High-Dielectric Ultrathin BaTiO3 Anode via Electrophoretic Deposition: A Platform for Pseudocapacitive Li Storage and Interface Stabilization

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초록

We report the development of an ultrathin barium titanate (BaTiO3, BTO) anode fabricated via alternating current electrophoretic deposition (AC-EPD), enabling an interface-sensitive platform for Li-ion batteries (LIBs). The additive-free design without conductive agents or binders allows direct probing of the intrinsic electrochemical behavior of BTO. Owing to its high dielectric constant, BTO generates a uniform internal electric field at the electrode-electrolyte interface, effectively suppressing localized field fluctuations and minimizing parasitic side reactions. This interface-stabilizing effect is especially advantageous for lithium metal systems, where controlling interfacial reactivity is critical for long-term performance. Beyond its role as a stable interfacial layer, BTO exhibits significant pseudocapacitive charge storage with a b value of 0.83 and high Li ion diffusivity (1.3 x 10-8 cm2 s-1), indicating its dual function as a Li ion storage medium and a Li ion-permeable passivation layer. The ultrathin BTO anode demonstrates excellent high-rate capability at a current density of 1 A g-1. These results establish BTO as a multifunctional material capable of enhancing both energy storage and interfacial stability in next-generation LIBs.

키워드

pseudocapacitive charge storagebarium titanateelectrophoretic depositionLi-ion batterydielectric constantBARIUM-TITANATEION
제목
High-Dielectric Ultrathin BaTiO3 Anode via Electrophoretic Deposition: A Platform for Pseudocapacitive Li Storage and Interface Stabilization
저자
Lee, Ji-YeonShin, JiwonHeo, MinsuYoo, ChanyoungChang, MincheolKim, JedoKim, Hyun-SikPark, Byoung-Nam
DOI
10.1021/acsaem.5c01550
발행일
2025-09-22
유형
Article
저널명
ACS APPLIED ENERGY MATERIALS
8
18
페이지
13278 ~ 13287