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A rationally designed Fe-tetrapyridophenazine complex: a promising precursor to a single-atom Fe catalyst for an efficient oxygen reduction reaction in high-power Zn-air cells

机译:一个合理设计Fe-tetrapyridophenazine单原子复杂:一个有前途的前兆菲一个高效的氧还原催化剂在大功率Zn-air细胞反应

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摘要

The development of low-cost and highly efficient single-atom oxygen reduction catalysts to replace platinum for fuel cells and metal-air cells is highly desirable but remains challenging. Herein, we report the fabrication of isolated single-atom Fe anchored on porous nitrogen-doped carbon from the pyrolysis of a well-designed solely Fe-tetrapyridophenazine coordination complex. The N-rich bridging ligand, tetrapyridophenazine (tpphz) is first employed as a spatial isolation agent of Fe that suppresses its aggregation during high temperature pyrolysis, resulting in highly reactive and stable single-atom Fe ORR catalysts. The catalyst shows remarkable ORR activity with a half-wave potential of 0.863 V versus the reversible hydrogen electrode (RHE) (21 mV more positive than that of commercial 20 wt Pt/C) and excellent durability in 0.1 M KOH. Whereas in acidic media, the Fe single atoms also demonstrate ORR activity comparable to and stability much higher than those of Pt/C. Notably, Zn-air cells made using the as-prepared catalyst as the cathode provide a high open circuit voltage (1.53 V) and gravimetric energy density (947 W h kg(-1)), which are higher than commercial Pt/C based Zn-air cells (1.50 V and 828 W h kg(-1)). This work will open a new avenue to design single-atom catalysts for clean renewable energy storage and conversion devices.
机译:低成本、高效的发展单原子氧还原的催化剂来取代铂燃料电池和金属气质细胞非常可取的但仍具有挑战性。我们报告的孤立的单原子铁固定在多孔nitrogen-doped碳一个设计良好的完全的热解Fe-tetrapyridophenazine协调复杂。tetrapyridophenazine N-rich桥接配体(tpphz)是首次采用空间隔离剂的铁抑制聚合在高温热解,导致单原子Fe奥尔高活性和稳定催化剂。活动的半波电位0.863 V对可逆氢电极(流值)(21 20 mV比商业更积极wt % Pt / C)在0.1 KOH和良好的耐久性。而在酸性介质,Fe单个原子演示或者活动与和稳定性远远高于Pt / C。值得注意的是,Zn-air电池使用做好准备作为阴极催化剂提供了一个高开电路电压(1.53 V)和重量能量密度(947 W h公斤(1)),高于基于商业Pt / C (1.50 V和Zn-air细胞828 W h公斤(1))。单原子的催化剂设计干净可再生能源存储和转换设备。

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