Li Hongbo, Zhang Ling, Mao Yiwu, Wen Chengwei, Zhao Peng
Institute of Nuclear Physics and Chemistry (INPC), China Academy of Engineering Physics (CAEP), Mianyang, 621999, People's Republic of China.
Nanoscale Res Lett. 2019 Apr 17;14(1):135. doi: 10.1186/s11671-019-2966-2.
Among the numerous transition metal hydroxide materials, cobalt- and nickel-based hydroxides have been extensively studied for their excellent electrochemical performances such as non-enzymatic electrochemical sensors. Binary cobalt-nickel hydroxide has received extensive attention for its exceptionally splendid electrochemical behaviors as a promising glucose sensor material. In this work, we report the synthesis of three-dimensional amorphous Co-Ni hydroxide nanostructures with homogeneous distribution of elements via a simple and chemically clean electrochemical deposition method. The amorphous Co-Ni hydroxide, as a non-enzymatic glucose sensor material, exhibits a superior biosensing performance toward glucose detection for its superior electron transfer capability, high specific surface area, and abundant intrinsic redox couples of Ni/Ni and Co/Co/Co ions. The as-synthesized amorphous Co-Ni hydroxide holds great potential in glucose monitoring and detection as non-enzymatic glucose sensors with high sensitivity 1911.5 μA mM cm at low concentration, wide linear range of 0.00025-1 mM and 1-5 mM, low detection limit of 0.127 μM, super long-term stability, and excellent selectivity in 0.5 M NaOH solution.
在众多过渡金属氢氧化物材料中,钴基和镍基氢氧化物因其优异的电化学性能,如作为非酶电化学传感器,而受到广泛研究。二元氢氧化钴镍作为一种有前景的葡萄糖传感器材料,因其卓越的电化学行为而备受关注。在这项工作中,我们报道了通过一种简单且化学清洁的电化学沉积方法合成具有均匀元素分布的三维非晶态钴镍氢氧化物纳米结构。非晶态钴镍氢氧化物作为一种非酶葡萄糖传感器材料,因其优异的电子转移能力、高比表面积以及丰富的镍/镍和钴/钴/钴离子固有氧化还原对,对葡萄糖检测表现出卓越的生物传感性能。所合成的非晶态钴镍氢氧化物作为非酶葡萄糖传感器在葡萄糖监测和检测方面具有巨大潜力,在低浓度下灵敏度高达1911.5 μA mM cm,线性范围宽,为0.00025 - 1 mM和1 - 5 mM,检测限低至0.127 μM,具有超长的长期稳定性,并且在0.5 M NaOH溶液中具有优异的选择性。