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首页> 外文期刊>Nano: brief reports and reviews >Cobalt/Chromium Nanoparticles-Incorporated Carbon Nanofibers as Effective Nonprecious Catalyst for Methanol Electrooxidation in Alkaline Medium
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Cobalt/Chromium Nanoparticles-Incorporated Carbon Nanofibers as Effective Nonprecious Catalyst for Methanol Electrooxidation in Alkaline Medium

机译:钴/铬纳米粒子结合的碳纳米纤维作为碱性介质中甲醇电氧化的有效非贵金属催化剂

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摘要

Cobalt-Chrome nanoparticles-incorporated carbon nanofibers (CNFs) are proposed as an effective nonprecious electrocatalyst for methanol oxidation in the alkaline media. The introduced nanofibers were prepared by simple technique, electrospinning. Carbonization of as-spun mat composed of chromium acetate, cobalt acetate and poly(vinyl alcohol) (PVA) at high temperature (900 degrees C) leads to production of the introduced nanofibers. The physicochemical characteristics were investigated by X-ray diffractometer (XRD), scanning electron microscope (SEM), field emission scanning electron microscope (FESEM), transmission electron microscope (TEM) equipped with EDX and TEM mapping. The exploited analyses confirmed that the final product is in the form of CNFs decorated by Co/Cr nanoparticles. Based on the results obtained from the cyclic voltammetry (CV) measurements, the proposed Co/Cr-incorporated CNFs possess high electrocatalytic activity toward methanol electrooxidation as a clear peak of methanol oxidation appeared with corresponding current density of 56 mA/cm(2). Moreover, the current density increased by increasing methanol concentration up to 4.0 M. Overall, the proposed nanofibers open new avenue for platinum-free and stable nanostructural catalysts for fuel cell technology.
机译:结合钴-铬纳米颗粒的碳纳米纤维(CNFs)被提出作为一种有效的非贵金属电催化剂,用于碱性介质中甲醇的氧化。引入的纳米纤维是通过简单的技术静电纺丝制备的。由醋酸铬,醋酸钴和聚乙烯醇(PVA)组成的初生毡在高温(900摄氏度)下碳化,导致引入的纳米纤维的生产。通过配备EDX和TEM标测的X射线衍射仪(XRD),扫描电子显微镜(SEM),场发射扫描电子显微镜(FESEM),透射电子显微镜(TEM)研究了理化特性。利用的分析证实了最终产品是由Co / Cr纳米粒子修饰的CNF形式。根据从循环伏安法(CV)测量获得的结果,提议的掺有Co / Cr的CNF对甲醇电氧化具有高电催化活性,因为出现了明显的甲醇氧化峰,相应的电流密度为56 mA / cm(2)。此外,电流密度通过将甲醇浓度增加到4.0 M而增加。总体而言,拟议的纳米纤维为燃料电池技术的无铂和稳定的纳米结构催化剂开辟了新途径。

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