首页> 外文期刊>Scientific reports. >Facile synthesis of silicon nitride nanowires with flexible mechanical properties and with diameters controlled by flow rate
【24h】

Facile synthesis of silicon nitride nanowires with flexible mechanical properties and with diameters controlled by flow rate

机译:具有柔性机械性能的氮化硅纳米线的容易合成,并通过流速控制直径

获取原文
           

摘要

Ultralong Si3N4 nanowires (NWs) were successfully synthesized with size controlled in N2 gas by using an efficient method. The diameters of the Si3N4 NWs increased when the flow rate of N2 gas increased, with average diameters of 290?nm from flow rates of 100?ml/min, 343?nm from flow rates of 200?ml/min and 425?nm from flow rates of 400?ml/min. Young’s modulus was found to rely strongly on the diameters of the Si3N4 NWs, decreasing from approximately 526.0?GPa to 321.9?GPa; as the diameters increased from 360?nm to 960?nm. These findings provide a promising method for tailoring these mechanical properties of the NWs in a controlled manner over a wide range of Young’s modulus values. Vapour-liquid-solid (VLS) mechanisms were used to model the growth of Si3N4 NWs on the inner wall of an alumina crucible and on the surface of the powder mixture. Alumina may be an effective mediator of NW growth that plays an important role in controlling the concentrations of Si-containing reactants to support the growth of NWs on the inner wall of the alumina crucible. This approach offers a valuable means for preparing ultralong Si3N4 NWs doped with Al with unique properties.
机译:通过使用有效的方法,通过在N 2气体中成功地合成超龙Si3N4纳米线(NWS)。当N2气体的流速增加时,Si3N4 NWS的直径增加,平均直径为100μm,从100μl/ min的流速,343Ω·nm,来自200μm1/ min的流速,425?nm流速为400?ml / min。发现杨氏模量强烈依赖于Si3N4NWS的直径,从大约526.0℃下降到321.9?GPA;随着直径从360℃增加到960?NM。这些发现提供了一种希望在广泛的杨氏模量值上以受控方式定制NWS的这些机械性能的有希望的方法。使用蒸汽 - 液体固体(VLS)机制来模拟氧化铝坩埚内壁和粉末混合物表面上的Si3N4nws的生长。氧化铝可以是NW生长的有效介体,其在控制含Si反应物的浓度中起重要作用,以支持氧化铝坩埚内壁上的NWS生长。该方法提供了一种有价值的方法,用于制备掺杂有独特性质的Ultralong Si3N4 NWS。

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