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Oxygen Hydration Mechanism for the Oxygen Reduction Reaction at Pt and Pd Fuel Cell Catalysts

机译:Pt和Pd燃料电池催化剂上氧还原反应的氧水化机理

摘要

We report the reaction pathways and barriers for the oxygen reduction reaction (ORR) on platinum, both for gas phase and in solution, based on quantum mechanics calculations (PBE-DFT) on semi-infinite slabs. We find a new mechanism in solution: O_2 → 2O_(ad) (E_(act) = 0.00 eV), O_(ad) + H_2O_(ad) → 2OH_(ad) (E_(act) = 0.50 eV), OH_(ad) + H_(ad) → H_2O_(ad) (E_(act) = 0.24 eV), in which OH_(ad) is formed by the hydration of surface O_(ad). For the gas phase (hydrophilic phase of Nafion), we find that the favored step for activation of the O_2 is H_(ad) + O_(2ad) → HOO_(ad) (E_(act) = 0.30 eV) → HO_(ad) + O_(ad) (E_(act) = 0.12 eV) followed by O_(ad) + H_2O_(ad) → 2OH_(ad) (E_(act) = 0.23 eV), OH_(ad) + H_(ad) → H_2O_(ad) (E_(act) = 0.14 eV). This suggests that to improve the efficiency of ORR catalysts, we should focus on decreasing the barrier for Oad hydration while providing hydrophobic conditions for the OH and H_2O formation steps.
机译:我们基于半无限平板上的量子力学计算(PBE-DFT),报告了气相和溶液中铂上的氧还原反应(ORR)的反应途径和障碍。我们在解决方案中找到了一种新的机制:O_2→2O_(ad)(E_(act)= 0.00 eV),O_(ad)+ H_2O_(ad)→2OH_(ad)(E_(act)= 0.50 eV),OH_( ad)+ H_(ad)→H_2O_(ad)(E_(act)= 0.24 eV),其中OH_(ad)通过表面O_(ad)的水合形成。对于气相(Nafion的亲水相),我们发现激活O_2的有利步骤是H_(ad)+ O_(2ad)→HOO_(ad)(E_(act)= 0.30 eV)→HO_(ad )+ O_(ad)(E_(act)= 0.12 eV),然后是O_(ad)+ H_2O_(ad)→2OH_(ad)(E_(act)= 0.23 eV),OH_(ad)+ H_(ad) →H_2O_(ad)(E_(act)= 0.14 eV)。这表明,要提高ORR催化剂的效率,我们应集中精力降低Oad水合的障碍,同时为OH和H_2O的形成步骤提供疏水条件。

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