Department of Applied Physics, Graduate School of Engineering, Osaka University, Suita, Osaka 565-0871, Japan.
Biosens Bioelectron. 2011 Dec 15;30(1):204-10. doi: 10.1016/j.bios.2011.09.012. Epub 2011 Sep 19.
This study focused on developing the synthesis of Au nanoparticle-decorated functionalized multi-walled carbon nanotubes (Au-NPs/f-MWCNTs) for monosaccharide (bio-fuel) oxidation reactions and practical application in air-biofuel cells. We developed a scalable and straightforward method to synthesize Au-NPs/f-MWCNTs which allow us to control the loading and size of the Au-NPs. The Au-NPs/f-MWCNTs exhibited better catalytic activities and stability than the Au sheet and subsequently resulted in a threefold increase in the power density of the air-glucose fuel cell with an exceptionally high open circuit voltage (~1.3 V). The catalytic efficiency was confirmed by high performance liquid chromatography with the superior of the Au-NPs/f-MWCNTs over a bare gold electrode. In addition, the application of this advanced catalyst to other monosaccharide oxidation reactions figured out that the configuration of -OH groups at C(2) and C(3) of the reactants plays an important role in the initial adsorption process, and thus, affects the required activation energy for further oxidation. The different monosaccharides lead to significantly different fuel cell performances in terms of power density, which coherently corresponds to the difference in the configuration of C(2) and C(3). Because two small air-glucose fuel cells using Au-NPs/f-MWCNTs can run a LED lamp, further applications of other monosaccharides as fuel in biofuel cells for equivalent required power devices may be possible.
本研究专注于开发金纳米粒子修饰功能化多壁碳纳米管(Au-NPs/f-MWCNTs)用于单糖(生物燃料)氧化反应及在空气生物燃料电池中的实际应用。我们开发了一种可扩展且简便的方法来合成 Au-NPs/f-MWCNTs,从而能够控制 Au-NPs 的负载量和尺寸。与金片相比,Au-NPs/f-MWCNTs 表现出更好的催化活性和稳定性,进而使空气-葡萄糖燃料电池的功率密度提高了三倍,开路电压异常高(~1.3 V)。通过高效液相色谱法证实了催化效率,Au-NPs/f-MWCNTs 优于裸金电极。此外,将这种先进催化剂应用于其他单糖氧化反应中发现,反应物 C(2)和 C(3)上-OH 基团的构型在初始吸附过程中起着重要作用,从而影响进一步氧化所需的活化能。不同的单糖导致在功率密度方面具有显著不同的燃料电池性能,这与 C(2)和 C(3)的构型差异一致。由于两个使用 Au-NPs/f-MWCNTs 的小型空气-葡萄糖燃料电池可以驱动 LED 灯,因此,其他单糖作为生物燃料电池中用于同等所需功率设备的燃料的进一步应用可能是可行的。