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研究发明了“综合利用钼镍共生矿制备钼镍盐”的一种新选冶方法。该方法能将原矿中的元素得到综合回收利用,生产中不污染环境,投入少,效益好。  相似文献   
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采取三种方法合成了镍钴酸锂电极材料Lia Ni0.7Co0.3O2,用电化学实验方法研究了合成方法对材料的电化学性能的影响,材料用XRD表征.结果表明:通过预处理后合成的电极材料具有较好的电化学性能,首次充放电比容量可达到196.5和167.9 mAh·g-1.  相似文献   
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After the significant discovery of the hole-doped nickelate compound Nd0.8Sr0.2NiO2, analyses of the electronic structure, orbital components, Fermi surfaces and band topology could be helpful to understand the mechanism of its superconductivity. Based on first-principle calculations, we find that Ni states contribute the largest Fermi surface. The states form an electron pocket at Γ, while 5dxy states form a relatively bigger electron pocket at A. These Fermi surfaces and symmetry characteristics can be reproduced by our two-band model, which consists of two elementary band representations: B1g@1a ⊕ A1g@1b. We find that there is a band inversion near A, giving rise to a pair of Dirac points along M-A below the Fermi level upon including spin-orbit coupling. Furthermore, we perform density functional theory based Gutzwiller (DFT+Gutzwiller) calculations to treat the strong correlation effect of Ni 3d orbitals. In particular, the bandwidth of has been renormalized largely. After the renormalization of the correlated bands, the Ni 3dxy states and the Dirac points become very close to the Fermi level. Thus, a hole pocket at A could be introduced by hole doping, which may be related to the observed sign change of the Hall coefficient. By introducing an additional Ni 3dxy orbital, the hole-pocket band and the band inversion can be captured in our modified model. Besides, the nontrivial band topology in the ferromagnetic two-layer compound La3Ni2O6 is discussed and the band inversion is associated with Ni and La 5dxy orbitals.  相似文献   
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