电子束“快手”:给电池电解质穿上“防弹衣”| Battery Brew 1 episode artwork

EPISODE · Dec 26, 2025 · 19 MIN

电子束“快手”:给电池电解质穿上“防弹衣”| Battery Brew 1

from EKL Battery Brew

本期主题:固态电池突破性进展——电子束烧结实现双相透明固态电解质> 本期节目聚焦固态锂电池的核心材料——石榴石型氧化物固态电解质(LLZO)。传统液态电解质易燃安全隐患大,而LLZO安全、高电压兼容,但锂枝晶穿透问题是最大痛点。西安交通大学团队(包括陈凯、薛伟江等研究人员)创新采用聚焦电子束点对点扫描烧结技术,实现超快淬火(冷却速度>10⁶ K/s),成功制备出晶态-非晶态双相透明LLZO电解质。  这种双相结构像给高导离子晶粒包裹一层纳米级“非晶壳”,均匀电荷分布、缓冲应力,有效阻挡锂枝晶生长。实验亮点包括:光学透明度极高、临界电流密度(CCD)达1.6 mA/cm²(传统样品的两倍)、电子电导率降低一个数量级、烧结时间仅几分钟、可制超薄膜(50-70 μm)。这项技术为高性能固态电池和功能陶瓷制造开辟新路径,潜力巨大!---参考文献与来源 基于最新研究:Electron-beam sintering achieves dual-phase transparent solid-state electrolytes for batteries(2025年12月预印本,Research Square)。 西安交通大学团队(陈凯、薛伟江等)成果,聚焦LLZO(Li7La3Zr2O12)双相结构优化。 相关背景:传统烧结 vs. 超快淬火(hyperquenching)对枝晶抑制的机制。更多电池前沿论文&解读,探索X账号:@[EKL_Batteries](https://x.com/EKL_Batteries)前往小宇宙评论区与主播互动

Episode metadata supplied by the publisher feed · Published Dec 26, 2025

Embed this episode

Ready to play

电子束“快手”:给电池电解质穿上“防弹衣”| Battery Brew 1

0:00 19:42

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

Frequently Asked Questions

How long is this episode of EKL Battery Brew?

This episode is 19 minutes long.

When was this EKL Battery Brew episode published?

This episode was published on December 26, 2025.

Can I download this EKL Battery Brew episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!