Magnetic structure and properties of the rechargeable battery insertion compound Na2FePO4F
Maxim Avdeev1, Chris D Ling, Thiam Teck Tan
1Bragg Institute, B87, Australian Nuclear Science and Technology Organization , Locked Bag 2001, Kirrawee DC NSW 2232, Australia.
Abstract:
The magnetic structure and properties of sodium iron fluorophosphate Na2FePO4F (space group Pbcn), a cathode material for rechargeable batteries, were studied using magnetometry and neutron powder diffraction. The material, which can be described as a quasi-layered structure with zigzag Fe-octahedral chains, develops a long-range antiferromagnetic order below ∼3.4 K. The magnetic structure is rationalized as a super-exchange-driven ferromagnetic ordering of chains running along the a-axis, coupled antiferromagnetically by super-super-exchange via phosphate groups along the c-axis, with ordering along the b-axis likely due to the contribution of dipole-dipole interactions.
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