Potential of 3D Hierarchical Porous TiO(2)-Graphene Aerogel (TiO(2)-GA) as Electrocatalyst Support for Direct Methanol Fuel Cells.

阅读:4
作者:Osman Siti Hasanah, Kamarudin Siti Kartom, Basri Sahriah, Karim Nabila A
Fuel cells have already demonstrated their potential for green energy generation. However, the low reaction performance becomes an obstacle in terms of large-scale commercial manufacturing. Accordingly, this work focuses on a new unique fabrication of three-dimensional pore hierarchy TiO(2)-graphene aerogel (TiO(2)-GA) supporting PtRu catalyst for anodic catalyst direct methanol fuel cell, which is facile, ecologically benign, and economical. In this work, a hydrothermal technique was used, followed by a freeze-drying technique and a microwave-assisted ethylene reduction technique. The structural properties of the studied materials were confirmed by UV/visible spectroscopy, XRD, Raman spectrum, FESEM TEM, and XPS. Based on existing structural advantages, the performance of PtRu/TiO(2)-GA has been investigated on DMFC anode catalysts. Furthermore, electrocatalytic stability performance with the same loading (~20%) was compared to commercial PtRu/C. Experimental outcomes show that the TiO(2)-GA support offered a significantly high surface area value of 68.44 m(2)g(-1), mass activity/specific activity (608.17 mAmg(-1)/0.45 mA/cm(2)(PtRu)) that is higher than commercial PtRu/C (79.11 mAmg(-1)/0.19 mA/cm(2)(PtRu)). In passive DMFC mode, PtRu/TiO(2)-GA showed a maximum power density of 3.1 mW cm(-2), which is 2.6 times higher than that of the PtRu/C commercial electrocatalyst. This suggests that PtRu/TiO(2)-GA has a promising possibility for methanol oxidation and may be used as an anodic element in DMFC.

特别声明

1、本文转载旨在传播信息,不代表本网站观点,亦不对其内容的真实性承担责任。

2、其他媒体、网站或个人若从本网站转载使用,必须保留本网站注明的“来源”,并自行承担包括版权在内的相关法律责任。

3、如作者不希望本文被转载,或需洽谈转载稿费等事宜,请及时与本网站联系。

4、此外,如需投稿,也可通过邮箱info@biocloudy.com与我们取得联系。