研究目的
Investigating the atomistic origin of the difference in ionic conductivity between Ga3+ and Al3+ substituted Li7La3Zr2O12 solid electrolytes.
研究成果
The study reveals that Ga3+ substitution leads to higher Li-ion conductivity compared to Al3+ substitution in LLZO solid electrolytes, due to less repulsive interactions allowing limited Li+ diffusion around Ga3+ ions. This effect is more pronounced at lower temperatures. The findings provide insights into optimizing aliovalent substitution strategies for enhancing ionic transport in solid electrolytes.
研究不足
The study focuses on the bulk properties of Ga/Al-substituted LLZO and does not account for grain boundary effects, which can significantly influence ionic conductivity in real materials. Additionally, the simulations may not fully capture all atomic-scale interactions due to the limitations of the force field used.