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Synthesis of Ni-Co Hydroxide Nanosheets Constructed Hollow Cubes for Electrochemical Glucose Determination

机译:电化学测定葡萄糖的Ni-Co氢氧化物纳米片结构的空心立方体的合成

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摘要

Hierarchical Ni-Co double transition metal hydroxide nanosheets have been explored as an effective strategy for the design of nonenzymatic glucose sensors. Ni-Co hydroxide nanosheets constructed hollow cubes were successfully synthesized by using Cu2O cubes as templates and subsequently etched by Na2S2O3 to achieve a hollow cubic structure. The molar ratio between Ni and Co was tuned by varying the precursor ratio of NiCl2 and CoCl2. It was observed by transmission electron microscopy (TEM) that the increasing Ni precursor resulted in particle morphology, and the increasing ratio of the Co precursor resulted in more lamellar morphology. The sample with the composition of Ni0.7Co0.3(OH)2 displayed the best performance for glucose sensing with high selectivity (1541 μA mM–1 cm–2), low detection limit (3.42 µM with S/N = 3), and reasonable selectivity. Similar strategies could be applied for the design of other electrode materials with high efficiency for nonenzymatic glucose determination.
机译:分层镍钴双过渡金属氢氧化物纳米片已被探索为非酶葡萄糖传感器设计的有效策略。以Cu2O立方体为模板,成功合成了Ni-Co氢氧化物纳米片结构的空心立方体,随后用Na2S2O3进行刻蚀,得到空心立方体结构。通过改变NiCl 2和CoCl 2的前体比例来调节Ni和Co之间的摩尔比。通过透射电子显微镜(TEM)观察到,增加的Ni前体导致颗粒形貌,并且增加的Co前体比例导致更多的层状形貌。组成为Ni0.7Co0.3(OH)2的样品具有高选择性(1541μAmM –1 cm –2 )表现出最佳的葡萄糖感测性能,低检测限(S / N = 3时为3.42 µM)和合理的选择性。类似的策略可用于非酶法葡萄糖测定的高效其他电极材料的设计。

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