Related Experiment Video
Updated: May 29, 2025

In Situ Neutron Powder Diffraction Using Custom-made Lithium-ion Batteries
Published on: November 10, 2014
First-principles elucidation of defect-mediated Li transport in hexagonal boron nitride
Yilong Zhou1,2, S O Kucheyev1, Liwen F Wan1,2
1Materials Science Division, Lawrence Livermore National Laboratory, Livermore, California 94550, USA. zhou17@llnl.gov.
Abstract:
Hexagonal boron nitride (hBN) is a promising candidate as a protective membrane or separator in Li-ion and Li-S batteries, given its excellent chemical stability, mechanical robustness, and high thermal conductivity. In addition, hBN can be functionalized by introducing defects and dopants, or be directly integrated into other active components of batteries, which further augments its appeal to the field. Here, we use first-principles simulations to evaluate the role of atomic defects in hBN in regulating the Li-ion diffusion mechanism and associated kinetics. Specifically, the following four distinct types of vacancy defects are considered: isolated single B and N vacancies, a B-N vacancy pair, and a B3N vacancy cluster. It is found that these defect sites generally favor Li intercalation and out-of-plane diffusion but slow down in-plane Li-ion diffusion due to a strong Li trapping effect at the defect sites. Such a trapping effect is, however, highly local such that it does not necessarily affect the overall Li-ion conductivity in defected hBN layers. The present systematic evaluation of the impact of atomic defects on Li ion migration and accompanied charge analysis of hBN lattice in response to Li-ion diffusion provide a mechanistic understanding of Li-ion transport behavior in defected hBN and highlight the potential of defect engineering to achieve optimal material performance.
More Related Videos
10:36Advanced Experimental Methods for Low-temperature Magnetotransport Measurement of Novel Materials
Published on: January 21, 2016
11:33All-electronic Nanosecond-resolved Scanning Tunneling Microscopy: Facilitating the Investigation of Single Dopant Charge Dynamics
Published on: January 19, 2018
Related Concept Videos
Exceptions to the Octet Rule
Lattice Centering and Coordination Number
Types of Unit Cells
Imagine taking a large number of identical...
Valence Bond Theory
Band Theory
The energy difference between these bands is known as the band gap.
Conductor, Semiconductor,...
Ionic Bonding and Electron Transfer
Metallic Solids
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability....