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Protonation-Induced Colossal Chemical Expansion and Property Tuning in NdNiO3 Revealed by Proton Concentration Gradient Thin Films

机译:质子浓度梯度薄膜揭示了质子化诱导的NdNiO3的巨大化学膨胀和性质调控

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摘要

Protonation can be used to tune diverse physical and chemical properties of functional oxides. Although protonation of nickelate perovskites has been reported, details on the crystal structure of the protonated phase and a quantitative understanding of the effect of protons on physical properties are still lacking. Therefore, in this work, we select NdNiO3 (NNO) as a model system to understand the protonation process from pristine NNO to protonated HxNdNiO(3) (H-NNO). We used a reliable electrochemical method with well-defined reference electrode to trigger the protonation-induced phase transition. We found that the protonated H-NNO phase showed a colossal similar to 13 lattice expansion caused by a large tilt of NiO6 octahedra and displacement of Nd cations. Importantly, we further designed a novel device configuration to induce a gradient of proton concentration into a single NNO thin film to establish a quantitative correlation between the proton concentration and the lattice constant and transport property of H-NNO.
机译:质子化可用于调节功能氧化物的各种物理和化学性质。尽管已经报道了镍酸盐钙钛矿的质子化,但仍然缺乏关于质子化相晶体结构的细节和对质子对物理性质影响的定量理解。因此,在这项工作中,我们选择NdNiO3(NNO)作为模型系统来了解从原始NNO到质子化HxNdNiO(3)(H-NNO)的质子化过程。我们使用一种可靠的电化学方法和明确定义的参比电极来触发质子化诱导的相变。我们发现,由于NiO6八面体的大倾斜和Nd阳离子的位移,质子化的H-NNO相显示出类似于13%晶格膨胀的巨大膨胀。重要的是,我们进一步设计了一种新颖的器件配置,将质子浓度梯度诱导到单个 NNO 薄膜中,以建立质子浓度与 H-NNO 的晶格常数和输运特性之间的定量相关性。

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