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单重态和三重态氧在硼掺杂石墨烯上的吸附:吸附及电子特性

Adsorption of singlet and triplet oxygen on B-doped graphene: adsorption and electronic characteristics.

作者信息

Sahithi A, Sumithra K

机构信息

Birla Institute of Technology and Science (BITS), Pilani Hyderabad Campus, Shamirpet Telangana State 500078 India

出版信息

RSC Adv. 2023 Jul 11;13(30):20868-20875. doi: 10.1039/d3ra00624g. eCollection 2023 Jul 7.

Abstract

The density functional calculations of electronic and structural properties of the adsorption of dioxygen on boron-doped graphene surfaces are conducted using spin-polarized density functional theory methods, including van der Waals correction. The results show significant differences in the adsorption characteristics of singlet and triplet oxygen on boron-doped graphene surfaces. Both triplet and singlet show only weak attraction to intrinsic and singly doped graphene. The singlet oxygen adsorption on doped graphene shows fascinating features involving chemisorption with dioxetane ring formation with appreciable charge transfer. In contrast, the triplet oxygen is only weakly physisorbed on the boron-doped surfaces. Chemisorption of singlet oxygen occurs with noticeable charge transfer and leads to almost featureless band structures, while the triplet oxygen physisorption proceeds with a well-defined band structure. Chemisorption of the singlet oxygen is attributed to the enormous mixing of π* of dioxygen and the p-orbitals of dopant and carbon. Because of the difference in adsorption characteristics, chemically modified graphene can find use in detecting and trapping singlet oxygen, which has potential applications in photodynamic therapy.

摘要

利用包括范德华校正在内的自旋极化密度泛函理论方法,对硼掺杂石墨烯表面吸附双氧的电子和结构性质进行了密度泛函计算。结果表明,单线态氧和三线态氧在硼掺杂石墨烯表面的吸附特性存在显著差异。三线态和单线态对本征和单掺杂石墨烯都只表现出微弱的吸引力。掺杂石墨烯上的单线态氧吸附表现出迷人的特征,包括与二氧杂环丁烷环形成的化学吸附以及可观的电荷转移。相比之下,三线态氧在硼掺杂表面上只是弱物理吸附。单线态氧的化学吸附伴随着明显的电荷转移,导致能带结构几乎无特征,而三线态氧的物理吸附则具有明确的能带结构。单线态氧的化学吸附归因于双氧的π*与掺杂剂和碳的p轨道的大量混合。由于吸附特性的差异,化学修饰的石墨烯可用于检测和捕获单线态氧,这在光动力疗法中具有潜在应用。

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