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具有双催化剂层的铂碳电极质子交换膜燃料电池中的三相边界与功率密度增强

Triple phase boundary and power density enhancement in PEMFCs of a Pt/C electrode with double catalyst layers.

作者信息

Dao Dung Van, Adilbish Ganpurev, Le Thanh Duc, Lee In-Hwan, Yu Yeon-Tae

机构信息

Division of Advanced Materials Engineering, Research Center for Advanced Materials Development, Chonbuk National University Jeonju 54896 South Korea

Department of Chemistry, Danang University of Science and Education Danang-550000 Vietnam.

出版信息

RSC Adv. 2019 May 20;9(27):15635-15641. doi: 10.1039/c9ra01741k. eCollection 2019 May 14.

Abstract

Exploring efficient approaches to design electrodes for proton exchange membrane fuel cells (PEMFCs) is of great advantage to overcome the current limitations of the standard platinum supported carbon (Pt/C) catalyst. Herein, a Pt/C electrode consisting of double catalyst layers (DCL) with low Pt loading of around 0.130 mg cm is prepared using spray and electrophoresis (EPD) methods. The DCL electrode demonstrated a higher electrochemical surface area (ECSA-52.5 m g ) and smaller internal resistance (133 Ω) as compared to single catalyst layer (SCL) sprayed (37.1 m g and 184 Ω) or EPD (42.4 m g and 170 Ω) electrodes. In addition, the corresponding DCL membrane electrode assembly (MEA), which consists of a Pt/C DCL electrode at the anode side and a Pt/C sprayed electrode at the cathode side, also showed improved PEMFC performance as compared to others. Specifically, the DCL MEA generated the highest power density of 4.9 W mg , whereas, the SCL MEAs only produced 3.1 and 3.8 W mg , respectively. The superior utilization of the Pt catalysts into the DCL MEA can originate from the enrichment of the triple phase boundary (TPB) presented on the Pt/C DCL electrode, which can strongly promote the adsorbed hydrogen intermediates' removal from the anode side, thus improving the overall PEMFC performance.

摘要

探索用于质子交换膜燃料电池(PEMFC)的电极设计有效方法,对于克服标准铂负载碳(Pt/C)催化剂当前的局限性具有极大优势。在此,使用喷雾和电泳(EPD)方法制备了一种由双催化剂层(DCL)组成的Pt/C电极,其Pt负载量低至约0.130 mg/cm²。与单催化剂层(SCL)喷雾电极(37.1 m²/g和184 Ω)或EPD电极(42.4 m²/g和170 Ω)相比,DCL电极表现出更高的电化学表面积(ECSA - 52.5 m²/g)和更小的内阻(133 Ω)。此外,相应的DCL膜电极组件(MEA),其阳极侧为Pt/C DCL电极,阴极侧为Pt/C喷雾电极,与其他组件相比也表现出更好的PEMFC性能。具体而言,DCL MEA产生的最高功率密度为4.9 W/mg,而SCL MEA分别仅产生3.1和3.8 W/mg。Pt催化剂在DCL MEA中的优异利用率可源于Pt/C DCL电极上三相边界(TPB)的富集,这可有力促进阳极侧吸附氢中间体的去除,从而提高PEMFC的整体性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3924/9064328/8f3ee4544d72/c9ra01741k-f1.jpg

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