Park Gyeong Seok, Ho Dong Hae, Lyu Benzheng, Jeon Seungbae, Ryu Du Yeol, Kim Dae Woo, Lee Namkon, Kim Sungwook, Song Young Jae, Jo Sae Byeok, Cho Jeong Ho
Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul 03722, Korea.
Department of Structure Research, Korea Institute of Civil Engineering and Building Technology (KICT), Goyang, Gyonggi-Do 10223, Korea.
Sci Adv. 2022 Apr;8(13):eabl5299. doi: 10.1126/sciadv.abl5299. Epub 2022 Mar 30.
Solution-based processing of two-dimensional (2D) nanomaterials is highly desirable, especially for the low-temperature large-area fabrication of flexible multifunctional devices. MXenes, an emerging family of 2D materials composed of transition metal carbides, carbonitrides, or nitrides, provide excellent electrical and electrochemical properties through aqueous processing. Here, we further expand the horizon of MXene processing by introducing a polymeric superdispersant for MXene nanosheets. Segmented anchor-spacer structures of a comb-type polymer, polycarboxylate ether (PCE), provide polymer grafting-like steric spacings over the van der Waals range of MXene surfaces, thereby reducing the colloidal interactions by the order of 10, regardless of solvent. An unprecedented broad dispersibility window for TiCT MXene, covering polar, nonpolar, and even ionic solvents, was achieved. Furthermore, close PCE entanglements in MXene@PCE composite films resulted in highly robust properties upon prolonged mechanical and humidity stresses.
基于溶液的二维(2D)纳米材料加工是非常理想的,特别是对于柔性多功能器件的低温大面积制造。MXenes是由过渡金属碳化物、碳氮化物或氮化物组成的新兴二维材料家族,通过水相加工具有优异的电学和电化学性能。在这里,我们通过引入一种用于MXene纳米片的聚合物超分散剂,进一步拓展了MXene加工的视野。梳型聚合物聚羧酸醚(PCE)的分段锚固-间隔结构在MXene表面的范德华范围内提供了类似聚合物接枝的空间间隔,从而将胶体相互作用降低了10倍,而与溶剂无关。实现了TiCT MXene前所未有的宽分散性窗口,涵盖极性、非极性甚至离子溶剂。此外,MXene@PCE复合膜中紧密的PCE缠结在长时间的机械和湿度应力下产生了高度稳健的性能。