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Efficient and durable oxygen reduction and evolution of a hydrothermally synthesized La(Co0.55Mn0.45)(0.99)O3-delta nanorod/graphene hybrid in alkaline media

机译:减少和有效和持久的氧气一个热水地合成的演变过程混合动力在碱性介质

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摘要

The increasing global energy demand and the depletion of fossil fuels have stimulated intense research on fuel cells and batteries. Oxygen electrocatalysis plays essential roles as the electrocatalytic reduction and evolution of di-oxygen are always the performance-limiting factors of these devices relying on oxygen electrochemistry. A novel perovskite with the formula La(Co0.55Mn0.45)(0.99)O3-delta (LCMO) is designed from molecular orbital principles. The hydrothermally synthesized LCMO nanorods have unique structural and chemical properties and possess high intrinsic activities for oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). The synergic covalent coupling between LCMO and NrGO enhances the bifunctional ORR and OER activities of the novel LCMO/NrGO hybrid catalyst. The ORR activity of LCMO/NrGO is comparable to the state-of-the-art Pt/C catalyst and its OER activity is competitive to the state-of-the-art Ir/C catalyst. LCMO/NrGO generally outperforms Pt/C and Ir/C with better bifunctional ORR and OER performance and operating durability. LCMO/NrGO represents a new class of low-cost, efficient and durable electrocatalysts for fuel cells, water electrolysers and batteries.
机译:全球能源需求和增加消耗化石燃料的强烈刺激研究燃料电池和电池。电催化作用,扮演着重要的角色electrocatalytic减少和演化di-oxygen总是限制性能的这些设备的因素依靠氧气电化学。拉(Co0.55Mn0.45)公式(0.99)O3-delta (LCMO)从分子轨道原理而设计的。热水地合成LCMO纳米棒独特的结构和化学性质具有较高的内在活动的氧气还原反应(ORR)和氧进化反应(OER)。LCMO和NrGO之间增强了双官能奥尔和OER LCMO / NrGO活动的小说混合催化剂。与最先进的Pt / C催化剂及其以上活动的具有竞争力最先进的红外/ C催化剂。通常优于Pt / C和红外/ C更好双官能奥尔和OER和性能操作耐久性。类的低成本、高效、耐用electrocatalysts燃料电池、水电解槽和电池。

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