Kim Si-In, Eom Gayoung, Kang Mijeong, Kang Taejoon, Lee Hyoban, Hwang Ahreum, Yang Haesik, Kim Bongsoo
Department of Chemistry, KAIST, Daejeon 305-701, Korea.
Nanotechnology. 2015 Jun 19;26(24):245702. doi: 10.1088/0957-4484/26/24/245702. Epub 2015 May 27.
Bimetallic nanostructures can provide distinct and improved physicochemical properties by the coupling effect of the two metal components, making them promising materials for a variety of applications. Herein, we report composition-selective fabrication of ordered intermetallic Au-Cu nanowires (NWs) by two-step chemical vapor transport method and their application to nano-electrocatalytic glucose detection. Ordered intermetallic Au3Cu and AuCu3 NWs are topotaxially fabricated by supplying Cu-containing chemicals to pre-synthesized single-crystalline Au NW arrays. The composition of fabricated Au-Cu NWs can be selected by changing the concentration of Cu-containing species. Interestingly, Au3Cu NW electrodes show unique electrocatalytic activity for glucose oxidation, allowing us to detect glucose without interference from ascorbic acid. Such interference-free detection of glucose is attributed to the synergistic effect, induced by incorporation of Cu in Au. We anticipate that Au3Cu NWs could show possibility as efficient nano-size electrochemical glucose sensors and the present fabrication method can be employed to fabricate valuable ordered intermetallic nanostructures.
双金属纳米结构可通过两种金属组分的耦合效应提供独特且改善的物理化学性质,使其成为适用于多种应用的有前景的材料。在此,我们报道了通过两步化学气相传输法对有序金属间化合物Au-Cu纳米线(NWs)进行成分选择性制备及其在纳米电催化葡萄糖检测中的应用。通过向预先合成的单晶Au NW阵列供应含Cu化学品,以拓扑化学方式制备有序金属间化合物Au3Cu和AuCu3 NWs。通过改变含Cu物种的浓度,可以选择所制备的Au-Cu NWs的组成。有趣的是,Au3Cu NW电极对葡萄糖氧化表现出独特的电催化活性,使我们能够在不受抗坏血酸干扰的情况下检测葡萄糖。这种对葡萄糖的无干扰检测归因于Au中掺入Cu所诱导的协同效应。我们预计Au3Cu NWs有望成为高效的纳米尺寸电化学葡萄糖传感器,并且目前的制备方法可用于制备有价值的有序金属间化合物纳米结构。