首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Eliminating the need for craftsmanship: Facile and precise determination of oxygen reduction reaction activity by spraying catalyst ink on rotating disk electrode
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Eliminating the need for craftsmanship: Facile and precise determination of oxygen reduction reaction activity by spraying catalyst ink on rotating disk electrode

机译:消除工艺的需要:通过在旋转盘电极上喷涂催化剂墨水,容易和精确测定氧还原反应活性的氧还原反应活性

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摘要

Fabricating uniform catalyst thin films on rotating disk electrodes (RDEs) is crucial for the accurate and reproducible evaluation of the oxygen reduction reaction (ORR) activity of high surface area catalysts via the thin film (TF)-RDE method. For the conventional methods, a catalyst thin film is fabricated by drying one droplet of the catalyst ink on the surface of a glassy carbon (GC) disk electrode under the optimized conditions. However, the optimization of the drying conditions is time-consuming or sometimes impossible depending on the catalyst samples. In this study, we proposed a facile method of fabricating highly-uniform catalyst thin films using a commercial ultrasonic atomizer, which can forcibly deposit the catalyst particles evenly on the GC electrode. Although the catalyst loading is not precisely controlled by the atomizer, it can be determined using the total electrochemical surface area (ECSA) of Pt and a calibration line. By employing the developed method for two different commercial Pt/C catalysts, the ORR activities, which are comparable to the highest values reported in the previous literature, were obtained. Moreover, the developed method was also successfully applied to the ORR activity evaluation of a homemade Pt/NbB2 catalyst, which could not be properly tested by a conventional ink deposition method because of the difficulty of preparing a uniform catalyst thin film. Thus, the developed method eliminates the need for setting a specific film fabrication condition for each catalyst sample and enables the easy and precise ORR activity determination of any kind of high surface area catalyst as long as well-dispersed catalyst inks are available.
机译:在旋转圆盘电极(RDE)上制备均匀的催化剂薄膜对于通过薄膜(TF)-RDE方法准确且可重复地评估高比表面积催化剂的氧还原反应(ORR)活性至关重要。对于传统方法,在优化条件下,通过在玻碳(GC)圆盘电极表面上干燥一滴催化剂油墨来制备催化剂薄膜。然而,干燥条件的优化非常耗时,有时甚至不可能,这取决于催化剂样品。在这项研究中,我们提出了一种使用商用超声雾化器制备高度均匀催化剂薄膜的简便方法,该雾化器可以将催化剂颗粒均匀地沉积在GC电极上。尽管雾化器不能精确控制催化剂的负载量,但可以使用铂的总电化学表面积(ECSA)和校准线来确定。通过对两种不同的商用Pt/C催化剂采用所开发的方法,获得了与先前文献中报道的最高值相当的ORR活性。此外,该方法还成功地应用于国产Pt/NbB2催化剂的ORR活性评估,由于难以制备均匀的催化剂薄膜,传统的墨水沉积法无法正确测试该催化剂。因此,所开发的方法无需为每个催化剂样品设置特定的薄膜制造条件,并且只要存在分散良好的催化剂油墨,就可以轻松、准确地测定任何类型的高比表面积催化剂的ORR活性。

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