High Conductivity and Rate Capability of NaNb13O33 Wadsley–Roth Phase as a Fast‐Charging Li‐Ion Anode

Author:

Allen Jan L.1ORCID,Ren Xiaoming1ORCID,Nguyen Chi K.2ORCID,Horn David C.2,Sun H. Hohyun1ORCID,Tran Dat T.1ORCID

Affiliation:

1. Battery Science Branch Energy Sciences Division U.S. DEVCOM Army Research Laboratory 2800 Powder Mill Road Adelphi Maryland 20783 USA

2. Department of Chemistry and Life Science United States Military Academy 753 Cullum Road West Point New York 10996 USA

Abstract

AbstractThe synthesis and electrochemical insertion of lithium into the Wadsley–Roth NaNb13O33 phase is studied. Lithium intercalation to form LixNaNb13O33 reaches a value of up to x~15, between 3.0 and 1.0 V vs. Li+/Li at a slow cycling rate, a capacity of 233 mAh g−1. Within this voltage window, two sharp peaks and one broad peak are observed in the differential capacity plots of lithium intercalation suggesting multiple two‐phase regions. High Li‐ion conductivity and rate capability was demonstrated. The lithium diffusion constant is about an order of magnitude greater than TiNb2O7. The average voltage is about 1.6 V and its high‐rate capability makes NaNb13O33 potentially useful as an anode in a fast‐charge Li‐ion battery application.

Publisher

Wiley

Subject

Electrochemistry,Catalysis

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