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首页> 外文期刊>ACS Omega >Hydrogen Arrangements on Defective Quasi-Molecular BN Fragments
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Hydrogen Arrangements on Defective Quasi-Molecular BN Fragments

机译:缺陷的准分子BN片段上的氢安排

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Considering the ever-increasing interest in metal-free materials, some potential chemical applications of quasi-molecular boron nitride (BN) derivatives were tested. Specifically, the behavior of BN fragments was analyzed when given defects, producing local electron density changes, were introduced by using topological engineering approaches. The inserted structural faults were Schottky-like divacancy (BN-d) defects, assembled in the fragment frame by the subtraction of one pair of B and N atoms or Stone–Wales (SW) defects. This study is aimed at highlighting the role of these important classes of defects in BN materials hypothesizing their future use in H2-based processes, related to either (i) H2 activation or (ii) H2 production, from preadsorbed hydrogenated molecular species on BN sites. Here, it has been observed that BN species, embodying SW defects, are characterized by endothermic H2 adsorption and fragmentation phenomena in order to guess their potential use in processes based on the transformation or production of hydrogen. On the contrary, in the presence of BN-d defects, and for reasons strictly related to local structural changes occurring along with the hydrogen rearrangements on the defective BN fragments, a possible use can be inferred. Precautions must be however taken to decrease the material rigidity that could actually decrease the ability of the BN fragment to flatten. This conversely seems to be a necessary requirement to have strong exothermic effects, following the rearrangements of the H2 molecules.
机译:考虑到对无金属材料的日益增长的兴趣,测试了准分子氮化硼(BN)衍生物的某些潜在化学应用。具体而言,当使用拓扑工程方法引入给定缺陷并产生局部电子密度变化时,分析了BN碎片的行为。插入的结构断层是肖特基样的空位(BN-d)缺陷,通过减去一对B和N原子或Stone-Wales(SW)缺陷而组装在碎片框架中。这项研究旨在强调这些重要类别的缺陷在BN材料中的作用,并假设它们在基于H2的工艺中的未来用途,这些工艺与(i)H2活化或(ii)BN位点上预先吸附的氢化分子物质产生的H2有关。在这里,已经观察到体现SW缺陷的BN物种的特征是吸热H2吸附和断裂现象,以便推测它们在基于氢的转化或生产过程中的潜在用途。相反,在存在BN-d缺陷的情况下,并且由于与缺陷BN片段上的氢重排一起发生的局部结构变化严格相关的原因,可以推断出可能的用途。但是,必须采取预防措施来降低材料的刚度,而这实际上可能会降低BN碎片变平的能力。相反,这似乎是随着H2分子的重排而具有强烈的放热作用的必要条件。

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