首页> 外文期刊>International journal of hydrogen energy >Extended Brewer hypo-hyper-d-interionic bonding theory — Ⅰ. Theoretical considerations and examples for its experimental confirmation
【24h】

Extended Brewer hypo-hyper-d-interionic bonding theory — Ⅰ. Theoretical considerations and examples for its experimental confirmation

机译:扩展的Brewer次-d-超离子键合理论—Ⅰ。理论考量和实验验证实例

获取原文
获取原文并翻译 | 示例
       

摘要

The Extended Brewer Interactive Interionic Bonding Theory (EBIIBT) has been developed to show the equivalence of interatomic and interionic bonding feature, as well as its effect upon electrocatalytic properties for the hydrogen electrode reactions. The equivalence of interionic hypo-hyper-d-interelectronic interaction in both metallic and any other ionic or their composite states has been proved and inferred. In such a context, the EBIIBT stays in the core of the Strong Metal-Support Interaction (SMSI) effect in heterogeneous catalysis, and the latter is an implied consequence of the former. Thermal Gravimetry (TG) analysis of Temperature Programmed Reduction (TPR) of mixed hypo-hyper-d-electronic oxides of transition elements was broadly employed to prove the extended Brewer theory along the phase diagrams of such constituents, as reflected in dramatically decreased temperatures of their mutual reduction versus the individual metallic ingredients entering into the resulting intermetallic phases or alloys. The same interionic Brewer (and/or intermetallic) bonding effect has also been confirmed both by Underpotential Deposition of hyper-d- upon hypo-d-electronic substrates and vice versa, and by the shift of the bonding peaks in XPS analysis. The former affords the basis for new trends in submonolayer hypo-hyper-d-interelectronic electrocatalysis of transition metals. Thus, it has been pointed out that the term SMSI has primarily a broader hypo-hyper-d-interelectronic interactive sense in both the bonding effectiveness and synergism in electrocatalysis, including bifunctional catalytic meaning as based upon the interionic interactive promotion.
机译:已经开发了扩展布鲁尔相互作用离子间键合理论(EBIIBT),以显示原子间和离子间键合特征的等效性,以及其对氢电极反应的电催化性能的影响。已经证明并推断出金属和任何其他离子或它们的复合态中的离子间低-d-电子相互作用的等价性。在这种情况下,EBIIBT停留在非均相催化中强金属-载体相互作用(SMSI)效应的核心中,后者是前者的隐含结果。过渡元素的混合hyper-d-d-电子氧化物的程序编程还原(TPR)的热重分析(TG)分析被广泛用于证明沿着这些成分的相图的扩展布鲁尔理论,反映在温度的急剧降低中。相对于进入生成的金属间相或合金的单个金属成分而言,它们相互还原。同样的离子间布鲁尔(和/或金属间)键合作用也已通过hyper-d-hypo-d-电子衬底上的高d-d-的欠电位沉积以及XPS分析中键合峰的移动得到了证实。前者为亚单层过渡金属的hyper-d-interelectronic电子催化新趋势提供了依据。因此,已经指出,术语SMSI在电催化的键合效率和协同作用方面主要具有较宽泛的hyper-d-d-电子间相互作用的含义,包括基于离子间相互作用促进的双功能催化含义。

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