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Self-Supporting AuCu@Cu Elongated Pentagonal Bipyramids Toward Neutral Glucose Sensing

机译:自支撑AuCu @ Cu延长的五角双锥向中性葡萄糖感测。

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Controlling the electronic structure of a catalyst has become an important approach to tune and optimize its antipoisoning ability and catalytic efficiency for a chemical reaction. Using d-mannitol as a structure-directing agent to induce size transformation and twinned defects in copper particles, penta-twinned Cu elongated pentagonal bipyramids as supports have been synthesized, and HAuCl4 is reduced in situ to form an AuCu alloy on the surface of Cu, generating a self-supporting AuCu@Cu core-shell structure for application as a glucose sensor in a neutral medium. The AuCu@Cu elongated pentagonal bipyramids with 0.42 at% Au show activities comparable with the Au and Pt catalyst but are more tolerant toward Cl- than Au and more tolerant toward H3-xPO4x- than Cu. The mass activity of AuCu@Cu reaches 0.10 A mg(-1) of Au at 0.6 V versus Ag/AgCl (3 m KCl) in a pH 8.0 buffer. The self-supporting AuCu@Cu elongated pentagonal bipyramids are promising catalysts for glucose sensing in a neutral medium. This work offers an effective way to design antitoxic and durable catalysts with ultralow content of noble metal for glucose sensing.
机译:控制催化剂的电子结构已成为调节和优化其对化学反应的抗毒能力和催化效率的重要方法。使用d-甘露醇作为结构导向剂来诱导尺寸转变和铜颗粒中的孪晶缺陷,已合成了五股孪晶的Cu细长的五角双锥体作为载体,HAuCl4原位还原以在Cu表面形成AuCu合金生成自支撑的AuCu @ Cu核壳结构,用作中性介质中的葡萄糖传感器。具有0.42 at%Au的AuCu @ Cu细长五角双锥体显示出与Au和Pt催化剂相当的活性,但对Cl-的耐受性比对Au的耐受性高,对H3-xPO4x-的耐受性比对Cu的耐受性更高。与pH 8.0的缓冲液中的Ag / AgCl(3 m KCl)相比,AuCu @ Cu的质量活度在0.6 V时达到0.10 A mg(-1)的Au。自支撑的AuCu @ Cu细长的五角形双锥体是有希望的催化剂,用于在中性介质中进行葡萄糖感测。这项工作提供了一种有效的方法来设计具有超低含量贵金属的抗毒耐用催化剂,用于葡萄糖传感。

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