Baronia Richa, Goel Jyoti, Singhal Sunil K
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.
J Nanosci Nanotechnol. 2019 Jul 1;19(7):4315-4322. doi: 10.1166/jnn.2019.16344.
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.
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。