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Synergistic phase and defect engineering in nitrogen-doped MoS2/Co9S8/CdS nanozyme for sensitive hydroquinone monitoring

作者:Shuanghe Fu, Wei Gu, Haijun Pang, Xiaojing Yu, Xinming Wang, Guixin Yang, Yongbin Song, Chunjing Zhang, Sitaramanjaneya Mouli Thalluri, Zhipeng Yu · 发表于:Nano Materials Science · 年份:2026 · DOI:10.1016/j.nanoms.2025.11.019 · 被引用次数:4 · 研究领域:Advanced Nanomaterials in Catalysis、Nanocluster Synthesis and Applications、Advanced biosensing and bioanalysis techniques

Hydroquinone (HQ), a toxic and persistent pollutant, requires sensitive and reliable detection strategies beyond conventional chromatographic or electrochemical methods. Here, we report a nitrogen-doped 1T/2H-MoS 2 /Co 9 S 8 /CdS ternary nanozyme synthesized via a urea-mediated hydrothermal route. Urea acts as a bifunctional agent, simultaneously stabilizing the metastable 1T-MoS 2 phase and introducing sulfur vacancies through nitrogen substitution. This defect-phase engineering optimizes the electronic structure, as evidenced by a 0.2 eV positive shift in Mo 3d binding energy, and exposes coordinatively unsaturated Mo sites that accelerate hydroxyl radical (•OH) generation. Coupled with the redox activity of Co 9 S 8 and the adsorption capability of CdS, the composite exhibits markedly enhanced peroxidase-like activity, characterized by higher catalytic turnover and stronger H 2 O 2 affinity compared to undoped systems. A colorimetric sensor constructed from this platform enabled ultrasensitive HQ detection with a detection limit of 0.29 μM and excellent recoveries (100.18% to 101.64%) in spiked real water samples, while maintaining strong selectivity and operational stability. This work establishes a nitrogen-doping-driven paradigm for phase stabilization and defect regulation, offering a generalizable strategy for designing high-performance nanozymes for environmental monitoring. A nitrogen-doped 1T/2H mixed-phase MoS 2 /Co 9 S 8 /CdS nanozyme demonstrates exceptional per...