...
首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Heating Rate-Dependent Dehydrogenation in the Thermal Decomposition Process of Mg(BH4)2·6NH3
【24h】

Heating Rate-Dependent Dehydrogenation in the Thermal Decomposition Process of Mg(BH4)2·6NH3

机译:Mg(BH4)2·6NH3热分解过程中取决于升温速率的脱氢

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

The detailed mechanism of thermal decomposition of Mg(BH4)2·6NH3 synthesized via a mechanochemical reaction between Mg(BH4)2 and NH3 at room temperature was investigated for the first time. A six-step decomposition process, which involves several parallel and interrelated reactions, was elucidated through a series of structural examinations and property evaluations. First, the thermal decomposition of Mg(BH4)2·6NH3 evolves 3 equiv of NH3 and forms Mg(BH4)2·3NH3. Subsequently, Mg(BH4)2·3NH3 decomposes to release an additional 1 equiv of NH3 and 3 equiv of H2 to produce the [MgNBHNH3] [BH4] polymer. And then, [MgNBHNH3] [BH4] further desorbs 3 equiv of H2 through a three-step reaction to give rise to the formation of the polymer intermediates of [MgNBHNH2][BH4], MgNBHNH2BH2, and MgNBNHBH, respectively. Finally, an additional 1 equiv of H2 is liberated from MgNBNHBH to yield Mg and BN as the resultant solid products. In total, about 7 equiv of H2 and 4 equiv of NH3 are released together from Mg(BH4)2·6NH3 upon heating. Moreover, there is a strong dependence of the gas compositions released from Mg(BH4)2·6NH3 on the heating rate because the decomposition reaction of Mg(BH4)2·3NH3 is sensitive to the heating rate, as the faster heating rate induces a lower ammonia evolution. The finding in this work provides us with insights into the dehydrogenation mechanisms of the metal borohydride ammoniates as hydrogen storage media.
机译:首次研究了Mg(BH4)2与NH3发生机械化学反应合成的Mg(BH4)2·6NH3在室温下热分解的详细机理。通过一系列结构检查和性能评估,阐明了六步分解过程,其中涉及多个平行且相互关联的反应。首先,Mg(BH4)2·6NH3的热分解生成3当量的NH3,形成Mg(BH4)2·3NH3。随后,Mg(BH4)2·3NH3分解以释放另外1当量的NH3和3当量的H2,以生产[MgNBHNH3] [BH4]聚合物。然后,[MgNBHNH3] [BH4]通过三步反应进一步解吸3当量的H2,分别形成[MgNBHNH2] [BH4],MgNBHNH2BH2和MgNBNHBH的聚合物中间体。最后,从MgNBNHBH中释放出另外1当量的H2,以生成Mg和BN,作为固体产物。加热时,总共从Mg(BH4)2·6NH3一起释放约7当量的H2和4当量的NH3。而且,由于Mg(BH4)2·3NH3的分解反应对加热速率敏感,因为Mg(BH4)2·6NH3释放的气体成分对加热速率敏感,因为更快的加热速率会引起降低氨的释放。这项工作中的发现使我们对金属硼氢化物氨化物作为储氢介质的脱氢机理有了更深入的了解。

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