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Mesoporous Co3O4 Nanoflakes as an Efficient and Non-Precious Cathode Catalyst for Oxygen Reduction Reaction in Air-Cathode Microbial Fuel Cells

机译:介孔Co3O4纳米薄片是一种高效且非贵重的阴极催化剂,用于空气阴极微生物燃料电池中的氧还原反应

摘要

Cobalt oxide is well known for its excellent oxygen reduction reaction (ORR) activity, however, its ORR activity can be further improved by synthesizing its porous architecture. Therefore, mesoporous Co 3 O 4 nanoflakes were prepared by a two-step hydrothermal method and were employed as the cathode cata- lyst in a double-chamber microbial fuel cell (MFC) to explore its ORR activity for electricity generation. The electrochemical tests suggested that addition of Co 3 O 4 nanoflakes enhanced the electrocatalytic ac- tivity of the cathode significantly. Besides, the cathode with a higher concentration of Co3O4 nanoflakes (COF-2) showed faster ORR kinetics as compared to the bare cathode. Evidently, COF-2 achieved an ex- change current density of 4.18 mA/cm 2, which was 3.2 times higher as compared to the bare cathode. Consequently, this improved ORR activity increased the power output in MFC. COF-2 obtained a maxi- mum power density of 347 ±7 mW/m 2, which was approximately 8 times higher than the bare cathode. The enhanced ORR activity and improved electric output in the MFC can be attributed to the mesoporous nature of Co 3 O 4 nanoflakes that exposed a higher number of ORR active sites at the cathode surface. Overall, mesoporous Co 3 O 4 nanoflakes proved to be highly efficient and ca. 30 times cheaper than plat- inum, therefore, can be preferred in large-scale MFC applications over other expensive cathode catalysts.
机译:氧化钴以其优异的氧还原反应(ORR)活性而闻名,但是,可以通过合成其多孔结构来进一步提高其ORR活性。因此,通过两步水热法制备了介孔的Co 3 O 4纳米薄片,并将其用作双室微生物燃料电池(MFC)的阴极催化剂,以探索其ORR发电活性。电化学测试表明,添加Co 3 O 4纳米薄片显着增强了阴极的电催化活性。此外,与裸露的阴极相比,具有较高浓度的Co3O4纳米薄片(COF-2)的阴极表现出更快的ORR动力学。显然,COF-2的交换电流密度为4.18 mA / cm 2,是裸阴极的3.2倍。因此,这种改进的ORR活动增加了MFC中的功率输出。 COF-2的最大功率密度为347±7 mW / m 2,约为裸阴极的8倍。 MFC中增强的ORR活性和改善的电输出可归因于Co 3 O 4纳米薄片的介孔性质,该薄片在阴极表面暴露出更多的ORR活性位。总体而言,中孔Co 3 O 4纳米薄片被证明是高效的,并且大约可以。因此,在大型MFC应用中,其价格比铂便宜30倍,而不是其他昂贵的阴极催化剂。

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