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Efficient 3D-Silver Flower-like Microstructures for Non-Enzymatic Hydrogen Peroxide (H2O2)  Amperometric Detection

机译:非酶法过氧化氢(H2O2)的高效3D银花状微结构

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摘要

We present an efficient non-enzymatic hydrogen peroxide sensor composed of flower-like silver microstructures. The silver microstructures´ morphology is controlled by adding minute amounts of either succinic or malonic acid as directing agents. Morphologically, silver particles showed ball-like structures in the absence of both directing agents, while the presence of 50 ppm of succinic acid and malonic acid lead to monodisperse chrysanthemum and water-lily flower-like structure, respectively. A higher concentration of succinic acid resulted in a rose flower-like structures. Electrochemically, the rose flower-like silver microstructures exhibited the best performance for H2O2 detection as evaluated by their outstanding electrocatalytic activity (12 times higher) and sensitivity (2.4 mM−1 cm−2, 24 times higher) with lower detection limit (0.4 µM, 5 times smaller) together with their excellent H2O2 selectivity compared to that of the ball-shaped structures. Additionally, rose-flower microstructures exhibited excellent long-term stability; 11 and 3 times higher compared to ball- and water-lily structures, respectively. This substantial performance enhancement is attributed to their unique flower-like structure providing a higher number of active surface sites (at least 8 times higher) and a faster detachment rate of in-situ generated oxygen bubbles from their surface.
机译:我们提出了由花状银微结构组成的有效的非酶促过氧化氢传感器。通过添加微量的琥珀酸或丙二酸作为导向剂来控制银微结构的形态。从形态上讲,在没有两种导向剂的情况下,银颗粒均呈球形,而琥珀酸和丙二酸的含量为50 ppm分别导致菊花和水百合的花朵呈单分散状。较高浓度的琥珀酸导致玫瑰花状结构。电化学上,玫瑰花状银微结构具有出色的电催化活性(高12倍)和灵敏度(2.4 mM -1 cm −2

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