Xu Weina, Liu Jianlin, Wang Mingjun, Chen Lin, Wang Xue, Hu Chenguo
Department of Applied Physics, Chongqing University, Chongqing, 400044, PR China.
Department of Applied Physics, Chongqing University, Chongqing, 400044, PR China; School of Materials Science and Engineering, South China University of Technology, Guangzhou, 510641, PR China.
Anal Chim Acta. 2016 Mar 24;913:128-36. doi: 10.1016/j.aca.2016.01.055. Epub 2016 Feb 3.
Novel MnOOH nanorod arrays directly growing on a flexible carbon cloth substrate (MnOOH/CC) is first synthesized through a facile hydrothermal technique and utilized as an electrocatalyst for non-enzymatic detection of hydrogen peroxide. The as-prepared MnOOH nanorods are uniformly distributed on the carbon cloth with a 3D porous network structure, which provides a high specific surface area and numerous electroactive sites. The electrode based on the carbon cloth-supported MnOOH nanorod arrays exhibits a higher sensitivity (692.42 μA mM(-1) cm(-2)) and a wider linear range (20 μm-9.67 mM) with a detection limit of 3.2 μM (S/N = 3) compared with the electrode based on the rigid graphite substrate supported the random distributed MnOOH nanorods. Further, the MnOOH/CC possesses an outstanding flexibility and can conveniently be assembled into the required shape for a specific use, thus the arc-shaped MnOOH/CC electrodes are fabricated whose electrocatalytic activity toward the hydrogen peroxide reduction remains nearly unchanged in comparison with the unbent state. Due to its excellent sensitivity, reproducibility, anti-interference and stability, the electrode based on the carbon cloth-supported MnOOH nanorod arrays is believed to be promising for applications in high efficiency flexible hydrogen peroxide sensing.
首次通过简便的水热技术合成了直接生长在柔性碳布基底上的新型MnOOH纳米棒阵列(MnOOH/CC),并将其用作过氧化氢非酶检测的电催化剂。所制备的MnOOH纳米棒均匀分布在具有三维多孔网络结构的碳布上,这提供了高比表面积和众多电活性位点。与基于刚性石墨基底负载随机分布的MnOOH纳米棒的电极相比,基于碳布负载MnOOH纳米棒阵列的电极表现出更高的灵敏度(692.42 μA mM(-1) cm(-2))和更宽的线性范围(20 μM - 9.67 mM),检测限为3.2 μM(S/N = 3)。此外,MnOOH/CC具有出色的柔韧性,可以方便地组装成特定用途所需的形状,因此制备了弧形MnOOH/CC电极,其对过氧化氢还原的电催化活性与未弯曲状态相比几乎保持不变。由于其优异的灵敏度、重现性、抗干扰性和稳定性,基于碳布负载MnOOH纳米棒阵列的电极有望应用于高效柔性过氧化氢传感。