ACS Appl Mater Interfaces. 2010 Jan;2(1):11-4. doi: 10.1021/am900757r.
The development of technologies that would lead toward the adoption of a hydrogen economy requires readily available, safe, and environmentally friendly access to hydrogen. This can be achieved using the aluminum-water reaction; however, the protective nature and stability of aluminum oxide is a clear detriment to its application. Here, we demonstrate the spontaneous generation of hydrogen gas from ordinary room-temperature tap water when combined with aluminum-oleic acid core-shell nanoparticles obtained via sonochemistry. The reaction is found to be near-complete (>95% yield hydrogen) with a tunable rate from 6.4x10(-4) to 0.01 g of H2/s/g of Al and to yield an environmentally benign byproduct. The potential of these nanoparticles as a source of hydrogen gas for power generation is demonstrated using a simple fuel cell with an applied load.
发展能够实现氢能经济的技术需要方便、安全且环保地获取氢气。这可以通过铝与水的反应来实现,但氧化铝的保护性质和稳定性显然不利于其应用。在这里,我们展示了通过超声化学法获得的铝-油酸核壳纳米粒子与普通室温自来水结合时,可自发产生氢气。该反应的产氢率接近 100% (>95%),且产氢速率可调,范围为 6.4x10(-4) 至 0.01 g 的 H2/s/g 的 Al,同时生成环境友好的副产物。通过使用带有负载的简单燃料电池,展示了这些纳米粒子作为氢气发电源的潜力。