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Atomically deviated Pd-Te nanoplates boost methanol-tolerant fuel cells

机译:原子偏离的PD-TE纳米间载体可以增强甲醇耐受燃料电池

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The methanol crossover effect in direct methanol fuel cells (DMFCs) can severely reduce cathodic oxygen reduction reaction (ORR) performance and fuel efficiency. As a result, developing efficient catalysts with simultaneously high ORR activity and excellent antipoisoning methanol capability remains challenging. Here, we report a class of Pd-Te hexagonal nanoplates (HPs) with a Pdsub20/subTesub7/sub phase that simultaneously overcome the activity and methanol-tolerant issues in alkaline DMFC. Because of the specific arrangement of Pd atoms deviated from typical hexagonal close-packing, Pd-Te HPs/C displays extraordinary methanol tolerance with high ORR performance compared with commercial Pt/C. DFT calculations reveal that the high performance of Pd-Te HPs can be attributed to the breakthrough of the linear relationship between OOH* and OH* adsorption, which leaves sufficient room to improve the ORR activity but suppresses the methanol oxidation reaction. The concurrent high ORR activity and excellent methanol tolerance endow Pd-Te HPs as practical electrocatalysts for DMFC and beyond.
机译:直接甲醇燃料电池(DMFC)中的甲醇交叉效果可以严重降低阴极氧还原反应(ORR)性能和燃料效率。结果,显影具有同时高ORR活性和优异的甲醇能力的高效催化剂仍然具有挑战性。在此,我们报告了一类PD-TE六方纳米板(HPS),其Pd 20 Te 7 相同时克服碱性DMFC中的活性和甲醇耐受性问题。由于PD原子的特定布置偏离典型的六方封装,PD-TE HPS / C与商业PT / C相比,展示了具有高ORR性能的非凡的甲醇耐受性。 DFT计算表明,PD-TE HPS的高性能可归因于OOH *和OH *吸附之间的线性关系的突破,其留下足够的空间来改善ORR活性但抑制甲醇氧化反应。同时性高ORR活性和优异的甲醇耐受赋予PD-TE HPS作为DMFC及更大的实用电催化剂。

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