| Literature DB >> 33506634 |
Peipei Li1, Dechao Wang2, Lu Zhang1, Chao Liu3, Fei Wu4, Yongkun Wang5, Zheng Wang1, Zhenhuan Zhao1, Weiwei Wu1, Yanping Liang1, Zhimin Li1, Weidong Wang5, Yaping Zheng2.
Abstract
An in situ coupling approach is used to fabricate the porous carbon liquid with permanent porosity by directly dispersing hollow carbon nanospheres in polymerized ionic liquids. It is a kind of homogenous and stable type III porous liquid at room temperature. Because of the well-preserved permanent porosity, this unique porous carbon liquid is capable of absorbing the largest quantity of carbon dioxide than the reference PILs and solid carbon liquid, thus, can function as a promising candidate for application in gas storage. More importantly, this approach not only provides an easy method to tune the properties of those specific porous liquids, but also is suitable for fabricating other porous liquid based on varied porous structures (e.g., porous carbon nitride, porous boron nitride, and polymer with intrinsic microporosity), thus paving a viable path for the rational design and synthesis of novel porous liquids with functional properties for specific applications.Entities:
Keywords: cation-π interaction; in situ coupling; permanent porosity; polymerized ionic liquids; porous carbon liquid
Year: 2021 PMID: 33506634 DOI: 10.1002/smll.202006687
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281