论文标题

局部自发的动态氧迁移在双苯基上:DFT研究

Locally Spontaneous Dynamic Oxygen Migration on Biphenylene: A DFT Study

论文作者

Situ, Boyi, Yan, Zihan, Huo, Rubin, Wang, Kongbo, Chen, Liang, Zhang, Zhe, Zhao, Liang, Tu, Yusong

论文摘要

在包括石墨烯和碳纳米管在内的周期性六角形环主导的碳同素异形体界面上的动态氧迁移已为实现动态价值材料的新途径开辟了新的途径。但是,对于带有杂化碳环(例如二苯基)的碳材料,是否仍然可以发现其界面处的动态氧迁移尚不清楚。使用密度功能理论计算和基于机器学习的分子动力学(MLMD)模拟,我们发现远离四元碳(C4)环的氧气迁移受到阻碍,氧原子更喜欢自发地朝着/周围的C4环迁移。这种局部自发的动态氧在双苯基上的迁移归因于以前的过程的高屏障约为1.5 eV,而后者的屏障相对较低,相对较低的屏障源于C-O键在C4环附近/由于混合碳环圆环结构引起的C-O键的增强活动。此外,MLMD模拟进一步证实了局部自发的动态氧迁移。这项工作阐明了双苯基作为空间控制能量转换的催化剂的潜力,并为实现其他基于碳或二维材料的动态共价界面提供了指导。

The dynamic oxygen migration at the interface of carbon allotropes dominated by the periodic hexagonal rings, including graphene and carbon nanotube, has opened up a new avenue to realize dynamic covalent materials. However, for the carbon materials with hybrid carbon rings, such as biphenylene, whether the dynamic oxygen migration at its interface can still be found remains unknown. Using both density functional theory calculations and machine-learning-based molecular dynamics (MLMD) simulations, we found that the oxygen migration departing away from the four-membered carbon (C4) ring is hindered, and the oxygen atom prefers to spontaneously migrate toward/around the C4 ring. This locally spontaneous dynamic oxygen migration on the biphenylene is attributed to the high barrier of about 1.5 eV for the former process and relatively low barrier of about 0.3 eV for the latter one, originating from the enhanced activity of C-O bond near/around the C4 ring due to the hybrid carbon rings structure. Moreover, the locally spontaneous dynamic oxygen migration is further confirmed by MLMD simulations. This work sheds light on the potential of biphenylene as a catalyst for spatial-controlled energy conversion and provides the guidance for realizing the dynamic covalent interface at other carbon-based or two-dimensional materials.

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