A Prussian Blue Analog-Derived NiS2/CoS2/CuS2 Ternary Composite as Secondary Battery Anode Displaying High Capacity and Excellent Full-Cell Performance.

Han, Tianli; Songtian, Huizi; Huang, Xiaofei; Li, Lixing; Wang, Xuehui; Zhang, Chenchen; Wang, Xiaoya; Liu, Jinyun · Nano Lett · 2026

basic_science · Level V

Where this comes from

Abstract

Developing high-capacity and fast reaction kinetic sodium-ion (Na-ion) battery anodes still remains a big challenge. Here, a ternary heterostructure composite of NiS2/CoS2/CuS2 with hollow cubic structure configuration is developed by sulfurizing a NiCoCu-based prussian blue analog precursor. The ternary sulfides synergistically enhance electron/ion transport, while the hollow cubic morphology improves structural stability during cycling which is confirmed through in situ studies such as in situ Raman and X-ray diffraction. The NiS2/CoS2/CuS2 anode delivers a high capacity of 671 mAh g-1 after cycling 250 times under 0.5 A g-1, and it maintains 417 mAh g-1 after 900 cycles at 1 A g-1. The NiS2/CoS2/CuS2 anode-based full cell when paired with a NVP cathode achieves 310 mAh g-1 after 1000 cycles under 0.5 A g-1, displaying a good applicability potential. It is expected these findings are of great significance to develop long-life, high-capacity Na-ion batteries.