosheets. Transmission electron microscopy, polarizing optical microscopy, small-angle x-ray scattering, and confocal laser scanning microscopy clarified the reversible formation of the mesophases (columnar nanofibers, columnar nematic liquid crystals, and columnar nanofiber bundles) as controlled by counter cations, nanosheet concentration, solvent, and temperature.
各向异性胶体颗粒自组装成胶体液晶和结构明确的超晶格,对于适用于各种功能材料的分级纳米制造具有重大意义。通过层状晶体剥离获得的无机纳米片作为引人关注的胶体单元已受到关注;然而,纳米片的尺寸多分散性一直阻碍着组装结构及其功能的精确设计。在此,我们证明了具有单分散尺寸的阴离子钛酸盐纳米片通过纳米片之间精细可调的弱吸引相互作用可逆地形成非常不寻常的超结构中间相。透射电子显微镜、偏光光学显微镜、小角x射线散射和共聚焦激光扫描显微镜揭示了中间相(柱状纳米纤维、柱状向列液晶和柱状纳米纤维束)在抗衡阳离子、纳米片浓度、溶剂和温度的控制下可逆形成。