首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Instability of a Noncrystalline NaO2 Film in Na-O-2 Batteries: The Controversial Effect of the RuO2 Catalyst
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Instability of a Noncrystalline NaO2 Film in Na-O-2 Batteries: The Controversial Effect of the RuO2 Catalyst

机译:Na-O-2电池中非晶体NaO2薄膜的不稳定性:Ruo2催化剂的争议作用

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摘要

The unique electrochemical and chemical features of sodium-oxygen (Na-O-2) batteries distinguish them from the lithium- oxygen (Li-O-2) batteries. NaO2 as the main discharge product is unstable in the cell environment and chemically degrades, which triggers side products' formation and charging potential increment. In this study, RuO2 nanoparticles dispersed on carbon nanotubes (CNTs) are used as the catalyst for Na-O-2 batteries to elucidate the effect of the catalyst on these complex electrochemical systems. The RuO2 CNT contributes to the formation of a poorly crystalline and coating-like NaO2 structure during oxygen reduction reaction, which is drastically different from the conventional micron-sized cubic NaO2 crystals deposited on the CNT. Our findings demonstrate a competition between NaO2 and side products' decompositions for RuO2/CNT during oxygen evolution reaction (OER). We believe that this is due to the lower stability of a coating-like NaO2 because of its noncrystalline nature and high electrode/electrolyte contact area. Although RuO2/CNT catalyzes the decomposition of side products at a lower potential (3.66 V) compared to CNT (4.03 V), it cannot actively contribute to the main electrochemical reaction of the cell during OER (NaO2 - Na+ + O-2 + e(-)) because of the fast chemical degradation of the film NaO2 to the side products. Therefore, tuning the morphology and crystallinity of NaO2 by a catalyst is detrimental for the Na-O-2 cell performance and it should be taken into account for the future applications.
机译:钠氧(NA-O-2)电池的独特电化学和化学特征将它们与锂氧(Li-O-2)电池区分开来。 Nao2作为主要放电产品在细胞环境中不稳定,化学降解,触发侧产品的形成和充电潜在增量。在该研究中,将碳纳米管(CNT)分散在碳纳米管(CNT)上的RuO2纳米颗粒用作Na-O-2电池的催化剂,以阐明催化剂对这些复合电化学系统的作用。 RuO2 CNT在氧还原反应过程中促成形成差的结晶和涂层状NaO2结构,其与沉积在CNT上的常规微米尺寸的立方NaO 2晶体急外不同。我们的研究结果表明,Nao2和侧面产品之间的竞争与氧气进化反应期间Ruo2 / CNT的分解(Oer)。我们认为这是由于其非刚性性质和高电极/电解质接触面积的涂层状NaO2的稳定性较低。虽然Ruo2 / CNT催化与CNT(4.03V)相比较低电位(3.66V)的侧产物的分解,但它不能积极导致伊尔(NaO2 - & Na + + O-2)的电池的主要电化学反应。 + e( - ))由于薄膜NaO2的快速化学降解到侧面产品。因此,通过催化剂调整NaO2的形态和结晶度对Na-O-2细胞性能有害,并且应该考虑到未来的应用。

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