Tuning Pore Size in Graphene in the Angstrom Regime for Highly Selective Ion-Ion Separation

被引:15
作者
Zhao, Kangning [1 ]
Lee, Wan-Chi [1 ]
Rezaei, Mojtaba [1 ]
Chi, Heng-Yu [1 ]
Li, Shaoxian [1 ]
Villalobos, Luis Francisco [1 ]
Hsu, Kuang-Jung [1 ]
Zhang, Yuyang [2 ]
Wang, Feng-Chao [2 ]
Agrawal, Kumar Varoon [1 ]
机构
[1] Ecole Polytech Fed Lausanne EPFL, Lab Adv Separat LAS, CH-1950 Sion, Switzerland
[2] Univ Sci & Technol China, Dept Modern Mech, CAS Key Lab Mech Behav & Design Mat, Hefei 230027, Peoples R China
基金
瑞士国家科学基金会; 欧洲研究理事会;
关键词
single layer graphene; partial dehydration; angstrom-scale pore; ion selectivity; poresizedistribution; selective ion transport; ENERGY-CONVERSION; PROTON TRANSPORT; DEHYDRATION; EXCLUSION; MEMBRANES; NANOPORES; CHANNELS;
D O I
10.1021/acsnano.3c11068
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Zero-dimensional pores spanning only a few angstroms in size in two-dimensional materials such as graphene are some of the most promising systems for designing ion-ion selective membranes. However, the key challenge in the field is that so far a crack-free macroscopic graphene membrane for ion-ion separation has not been realized. Further, methods to tune the pores in the & Aring;-regime to achieve a large ion-ion selectivity from the graphene pore have not been realized. Herein, we report an & Aring;-scale pore size tuning tool for single layer graphene, which incorporates a high density of ion-ion selective pores between 3.5 and 8.5 & Aring; while minimizing the nonselective pores above 10 & Aring;. These pores impose a strong confinement for ions, which results in extremely high selectivity from centimeter-scale porous graphene between monovalent and bivalent ions and near complete blockage of ions with the hydration diameter, D-H, greater than 9.0 & Aring;. The ion diffusion study reveals the presence of an energy barrier corresponding to partial dehydration of ions with the barrier increasing with D-H. We observe a reversal of K+/Li+ selectivity at elevated temperature and attribute this to the relative size of the dehydrated ions. These results underscore the promise of porous two-dimensional materials for solute-solute separation when & Aring;-scale pores can be incorporated in a precise manner.
引用
收藏
页码:5571 / 5580
页数:10
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