A Ge/GeO2/Titanate nanocomposite with high energy density and enhanced long-term stability for lithium-ion batteries

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초록

This study introduces a novel Ge/GeO2/Titanate composite to address the limitations of conventional Ge-based anode materials, including volume expansion, particle aggregation, and unstable SEI formation during repeated charge-discharge cycles. By combining two-dimensional (2D) layered titanate nanosheets with Ge/GeO2 nano- particles, the composite achieves enhanced structural stability and outstanding electrochemical performance. The 2D titanate nanosheets effectively mitigate the volume expansion of Ge/GeO2 nanoparticles, prevent particle aggregation, and maintain the long-term structural stability of the electrode while enhancing lithium-ion and electron transport pathways. Moreover, the thin amorphous GeO2 layer on the Ge/GeO2 nanoparticles suppresses excessive reactions with the electrolyte, promotes uniform and stable SEI formation, reduces irreversible capacity loss, and further contributes to the electrode's long-term stability. The Ge/GeO2/Titanate composite exhibits exceptional performance, retaining a high capacity of 925.8 mAh/g (similar to 94 % of the theoretical capacity) after 350 cycles at 0.1 A/g. It also achieves capacity retention rates of 88.3 % and 73.4 % after 1200 charge-discharge cycles at high current densities of 2.0 A/g and 5.0 A/g, respectively.

키워드

Titanate; Germanium; Germanium oxide; Lithium-ion batteries; Anodes; Nanocomposites; REDUCED GRAPHENE OXIDE; HIGH-RATE ANODE; HIGH-CAPACITY; GERMANIUM; PERFORMANCE; NANOSHEETS; CARBON; GE; NANOPARTICLES
제목
A Ge/GeO2/Titanate nanocomposite with high energy density and enhanced long-term stability for lithium-ion batteries
저자
Lee, Minseop; Park, Ji-Ho; Park, Dong-Jun; Paek, Seung-Min
DOI
10.1016/j.jssc.2025.125256
발행일
2025-06
유형
Article
저널명
Journal of Solid State Chemistry
권
346