Fabrication of selective and sensitive chemical sensor probe based on ternary nano-formulated CuO/MnO(2)/Gd(2)O(3) spikes by hydrothermal approach

采用水热法制备基于三元纳米复合材料CuO/MnO₂/Gd₂O₃尖晶的选择性高灵敏度化学传感器探针

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Abstract

In this approach, thin spikes (NSs) of ternary nano-formulated mixed CuO/MnO(2)/Gd(2)O(3) were synthesized by the hydrothermal approach for efficient detection of 3-methoxyphenyl hydrazine (3-MPHyd) chemical from various environmental samples. The NSs were systematically characterized by using XPS, EDS, TEM, FTIR, UV/vis, and XRD. The fabricated NSs onto the glassy carbon electrode (GCE) was successfully applied for the selective and sensitive detection of 3-MPHyd in the phosphate buffer system (PBS), which displayed the highest sensitivity, good selectivity with ultra-trace detection limit, high stability, good reproducibility, and quick response time. The real environmental samples were tested for validation from stand point of the ternary doped nanomaterials for sensing in the practical applications using by electrochemical method.

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