| Literature DB >> 31478303 |
Fan Wang1,2, Zicheng Zuo1, Liang Li1,2, Kuo Li3, Feng He1, Zhongqing Jiang4, Yuliang Li1,2.
Abstract
A two-dimensional (2D) carbon nanofilm with uniform artificial nanopores is an ideal material to ultimately suppress the fuel permeation in the proton exchange membrane fuel cells. Graphdiyne has great mechanical strength, high dimensional stability, and controllable nanopores, and has good prospects to play this crucial role. It is found that graphdiyne nanofilm with amino groups and natural nanopores can be easily prepared with high integrity. The aminated graphdiyne has good compatibility with the Nafion matrix owing to the acid-base interaction between them. The excellent comprehensive properties of graphdiyne in selectivity, dimensional stability, and integrity effectively improve the power performance and stability of fuel cells at wide temperature. Our results can be developed into a universal method that can easily realize the selective separation of ions and small molecules, and open a new way for the emerging applications in green energy.Entities:
Keywords: carbon materials; direct methanol fuel cells; graphdiyne; methanol crossover; selective transport
Year: 2019 PMID: 31478303 DOI: 10.1002/anie.201910588
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336