4.7 Article

Dynamic gas bubble template electrodeposition mechanisms and amperometric glucose sensing performance of three kinds of three-dimensional honeycomb-like porous nano-golds

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 296, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2019.126679

关键词

Three-dimensional honeycomb-like porous nano-golds; Dynamic gas bubble template; Extrusion shaping; Electrocatalysis performance; Glucose sensing

资金

  1. National Natural Science Foundation of China [21675050, 21475041, 21775137]
  2. Hunan Lotus Scholars Program
  3. Foundation of the Science & Technology Department of Hunan Province [2016SK2020]

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One-pot electrodeposition of three kinds of three-dimensional honeycomb-like porous nano-golds (3DHPNGs) is potentiostatically conducted on Au electrodes in the aqueous baths containing HAuCl4 and a sufficient-quantity strong acid (3DNPNG(1)), or chemically synthesized fulminating gold precipitate and sufficient NH4+/acid (3DNPNG(2)), or HAuCl4 and sufficient NH4+ (3DNPNG(3)). The dynamic precipitation and the fast electroreduction of fulminating gold in the aqueous baths containing HAuCl4 and sufficient NH4+ are explored. We suggest new extrusion-shaping mechanisms that a sufficiently violent electrogenerated-gas bubbling can mechanically squeeze the soft electroreducible fulminating gold precipitates (dynamically electrogenerated and chemically synthesized) and even the hard Au deposits (directly from the electroreduction of soluble Au compounds) to form an ordered and stabilized dynamic gas bubble template for the final formation of 3DHPNGs. The suggested mechanisms including the more general discussion made on the topic provide new insights into metal electrodeposition by dynamic hydrogen bubble template. A comparison study under similar conditions reveals that the 3DNPNG(3)/Au electrode gives the largest real surface area and the highest electrocatalytic activity for alkaline/neutral oxidation and amperometric sensing of glucose with superior performance, giving a sensitivity of 960 mu A cm(-2) mM(-1) and a limit of detection (LOD) of 0.044 mu M in 1 M aqueous NaOH as well as a sensitivity of 316 mu A cm(-2) mM(-1) and a LOD of 0.20 mu M in 0.1 M phosphate buffer (pH = 7.4).

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