Open AccessMaterials ScienceEngineering

N. Yabuuchi, H. Yoshida, S. Komaba

2012.10.5ELECTROCHEMISTRY

DOI: 10.5796/electrochemistry.80.716

tlooto Summary

Alpha-NaFeO2 shows reversible capacity with 80–100mAhg−1 and nearly flat voltage profile for rechargeable sodium batteries.

Abstract

Single phase, well-crystallized O3-type NaFeO2 (alpha NaFeO2) is prepared by a solid-state method. Electrode performance of O3-type NaFeO2 is examined as positive electrode materials for rechargeable sodium batteries. O3type NaFeO2 can deliver 80–100mAhg−1 of reversible capacity with a nearly flat voltage profile at approximately 3.3V vs. Na metal. The electrode performance is significantly deteriorated by oxidation beyond x > 0.5 in Na1−xFeO2. X-ray diffraction study reveals that loss of electrode reversibility originates from irreversible structural change, possibly accompanied by iron ion migration in layered host structures. The sodium ion insertion into the host structures would be disturbed by the irreversible structural change when charged beyond x > 0.5 in Na1−xFeO2. Acceptable cyclability is, therefore, achieved for O3-type NaFeO2 as the positive electrode materials in the limited composition of x = 0–0.45 in Na1−xFeO2. © The Electrochemical Society of Japan, All rights reserved.

Citation format

YABUUCHI, N.; YOSHIDA, H.; KOMABA, S. Crystal structures and electrode performance of alpha-nafeo2 for rechargeable sodium batteries. ELECTROCHEMISTRY, 2012, 80: 716–719.