摘要
This study successfully fabricated high-performance zirconium-doped lithium lanthanum titanate (Zr-LLTO) ceramics exhibiting high relative density (>99 %) and high ionic conductivity (5.89 × 10−5 S/cm), using a powder synthesized via an elevated-temperature solid-state method as the raw material. To simulate the deep-sea environment featuring high temperature, high pressure, and corrosivity, the fabricated Zr-LLTO ceramics were treated in supercritical water (400 °C, 35 MPa) for structural and performance stability evaluation. Based on this stable ceramic, a novel all-solid-state reference electrode suitable for electrochemical measurements in high-temperature, high-pressure marine environments was constructed. Meanwhile, a dense Ag2S film (Ag/Ag2S) was grown in situ on silver wires by hydrothermal sulfidation, significantly enhancing the film uniformity and substrate adhesion. This Ag/Ag2S electrode maintained structural stability after supercritical water treatment. A fully solid-state S2− sensor was fabricated by integrating the Zr-LLTO reference electrode with the Ag/Ag2S working electrode. The sensor exhibits rapid response, high sensitivity, and a wide linear detection range (10−6 to 1 mol/L, R2 ≥ 0.96) in simulated seawater, effectively overcoming interference issues of traditional Ag/AgCl reference electrodes in high‑sulfur environments. This system offers a novel and robust solution for in situ sulfide monitoring in deep-sea extreme environments, offering high environmental adaptability, simple fabrication, and reliable performance.
| 源语言 | 英语 |
|---|---|
| 文章编号 | 116253 |
| 期刊 | Microchemical Journal |
| 卷 | 219 |
| DOI | |
| 出版状态 | 已出版 - 12月 2025 |
联合国可持续发展目标
此成果有助于实现下列可持续发展目标:
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可持续发展目标 14 水下生物
指纹
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