Amorphous Li-Al-based compounds: Novel approach for designing high performance electrode materials for Li-ion batteries


Amorphous Li-Al-based compounds: Novel approach for designing high performance electrode materials for Li-ion batteries

Thoss, F.; Thomas, J.; Oswald, S.; Potzger, K.; Reuther, H.; Ehrenberg, H.; Eckert, J.; Giebeler, L.

Abstract

A new amorphous compound with the atomic composition Al43Li43Y6Ni8 applied as electrode material for Li-ion batteries is investigated. Unlike other amorphous compounds so-far investigated as anode materials it already contains Li as a base element in the uncycled state. The amorphous compound powder is prepared by high energy ball milling of a master alloy. It shows a strongly enhanced specific capacity in contrast to amorphous alloys without Li in the initial state and furthermore to conventional graphite anodes. According to the charge rate (C-rate) the specific capacity is reversible over 20 cycles at minimum in contrast to conventional crystalline intermetallic phases failing by volume changes. The delithiation process occurs quasi-continuously over a voltage range of nearly 4 V, while the lithiation is mainly observed between 0.1 V and 1.5 V. That way, the electrode is applicable for different potential needs. We suggest the application as anode. The electrode stays amorphous during cycling, thus avoiding volume changes. The cycling performance is further enhanced by a significant amount of Fe introduced as wear debris from the milling tools, which acts as a promoting element.

Keywords: high energy ball milling; pre-lithiation; anode; intermetallic phase

Permalink: https://www.hzdr.de/publications/Publ-18406