...
首页> 外文期刊>Journal of Materials Science >Reduction of Ni2+ by hydrazine in solution for the preparation of nickel nano-particles
【24h】

Reduction of Ni2+ by hydrazine in solution for the preparation of nickel nano-particles

机译:肼在溶液中还原Ni2 + 制备镍纳米粒子

获取原文
获取原文并翻译 | 示例

摘要

The reduction of Ni2+ by hydrazine in solution for the preparation of nickel nano-particles has been studied. It was found that the reactions occur in two stages. The first stage is the reduction of Ni2+ by N2H4 according to 2Ni2+ + N2H4 + 4OH− = 2Ni↓ + N2↑+ 4H2O, while the second stage consists of two side reactions, the decomposition of hydrazine (N2H4 = N2↑ + 2H2↑) and the disproportionation of hydrazine (3N2H4 = N2↑ + 4NH3↑) catalyzed by the formed nickel nano-particles. The reaction for the formation of nickel is also catalyzed by nickel as an autocatalytic reaction. Accordingly, a small amount of inducing agent, NaBH4 can be added to initiate the reaction that can then proceed continuously at 288 K. Kinetic study reveals that the reaction orders with respect to Ni2+, N2H4 and Ni are 1, 0 and 1, respectively. Thus, the increase of the initial concentration of Ni2+ and the amount of inducing agent used accelerate the reaction rate and decrease the consumption of N2H4 significantly. Pure nickel nano-particles with high surface areas are produced and the surface area can increase from 18 to 79 m2/g with the increase of concentration of Ni2+ used. The fully understanding of the reaction between Ni2+ and hydrazine in solution may provide a new optimized technique to prepare the nickel catalysts with high surface areas, in addition to the currently available techniques for the preparation of Raney nickel and supported nickel catalysts.
机译:研究了肼在溶液中还原Ni2 + 制备镍纳米粒子的方法。发现反应发生在两个阶段。第一个阶段是根据2Ni2 + + N2 H4 + 4OH- = 2Ni的N2 H4 还原Ni2 + ↓+ N2 ↑+ 4H2 O,而第二阶段由两个副反应组成,肼的分解(N2 H4 = N2 ↑+ 2H2 ↑)和形成的镍纳米粒子催化的肼歧化反应(3N2 H4 = N2 ↑+ 4NH3 ↑)。镍的形成反应也被镍催化为自催化反应。因此,可以添加少量的诱导剂NaBH4 引发反应,然后在288 K下连续进行。动力学研究表明,反应对Ni2 + ,N2 H4 和Ni分别为1、0和1。因此,Ni2 +初始浓度的增加和所使用的诱导剂的用量大大提高了反应速度,并减少了N2H4 的消耗。制备了具有高表面积的纯镍纳米粒子,并且随着所使用的Ni2 +浓度的增加,表面积可以从18增加到79 m2 / g。除了当前可用于制备阮内镍和负载型镍催化剂的技术以外,对溶液中Ni2 +和肼之间反应的充分理解可能为制备具有高表面积的镍催化剂提供一种新的优化技术。

著录项

  • 来源
    《Journal of Materials Science 》 |2006年第11期| 3473-3480| 共8页
  • 作者单位

    Lab of Mesoscopic Chemistry Department of Chemistry Nanjing UniversityJiangsu Radio and Television University;

    Lab of Mesoscopic Chemistry Department of Chemistry Nanjing UniversityJiangsu Radio and Television University;

    Lab of Mesoscopic Chemistry Department of Chemistry Nanjing University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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