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Hexagonal‐Shaped Tin Glycolate Particles: A Preliminary Study of Their Suitability as Li‐Ion Insertion Electrodes
Authors:See‐How Ng Dr.  Sau‐Yen Chew  Dayse I. dos Santos Prof. Dr.  Jun Chen Dr.  Jia‐Zhao Wang Dr.  Shi‐Xue Dou Prof.  Hua‐Kun Liu Prof.
Affiliation:1. Institute for Superconducting & Electronic Materials and ARC Centre of Excellence for Electromaterials Science, University of Wollongong, NSW 2522, Australia, Fax: (+41)?56 310 4415;2. Present address: Electrochemistry Laboratory, Paul Scherrer Institut, CH‐5232 Villigen PSI, Aargau, Switzerland;3. UNESP, S?o Paulo State University, CP 473 Bauru, S?o Paulo,, Brazil;4. Intelligent Polymer Research Institute and ARC Centre of Excellence for Electromaterials Science, University of Wollongong, NSW 2522, Australia
Abstract:Tin glycolate particles were prepared by a simple, one‐step, polyol‐mediated synthesis in air in which tin oxalate precursor was added to ethylene glycol and heated at reflux. Hexagonal‐shaped, micron‐sized tin glycolate particles were formed when the solution had cooled. A series of tin oxides was produced by calcination of the synthesized tin glycolate at 600–800 °C. It was revealed that the micron‐sized, hexagonal‐shaped tin glycolate now consisted of nanosized tin‐based particles (80–120 nm), encapsulated within a tin glycolate shell. XRD, TGA, and FT‐IR measurements were conducted to account for the three‐dimensional growth of the tin glycolate particles. When applied as an anode material for Li‐ion batteries, the synthesized tin glycolate particles showed good electrochemical reactivity in Li‐ion insertion/deinsertion, retaining a specific capacity of 416 mAh g?1 beyond 50 cycles. This performance was significantly better than those of all the other tin oxides nanoparticles (<160 mAh g?1) obtained after heat treatment in air. We strongly believe that the buffering of the volume expansion by the glycolate upon Li–Sn alloying is the main factor for the improved cycling of the electrode.
Keywords:electrochemistry  lithium  nanoparticles  tin glycolate
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