Guo H, Li Z W, Zhao L, Hu Z, Chang C F, Kuo C-Y, Schmidt W, Piovano A, Pi T W, Sobolev O, Khomskii D I, Tjeng L H, Komarek A C
Max-Planck-Institute for Chemical Physics of Solids, Nöthnitzer Street 40, 01187, Dresden, Germany.
Forschungszentrum Jülich GmbH, Jülich Centre for Neutron Science at ILL, CS 20156, 71 avenue de Martyrs, 38042, Grenoble, France.
Nat Commun. 2018 Jan 3;9(1):43. doi: 10.1038/s41467-017-02524-x.
The material class of rare earth nickelates with high Ni oxidation state is generating continued interest due to the occurrence of a metal-insulator transition with charge order and the appearance of non-collinear magnetic phases within this insulating regime. The recent theoretical prediction for superconductivity in LaNiO thin films has also triggered intensive research efforts. LaNiO seems to be the only rare earth nickelate that stays metallic and paramagnetic down to lowest temperatures. So far, centimeter-sized impurity-free single crystal growth has not been reported for the rare earth nickelates material class since elevated oxygen pressures are required for their synthesis. Here, we report on the successful growth of centimeter-sized LaNiO single crystals by the floating zone technique at oxygen pressures of up to 150 bar. Our crystals are essentially free from Ni impurities and exhibit metallic properties together with an unexpected but clear antiferromagnetic transition.
具有高镍氧化态的稀土镍酸盐材料类别,因其出现具有电荷序的金属-绝缘体转变以及在该绝缘区域内出现非共线磁相而持续引发关注。近期关于LaNiO薄膜中超导电性的理论预测也引发了密集的研究工作。LaNiO似乎是唯一一种在极低温度下仍保持金属性和顺磁性的稀土镍酸盐。到目前为止,由于稀土镍酸盐材料的合成需要较高的氧气压力,尚未有关于厘米尺寸无杂质单晶生长的报道。在此,我们报告通过浮区法在高达150巴的氧气压力下成功生长出厘米尺寸的LaNiO单晶。我们的晶体基本不含镍杂质,并展现出金属特性以及一个意外但清晰的反铁磁转变。