| Literature DB >> 31513318 |
Yaqian Deng1, Tongxin Shang2,3, Zhitan Wu2,3, Ying Tao2,3, Chong Luo1, Jiachen Liang2,3, Daliang Han2,3, Ruiyang Lyu1, Changsheng Qi2,3, Wei Lv1, Feiyu Kang1, Quan-Hong Yang2,3.
Abstract
Gelation is an effective way to realize the self-assembly of nanomaterials into different macrostructures, and in a typical use, the gelation of graphene oxide (GO) produces various graphene-based carbon materials with different applications. However, the gelation of MXenes, another important type of 2D materials that have different surface chemistry from GO, is difficult to achieve. Here, the first gelation of MXenes in an aqueous dispersion that is initiated by divalent metal ions is reported, where the strong interaction between these ions and OH groups on the MXene surface plays a key role. Typically, Fe2+ ions are introduced in the MXene dispersion which destroys the electrostatic repulsion force between the MXene nanosheets in the dispersion and acts as linkers to bond the nanosheets together, forming a 3D MXene network. The obtained hydrogel effectively avoids the restacking of the MXene nanosheets and greatly improves their surface utilization, resulting in a high rate performance when used as a supercapacitor electrode (≈226 F g-1 at 1 V s-1 ). It is believed that the gelation of MXenes indicates a new way to build various tunable MXene-based structures and develop different applications.Entities:
Keywords: 3D assembly; MXene; gelation; monoliths; supercapacitors
Year: 2019 PMID: 31513318 DOI: 10.1002/adma.201902432
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849