- Main
Topochemical Synthesis and Electronic Structure of High-Crystallinity Infinite-Layer Nickelates on an Orthorhombic Substrate
- Dong, Zhengang;
- Hadjimichael, Marios;
- Mundet, Bernat;
- Choi, Jaewon;
- Tam, Charles C;
- Garcia-Fernandez, Mirian;
- Agrestini, Stefano;
- Domínguez, Claribel;
- Bhatta, Regan;
- Yu, Yue;
- Liang, Yufeng;
- Wu, Zhenping;
- Triscone, Jean-Marc;
- Jia, Chunjing;
- Zhou, Ke-Jin;
- Li, Danfeng
Published Web Location
https://doi.org/10.1021/acs.nanolett.4c06557Abstract
Superconductivity in infinite-layer nickelates has stirred much research interest, to which questions regarding the nature of superconductivity remain elusive. A critical leap forward to address these intricate questions is through the growth of high-crystallinity infinite-layer nickelates, including the "parent" phase. Here, we report the synthesis of a high-quality thin-film nickelate, NdNiO2. This is achieved through the growth of a perovskite precursor phase (NdNiO3) of superior crystallinity on the NdGaO3 substrate by off-axis RF magnetron sputtering and a low-temperature topochemical reduction using NaH. We observe a nonlinear Hall effect at low temperatures in this "non-doped" phase. We further study the electronic properties using advanced X-ray scattering and first-principles calculations. We observe spectroscopic indications of the enhanced two-dimensionality and a reduced hybridization of Nd 5d and Ni 3d orbitals. These findings unlock new pathways for preparing high-quality infinite-layer nickelates and provide new insights into the intrinsic features of these compounds.
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