5 citations · 6 across the 4 of their papers we have counts for
6 papers
Electrostatic control of Li+ density and transport rate in double-gated van der Waals devices
E. Hoenig, X. Zhang, C. Li +7
Ion transport in crystalline hosts is controlled by an applied potential that simultaneously sets ionic distribution and transport rate, restricting operation to a one-dimensional…
Layer-selective hydrogenation and proton transport in twisted bilayer graphene
J. Tong, G. Chen, H. Li +13
Recent work investigated graphene's hydrogenation with independent control of the electric field, E, and charge density, n, in the crystal and showed that the process is controlled…
Mechanism of the electrochemical hydrogenation of graphene
Y. -C. Soong, H. Li, Y. Fu +17
The electrochemical hydrogenation of graphene induces a robust and reversible conductor-insulator transition, of strong interest in logic-and-memory applications. However, its mech…
Control of proton transport and hydrogenation in double-gated graphene
J. Tong, Y. Fu, D. Domaretskiy +12
The basal plane of graphene can function as a selective barrier that is permeable to protons but impermeable to all ions and gases, stimulating its use in applications such as memb…
Rectangular carbon nitrides C4N monolayers with a zigzag buckled structure: Quasi-one-dimensional Dirac nodal lines and topological flat edge states
Linyang Li, Jialei Li, Yawei Yu +6
Due to the flexibility of C and N atoms in forming different types of bonds, the prediction of new two-dimensional (2D) carbon nitrides is a hot topic in the field of carbon-based…
Gate-controlled suppression of light-driven proton transport through graphene electrodes
S. Huang, E. Griffin, J. Cai +6
Recent experiments demonstrated that proton transport through graphene electrodes can be accelerated by over an order of magnitude with low intensity illumination. Here we show tha…