...
首页> 外文期刊>Applied Surface Science >Metal functionalized inorganic nano-sheets as promising materials for clean energy storage
【24h】

Metal functionalized inorganic nano-sheets as promising materials for clean energy storage

机译:金属功能化无机纳米片作为清洁能源存储的有前途的材料

获取原文
获取原文并翻译 | 示例
           

摘要

The pursuit of a material capable of storing a high capacity of hydrogen (H-2) efficiently has prompted us to study the structural, electronic and H-2 storage properties of recently designed two-dimensional BN2 nanosheets. Our spin-polarized density functional theory based calculations have revealed that the pristine BN2 barely anchor H-2 molecules, however, alkali metal (AM) doping enhances the binding energies drastically. Van der Waals corrected energetics analysis established a uniform distribution of AMs over the BN2 monolayers even at a high doping concentration of 12.50%, which ensure the reversibility of the systems. Bader charge analysis, Roby-Gould bond index method, and electron localization function isosurfaces conclude the transfer of charges from AMs to BN2, which has resulted into strong ionic bonds between the former and the latter. The presence of partial positive charges on each of the AMs would adsorb multiple H-2 molecules with binding energies that are ideal for mobile H-2 storage applications. Considerably high H-2 storage capacities of 6.75%, 6.87% and 6.55% could be achieved with 3Li@BN2, 3Na@BN2 and 3K@BN2 systems, respectively that guarantees the promise of AMs decorated BN2 as a promising H-2 storage material.
机译:对能够有效存储高容量氢(H-2)的材料的追求促使我们研究了最近设计的二维BN2纳米片的结构,电子和H-2的存储特性。我们基于自旋极化密度泛函理论的计算表明,原始的BN2几乎不能锚定H-2分子,但是,碱金属(AM)掺杂会大大提高结合能。 Van der Waals校正后的能量学分析即使在12.50%的高掺杂浓度下也能在BN2单层上建立AM的均匀分布,从而确保了系统的可逆性。 Bader分析,Roby-Gould键指数法和电子定位功能等值面推断出电荷从AMs转移到BN2,导致前者与后者之间形成强离子键。每个AM上存在部分正电荷会吸附具有结合能的H-2分子,这对于移动H-2存储应用而言是理想的。 3Li @ BN2、3Na @ BN2和3K @ BN2系统可以分别达到6.75%,6.87%和6.55%的H-2高存储容量,这保证了AM修饰BN2作为有前途的H-2存储材料的前景。

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