Influence of Alloyand Alloy Composition on DendriteFormation and Electrochemical Performance in Aluminum Metal Batteries

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초록

Interfacial instability and sluggish kinetics of high-purity aluminum (Al) anodes remain major bottlenecks for rechargeable nonaqueous aluminum-ion batteries (AIBs) to achieve high electrochemical performance. This study systematically evaluates the effects of alloying compositions on dendrite formation in commercial AA1235, AA3003, and AA8006 Al alloys as scalable, high-performance and low-cost anodes in chloroaluminate-based electrolyte AIBs. Comprehensive results demonstrate that the commercial Al alloys achieve superior cycling stability over pure Al metal benefited by leveraging a balanced intermetallic distribution that promotes uniform Al plating and suppresses vertical dendrite propagation. In contrast, high-purity Al exhibits limited long-life cycles due to its inhomogeneous native oxides. Our findings reveal that tailored commercial alloys can outperform their high-purity materials, offering a strategic pathway for durable and cost-effective energy storage based on multivalent metal-ion chemistries.

키워드

microgalvanic corrosionnucleation kineticsintermetallic phasesionic liquid electrolyte batterydendrite suppressionINTERMETALLIC PHASESCORROSIONOXIDE
제목
Influence of Alloyand Alloy Composition on DendriteFormation and Electrochemical Performance in Aluminum Metal Batteries
저자
Chaiyapo, NatthaPhuenhinlad, PornjiraThanwisai, PanyaTangtrakarn, ApishokPongsaksawad, WanidaTamwattana, OrapaHarnchana, ViyadaKlangtakai, PawineeTheerthagiri, JayaramanChoi, Myong YongLimphirat, WanwisaMeethong, Nonglak
DOI
10.1021/acsami.6c05876
발행일
2026
유형
Article; Early Access
저널명
ACS Applied Materials and Interfaces