1. High-performing Sn-Co nanowire electrodes as anodes for lithium-ion batteries
- Author
-
Carmelo Sunseri, Libero Damen, Catia Arbizzani, Martina Guidotti, Salvatore Piazza, Rosalinda Inguanta, Germano Ferrara, Mariachiara Lazzari, Francesco Gioacchino Vergottini, Marina Mastragostino, Ferrara, G, Arbizzani, C, Damen, L, Guidotti, M, Lazzari, M, Vergottini, F, Inguanta, R, Piazza, S, Sunseri, C, Mastragostino, M, G. Ferrara, C. Arbizzani, L. Damen, M. Guidotti, M. Lazzari, F. G. Vergottini, R. Inguanta, S. Piazza, C. Sunseri, and M. Mastragostino
- Subjects
Battery (electricity) ,Materials science ,Inorganic chemistry ,Nanowire ,Energy Engineering and Power Technology ,chemistry.chemical_element ,Li-ion batteries ,law.invention ,TEMPLATE SYNTHESIS ,law ,SN-BASED ANODE ,Electrical and Electronic Engineering ,Physical and Theoretical Chemistry ,LITHIUM-ION BATTERIES ,Tin-cobalt alloy ,Renewable Energy, Sustainability and the Environment ,SN-CO ELECTRODES ,Vinylene carbonate additive ,Cathode ,Anode ,Settore ING-IND/23 - Chimica Fisica Applicata ,chemistry ,Chemical engineering ,Tin ,Electrode ,Lithium ,Faraday efficiency - Abstract
The preparation of Sn 2 Co 3 nanowire arrays (NWs) electrogrown inside the channels of polycarbonate membranes and their characterization as anodes for Li-ion batteries both in half-cell vs. Li and in battery configuration are reported. The Sn 2 Co 3 NW electrodes tested by deep galvanostatic charge/discharge cycles in ethylene carbonate-dimethylcarbonate (1:1) – LiPF 6 1 M displayed 80% capacity retention after 200 cycles at C/2 and 30 °C, and a high charge and discharge rate capability at C-rate from C/3 (0.33 A/g) to 10C (10 A/g) at 30° and 10 °C. Electrodes with the highest alloy loading delivered up to 0.6 mAh cm −2 at C/2. The performance of these electrodes in battery configuration with LiFePO 4 as cathode is also reported, as well as the effect of the vinylene carbonate additive on the charge/discharge coulombic efficiency of the Sn 2 Co 3 NWs.
- Published
- 2012