论文标题

通过工程杂质控制电催化剂的掺杂

Controlled doping of electrocatalysts through engineering impurities

论文作者

Kim, Se-Ho, Yoo, Su-Hyun, Shin, Sangyong, El-Zoka, Ayman A., Kasian, Olga, Lim, Joohyun, Jeong, Jiwon, Scheu, Christina, Neugebauer, Joerg, Lee, Hyunjoo, Todorova, Mira, Gault, Baptiste

论文摘要

燃料电池从H2和O2中重组水,从而为例如没有直接碳排放的汽车或房屋。在阴离子 - 交换膜燃料电池(AEMFC)中,要达到高功率密度,在高pH值下运行是在阴极上使用大量的贵金属催化剂的替代方法,在该阴极中发生了还原氧还原反应。然而,尽管有希望的催化剂,但氢氧化反应(HOR)的动力学却阻碍了升级。在这里,我们观察到B出乎意料地进入由湿化学合成的PD纳米催化剂,对该B掺杂的控制,并报告其对碱性条件下HOR活性的影响。我们使用B掺杂PD上H-和OH-ADSSARTING的AB-INITIO计算合理化了我们的发现。因此,使用这种“杂质工程”方法,我们根据电化学转换设备的要求设计无PT的催化剂,例如下一代的AEMFC可以满足经济和环境限制,即合理的运营成本和长期稳定,以实现氢经济。

Fuel cells recombine water from H2 and O2 thereby powering e.g. cars or houses with no direct carbon emission. In anion-exchange membrane fuel cells (AEMFCs), to reach high power densities, operating at high pH is an alternative to using large volumes of noble metals catalysts at the cathode, where the oxygen-reduction reaction occurs. However, the sluggish kinetics of the hydrogen-oxidation reaction (HOR) hinders upscaling despite promising catalysts. Here, we observe an unexpected ingress of B into Pd nano-catalysts synthesised by wet-chemistry, gain control over this B-doping, and report on its influence on the HOR activity in alkaline conditions. We rationalize our findings using ab-initio calculations of both H- and OH-adsorption on B-doped Pd. Using this "impurity engineering" approach, we thus design Pt-free catalysts as required in electrochemical energy conversion devices, e.g. next generations of AEMFCs, that satisfy the economic and environmental constraints, i.e. reasonable operating costs and long-term stability, to enable the hydrogen economy.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源