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Rectifying interphases for preventing Li dendrite propagation in solid-state electrolytes

Abstract:
Solid-state electrolytes have emerged as the grail for safe and energy-dense Li metal batteries but still face significant challenges of Li dendrite propagation and interfacial incompatibility. In this work, an interface engineering approach is applied to introduce an electronic rectifying interphase between the solid-state electrolyte and Li metal anode. The rectifying behaviour restrains electron infiltration into the electrolyte, resulting in effective dendrite reduction. This interphase consists of a p-Si/n-TiO2 junction and an external Al layer, created using a multi-step sputter deposition technique on the surface of garnet pellets. The electronic rectifying behaviour is investigated via the asymmetric I–V responses of on-chip devices and further confirmed via the one-order of magnitude lower current response by electronic conductivity measurements on the pellets. The Al layer contributes to interface compatibility, which is verified from the lithiophilic surface and reduced interfacial impedance. Electrochemical measurements via Li symmetric cells show a significantly improved lifetime from dozens of hours to over two months. The reduction of the Li dendrite propagation behaviour is observed through 3D reconstructed morphologies of the solid-state electrolyte by X-ray computed tomography
Publication status:
Published
Peer review status:
Peer reviewed

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Role:
Author
ORCID:
0000-0003-1566-1509
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Role:
Author
ORCID:
0000-0001-9222-5722
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Role:
Author
ORCID:
0000-0003-4658-7655
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Role:
Author
ORCID:
0000-0002-3682-0655


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Funder identifier:
10.13039/501100000288
Grant:
IEC\NSFC\211074
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Funder identifier:
10.13039/501100000266
Grant:
EP/V002260/1


Publisher:
Royal Society of Chemistry
Journal:
Energy & Environmental Science More from this journal
Volume:
16
Issue:
5
Pages:
2167-2176
Publication date:
2023-05-17
DOI:
EISSN:
1754-5706
ISSN:
1754-5692


Language:
English
Keywords:
Pubs id:
1341243
Local pid:
pubs:1341243
Source identifiers:
W4352994223
Deposit date:
2026-05-07
ARK identifier:
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