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Highly Catalytic Electrochemical Oxidation of Carbon Monoxide on Iridium Nanotubes: Amperometric Sensing of Carbon Monoxide

机译:铱纳米管上一氧化碳的高度催化电化学氧化:一氧化碳的安培感测

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摘要

The nanotubular structures of IrO and Ir metal were successfully synthesized without any template. First, IrO nanotubes were prepared by electrospinning and post-calcination, where a fine control of synthetic conditions (e.g., precursor concentration and solvent composition in electrospinning solution, temperature increasing rate for calcination) was required. Then, a further thermal treatment of IrO nanotubes under hydrogen gas atmosphere produced Ir metal nanotubes. The electroactivity of the resultant Ir metal nanotubes was investigated toward carbon monoxide (CO) oxidation using linear sweep voltammetry (LSV) and amperometry. The anodic current response of Ir metal nanotubes was linearly proportional to CO concentration change, with a high sensitivity and a short response time. The amperometric sensitivity of Ir metal nanotubes for CO sensing was greater than a nanofibrous counterpart (i.e., Ir metal nanofibers) and commercial Pt (20 wt% Pt loading on carbon). Density functional theory calculations support stronger CO adsorption on Ir(111) than Pt(111). This study demonstrates that metallic Ir in a nanotubular structure is a good electrode material for the amperometric sensing of CO.
机译:无需任何模板,即可成功合成IrO和Ir金属的纳米管结构。首先,通过电纺丝和后煅烧制备IrO纳米管,其中需要精细控制合成条件(例如,电纺丝溶液中的前体浓度和溶剂组成,煅烧的升温速率)。然后,在氢气气氛下对IrO纳米管的进一步热处理产生了Ir金属纳米管。使用线性扫描伏安法(LSV)和安培法研究了所得Ir金属纳米管对一氧化碳(CO)氧​​化的电活性。 Ir金属纳米管的阳极电流响应与CO浓度变化成线性比例,灵敏度高且响应时间短。 Ir金属纳米管对CO感测的安培灵敏度大于纳米纤维对应物(即Ir金属纳米纤维)和市售Pt(碳上载有20wt%的Pt)。密度泛函理论计算支持Ir(111)上的CO吸附比Pt(111)强。这项研究表明,纳米管状结构中的金属Ir是用于安培感测CO的良好电极材料。

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