Controllable Strongly Electron-Correlated Properties of NdNiO 3 Induced by Large-Area Protonation with Metal–Acid Treatment
作者:Hui Ren, Ai I. Osaka, Azusa N. Hattori, Boyuan Yu, Masaya Nagai, Masaaki Ashida, Bowen Li, Chongwen Zou, Hidekazu Tanaka · 发表于:ACS Applied Electronic Materials · 年份:2022 · DOI:10.1021/acsaelm.2c00473 · 被引用次数:9 · 研究领域:Magnetic and transport properties of perovskites and related materials、Advanced Condensed Matter Physics、Advanced Memory and Neural Computing
Unlike normal hydrogen doping in a H 2 gas atmosphere assisted by precious metal catalysts at high temperatures, the cost-effective hydrogenation of rare-earth nickelate (RNiO 3 ) thin films in acid solution with abundant protons supplies a tunable protonation-induced phase transition via the internal mechanism of electron–proton synergistic co-doping under ambient conditions. Here, we report the first ever large-area hydrogenation of a millimeter-scale NdNiO 3 film by metal–acid treatment, which leads to marked changes in optical and electrical transport properties corresponding to the hydrogen-induced electronic phase transition. We found that reflectance and conductance modulations are governed by the concentration of protons in NNO, which is controlled by the crystal facet orientation, which in turn affects the proton doping speed. The effect of the crystal orientation on the speed of protonation may be due to anisotropic hydrogen diffusion owing to the existence of an energetically favored channel along the [001] direction in the NdNiO 3 film. Our work provides a green route for the development of electronic devices based on nickelates with hydrogenation.