...
首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Foam-like, microstructural SnO2-carbon composite thin films synthesized via a polyol-assisted thermal decomposition method
【24h】

Foam-like, microstructural SnO2-carbon composite thin films synthesized via a polyol-assisted thermal decomposition method

机译:通过多元醇辅助热分解法合成的泡沫状微结构SnO2-碳复合薄膜

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Foam-like, microstructural SnO2-carbon composite thin films were synthesized by refluxing SnCl(2 center dot)2H(2)O in ethylene glycol (EG) at 195 degrees C for 4 h under vigorous stirring in air followed by thermal decomposition of the as-synthesized precursor solution, whereby the products were deposited onto stainless steel (SS) substrates. Subsequently, the decomposed product, which now consists only of the microstructural SnO2-carbon composite thin film, without the addition of any binder and carbon black conductive agent, was directly applied as an anode material for use in a Li-ion rechargeable battery. Physical and electrochemical characterizations of the as-synthesized thin films were carried out. The foam-like, microstructural SnO2-carbon composite thin films that undergo thermal decomposition in air at 300 degrees C demonstrated the best cyclability, delivering a specific discharge capacity of approximately 496 mAh g(-1) beyond 100 cycles. We believe that the presence of a uniform, SnO2-carbon network throughout the foam-like thin film, acts not only as an improved conducting network but also buffered the volume expansion upon Li-Sn alloying, resulting in a much improved cycling of the composite thin film electrode.
机译:在空气中剧烈搅拌下,于195℃下于乙二醇(EG)中将SnCl(2中心点)2H(2)O回流4小时,然后将其热分解,从而制得泡沫状的微结构SnO2-碳复合薄膜。合成的前体溶液,从而将产品沉积到不锈钢(SS)基材上。随后,将分解产物直接用作阳极材料,该分解产物现在仅由微结构SnO2-碳复合薄膜组成,而无需添加任何粘合剂和炭黑导电剂,可将其用作锂离子可充电电池的负极材料。进行了合成薄膜的物理和电化学表征。在300摄氏度的空气中经历热分解的泡沫状微结构SnO2-碳复合薄膜表现出最佳的可循环性,超过100个循环后提供的比放电容量约为496 mAh g(-1)。我们认为,整个泡沫状薄膜中均匀的SnO2-碳网络的存在,不仅可以改善导电网络,还可以缓冲锂锡合金化后的体积膨胀,从而大大改善了复合材料的循环薄膜电极。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号