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首页> 外文期刊>Nanoscale >Electrochemical stability of (La,Sr)CoO3-delta in (La,Sr)CoO3-delta/(Ce, Gd)O2-delta heterostructures
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Electrochemical stability of (La,Sr)CoO3-delta in (La,Sr)CoO3-delta/(Ce, Gd)O2-delta heterostructures

机译:电化学(洛杉矶,Sr) CoO3-delta的稳定异质结构

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摘要

A modulated coherent (La,Sr)CoO3-/(Ce,Gd)O2- heterostructure is characterized for the first time for its electronic and chemical properties. 2D-multilayer architectures are deposited on NdGaO3 (110) single crystal substrate by pulsed laser deposition, resulting in epitaxial structures with in-plane lattice rotation that, via the metal oxides' interfaces, induces mutual structural rearrangements. Our results show that (La,Sr)CoO3-d thin films of 10-100 nm are chemically unstable when exposed to air at 600 degrees C during electrical cyclic stress-tests. Conversely, improved stability is achieved confining LSC in the nanometric heterostructure. Remarkably, the chemical stabilization occurs without compromising substantially the electrical properties of the LSC component: the heterostructures show unexpected electrical behaviour with dominant electronic contributions, fast conductivity and mixed ionic-electronic properties, depending on the number of interfaces and the nano-scaled layers.
机译:调制相干(La Sr) CoO3 - / (Ce、Gd) O2 -异质结构特点是第一它的电子和化学性质。2 d-multilayer架构上沉积通过脉冲NdGaO3(110)单晶衬底激光沉积,导致外延结构与平面晶格转动,通过金属氧化物的接口,导致相互的结构重组。(洛杉矶,Sr) CoO3-d薄膜10 - 100海里化学性质不稳定,当暴露在空气中,享年600岁度在电循环压力测试。相反,提高稳定性围LSC nanometric异质结构。值得注意的是,化学稳定在不影响电LSC组件的属性:异质结构表现出意想不到的电行为与占主导地位的电子的贡献,电导率和混合ionic-electronic快属性,这取决于数量的接口和纳米层。

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