...
首页> 外文期刊>Nanoscale >Polymeric tungsten carbide nanoclusters: structural evolution, ligand modulation, and assembled nanomaterials
【24h】

Polymeric tungsten carbide nanoclusters: structural evolution, ligand modulation, and assembled nanomaterials

机译:聚合物碳化钨的制备:构造演化、配位体调制和组装纳米材料

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

Seeking novel superatoms with tunable electronic and magnetic properties has attracted much interest due to their potential application in cluster assembly nanomaterials. By employing density functional theory (DFT) calculations, the recently observed superatomic WC cluster was adopted as the basic unit to construct larger polymeric clusters, namely (WC)(n) (n = 2-7), and their structural evolution was explored to understand the growth pattern of these superatomic clusters into nanoscale materials. An unusual odd-even pattern in structural evolution was disclosed, in which the (WC)(2) unit is considered as the basic building block. Moreover, W4C4 is found to possess a cubic structure, based on which the CO and PH3 ligands were attached to examine their ligation effects on W4C4. Theoretical results show that the electronic properties of W4C4 can be dramatically altered during the ligation process. Intriguingly, the continuous attachment of CO and PH3 ligands strongly increases and decreases the electron affinities (EA) and ionization potentials (IP) of the ligated W4C4 clusters, respectively, leading to the formation of superhalogen and superalkali species with high magnetic moments. The observed ligand induced strategy highlighted here could serve as an effective way to tune the electronic and magnetic properties of clusters resulting in the formation of novel superatoms. Finally, studies on the geometrical and electronic structures of the W4C4 cluster solid unveil its special 3-D cubic honeycomb geometry and metallic properties with predominant contribution from the 5d of W, which may have potential applications in electro-catalysis.
机译:寻求与可调电子小说superatoms和磁性吸引了由于其潜在的应用程序集群组装纳米材料。密度泛函理论(DFT)计算,最近观察到superatomic WC集群作为基本单位来构造更大聚合物集群,即(WC) (n) (n = 2 - 7日)他们的构造演化研究理解的增长模式superatomic集群为纳米材料。不寻常的奇偶在构造演化模式被披露,(WC)(2)单位是什么视为基本构建块。W4C4发现拥有一个立方结构,基础公司和PH3配体相连检查他们对W4C4结扎的影响。理论结果表明,电子W4C4可以显著改变的性质在连接过程中。连续附件有限公司和PH3配体强烈的增加和减少电子亲和力(EA)和电离势(IP)分别结扎W4C4集群superhalogen的形成和superalkali物种高磁矩。配体诱导策略在下面进行了突出显示作为一个有效的方法来优化电子而导致的集群和磁性小说superatoms的形成。研究几何和电子结构的固体公布其W4C4集群特殊的三维立方蜂窝几何形状和金属属性的主要贡献5 d W,可能有潜在的应用electro-catalysis。

著录项

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