She Shan, Huang Zehuan, Yin Panchao, Bayaguud Aruuhan, Jia Hongli, Huang Yichao, Wei Yen, Wei Yongge
Department of Chemistry, Tsinghua University, Beijing, 100084, P.R. China.
Chemical and Engineering Materials Division, Oak Ridge National Laboratory, Tennessee, 37831, USA.
Chemistry. 2017 Oct 20;23(59):14860-14865. doi: 10.1002/chem.201702857. Epub 2017 Sep 27.
A redox-responsive hybrid of polyoxometalate and conducting oligomer including its self-assemblies with controllable morphologies are reported. To this end, a hybrid molecule, containing a Lindqvist hexamolybdate as the polar head group and N,N'-bis(4'-amino-2,6-dimethylphenyl)-1,4-quinonediimine as the redox-responsive and aggregating group, is prepared. This hybrid exhibits redox-responsive behavior with controllable assembling morphological transition from spherical vesicles to short cylindrical vesicles. Besides, the hybrid-based self-assemblies are transferred to the surface, thus the surface wettability can be well-tuned owing to the morphological transitions of the self-assemblies. By marrying conducting materials with polyoxometalate chemistry, this research opens a new horizon of polyoxometalate-based self-assembled systems with potential applications in functional materials.
报道了一种氧化还原响应性的多金属氧酸盐与导电低聚物的杂化物,包括其具有可控形态的自组装体。为此,制备了一种杂化分子,其包含作为极性头基的Lindqvist六钼酸盐和作为氧化还原响应及聚集基团的N,N'-双(4'-氨基-2,6-二甲基苯基)-1,4-醌二亚胺。这种杂化物表现出氧化还原响应行为,具有从球形囊泡到短圆柱形囊泡的可控组装形态转变。此外,基于杂化物的自组装体被转移到表面,因此由于自组装体的形态转变,表面润湿性可以得到很好的调节。通过将导电材料与多金属氧酸盐化学相结合,本研究开启了基于多金属氧酸盐的自组装体系的新视野,在功能材料方面具有潜在应用。