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Evaluation of oxygen reduction activity of non-ideal Pt based catalyst thin films

机译:非理想PT基催化剂薄膜氧还原活性的评价

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It is demonstrated that, using thin film electrochemical rotating disc electrode (TF-RDE), oxygen reduction reaction (ORR) activity can be reliably evaluated even from non-ideal (non-uniform) thin platinum-based high-surface area catalyst films. Namely, the classical evaluation (kinetic current density at fixed potential of 0.9 V vs. RHE) is only possible if the catalyst film is close to ideal (uniform and of appropriate thickness), which is sometimes difficult or even impossible to obtain. We propose an alternative way of activity evaluation, which is based on determination of potential at the fixed kinetic current density of 0.1 mAcm~(-2)_(Pt). Performing a case study on ideal and purposely flawed (non-ideal) PtCu/C catalyst films we prove the reliability of the proposed method and a systematically lower error compared to the the conventional fixed-voltage method. We show that Pt-alloy nanoparticles ORR activities can vary from 0.2 to as high as 6.4 mAcm~(-2) by varying the amount of less nobel metal content and by increasing the amount of ordered crystalline PtX_3 phase. In addition, we provide a direct correlation between the two activities.
机译:结果证明,使用薄膜电化学旋转盘电极(TF-RDE),即使来自非理想(非均匀)薄铂的高表面催化剂薄膜,也可以可靠地评估氧还原反应(ORR)活性。即,如果催化剂薄膜接近理想(均匀厚度),则似乎仅成为常规评估(固定电位为0.9V与Rhe的动力电流密度),这有时难以甚至不可能获得。我们提出了一种替代的活性评价方式,其基于固定动力学电流密度为0.1mAcm〜(-2)_(Pt)的潜力的测定。表演案例研究理想和无目的(非理想)PTCU / C催化剂薄膜我们证明了与传统的固定电压方法相比的所提出的方法的可靠性和系统更低的误差。我们表明,通过改变诺贝尔金属含量的量和增加有序的结晶PTX_3相的量,Pt-合金纳米颗粒Orr活性可以从0.2到高达6.4 macm〜(-2)。此外,我们提供两项活动之间的直接相关性。

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