对苯二酚
化学
双功能
检出限
催化作用
选择性
三元运算
相(物质)
电化学
氧化还原
热液循环
吸附
组合化学
无机化学
偏苯三甲酸
硫黄
光化学
激进的
纳米技术
分解
作者
Shuanghe Fu,Wei Gu,Haijun Pang,Xiaojing Yu,Xinming Wang,Guixin Yang,Yongbin Song,Chunjing Zhang,Sitaramanjaneya Mouli Thalluri,Zhipeng Yu
标识
DOI:10.1016/j.nanoms.2025.11.019
摘要
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 performance for hydroquinone detection in water by catalyzing the TMB oxidation for colorimetric sensing via a radical-mediated mechanism, providing a novel approach for environmental monitoring.
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