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◆ ACS Sustainable Chemistry & Engineering2025-12-03· Anode

Facile Aqueous Synthesis of Ultrathin Sb <sub>2</sub> O <sub>3</sub> Nanobelts for High-Performance Sodium-Ion Battery Anodes

Zhiyuan Wang, Fengxiao Hou, Tian Zhang, Xianqing Li, Yanhui Song, Xiaobin Zhong, Jin‐Chao Dong, Kaifan Zhao, Xuhong Guo, Zongsheng Zhang, Jian‐Feng Li, Junjie Guo, Xiaoping Han

原始摘要(英文原文)· Original abstract
Low-dimensional Sb 2 O 3 holds great promise as an anode material for sodium-ion batteries (SIBs), but its scalable synthesis remains a challenge. Here, we report a green hydrothermal approach in surfactant-free pure water to fabricate ultrathin Sb 2 O 3 nanobelts (NBs) via a multistage growth mechanism: (i) ultrasonic exfoliation of bulk Sb into quantum dots, (ii) dissolved oxygen-driven oxidation and self-assembly into nanoclusters, and (iii) temperature-controlled phase selection, yielding orthorhombic NBs at 80 °C with respect to cubic nanosheets at room temperature. This method is observed to achieve a mass conversion rate of over 32% for the target NBs with controlled dimensions. Furthermore, the Sb 2 O 3 NBs exhibit an ultrathin thickness (<40 nm) along the [100] orientation, effectively mitigating volume expansion during cycling. Such an anode material delivers a discharge capacity of 443.1 mAh·g –1 at 0.1 A·g –1 over 150 cycles, demonstrating an outstanding long-term cyclability. The current work provides a scalable and eco-friendly synthesis strategy for low-dimensional Sb 2 O 3 nanostructures, offering new insights into their application in SIBs and other energy storage devices.
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Facile Aqueous Synthesis of Ultrathin Sb <sub>2</sub> O <sub>3</sub> Nanobelts for High-Performance Sodium-Ion Battery Anodes — 科研速览 Science Skim