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在直接甲醇燃料电池中使用PtCo/还原氧化石墨烯(rGO)阳极纳米催化剂实现高甲醇电氧化

High Methanol Electro-Oxidation Using PtCo/Reduced Graphene Oxide (rGO) Anode Nanocatalysts in Direct Methanol Fuel Cell.

作者信息

Baronia Richa, Goel Jyoti, Singhal Sunil K

机构信息

AcSIR-Academy of Science and Innovative Research, Council of Scientific and Industrial Research-National Physical Laboratory Campus, New Delhi 110012, India.

Council of Scientific and Industrial Research-National Physical Laboratory, Dr. K.S. Krishnan Marg, New Delhi 110012, India.

出版信息

J Nanosci Nanotechnol. 2019 Jul 1;19(7):4315-4322. doi: 10.1166/jnn.2019.16344.

Abstract

The higher methanol utilization efficiency in direct methanol fuel cell (DMFC) is one of the key parameter to show the performance of an anode catalyst. Here in, we have synthesized a highly efficient and stable PtCo anode nanocatalysts (2-4 nm size) supported on reduced graphene oxide (rGO) for the electro-oxidation of methanol in a DMFC. Three different compositions of anode catalysts PtCo (1:7)/rGO, PtCo (1:9)/rGO and PtCo (1:11)/rGO comprising of 20% metal loading by weight of rGO are being investigated for methanol electro-oxidation in acidic medium with different methanol concentration using cyclic voltammetry. The electrochemical response from three different catalysts revealed that the PtCo (1:9)/rGO catalyst has efficiently oxidized 5 M methanol in a half cell configuration. A peak anodic current density of 46.8 mA/cm² and a power density of 136.8 mW/cm² are achieved using PtCo (1:9)/rGO anode catalyst at 100 °C for DMFC with 5 M methanol supply with negligible amount of methanol crossover. About 34% Faradaic efficiency and 22% energy efficiency is attained using PtCo (1:9)/rGO anode catalyst for a DMFC. Further, the 3% methanol oxidation reaction (MOR) efficiency is attained as revealed by evaluating the MOR by-products i.e., formic acid and formaldehyde formation. The results indicate excellent catalytic behavior of PtCo (1:9)/rGO towards MOR and its potential application as anode catalyst in DMFC.

摘要

直接甲醇燃料电池(DMFC)中较高的甲醇利用效率是表征阳极催化剂性能的关键参数之一。在此,我们合成了负载于还原氧化石墨烯(rGO)上的高效稳定的PtCo阳极纳米催化剂(尺寸为2 - 4纳米),用于DMFC中甲醇的电氧化。采用循环伏安法,研究了三种不同组成的阳极催化剂PtCo (1:7)/rGO、PtCo (1:9)/rGO和PtCo (1:11)/rGO(金属负载量为rGO重量的20%)在不同甲醇浓度的酸性介质中对甲醇的电氧化情况。三种不同催化剂的电化学响应表明,PtCo (1:9)/rGO催化剂在半电池配置下能有效氧化5 M的甲醇。对于供应5 M甲醇的DMFC,在100 °C下使用PtCo (1:9)/rGO阳极催化剂可实现46.8 mA/cm²的峰值阳极电流密度和136.8 mW/cm²的功率密度,且甲醇渗透量可忽略不计。使用PtCo (1:9)/rGO阳极催化剂的DMFC可实现约34%的法拉第效率和22%的能量效率。此外,通过评估甲醇氧化反应(MOR)副产物(即甲酸和甲醛的生成)发现,MOR效率达到了3%。结果表明,PtCo (1:9)/rGO对MOR具有优异的催化性能,并且在DMFC中作为阳极催化剂具有潜在应用价值。

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