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卤键在碘含氧酸和碘氧化物协同成核中的意义。

Significance of halogen bonding in the synergistic nucleation of iodine oxoacids and iodine oxides.

作者信息

Zhang Rongjie, Liu Yueyang, Yin Rujing, Ma Fangfang, Xia Deming, Chen Jingwen, Xie Hong-Bin, Francisco Joseph S

机构信息

Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), School of Environmental Science and Technology, Dalian University of Technology Dalian 116024 China

Department of Earth and Environmental Science, University of Pennsylvania Philadelphia PA 19104-6316 USA

出版信息

Chem Sci. 2025 Jul 21. doi: 10.1039/d5sc02517f.

Abstract

Congeneric iodine oxoacids and iodine oxides, key nucleating vapours in the marine atmosphere, have been reported to nucleate individually. However, whether they can nucleate together remains unknown. Here, we provide molecular-level evidence that IO, the iodine oxide with the highest nucleation potential towards iodine oxoacids, can synergistically nucleate with HIO-HIO. The nucleation rate of HIO-HIO-IO is 1.5 to 6.8 times higher than that of the known most efficient iodine-associated two-component (HIO-HIO) nucleation at 278.15 K, enhancing the role of iodine-containing species in marine atmospheric particle formation. Microscopic analysis of the three-component cluster configurations revealed that an unexpected acid-base reaction between IO and HIO/HIO is a key driver of this efficient synergistic nucleation, besides hydrogen bonds and halogen bonds. We identified halogen bond-induced basicity enhancement as the chemical nature of IO behaving as a base in the nucleation process with HIO/HIO. Such a basicity enhancement effect can be extended to other iodine-containing species, , HIO and the more acidic HIO, suggesting a common feature in interactions between iodine-containing species. Our findings clarify the synergistic nucleation of iodine oxoacids and iodine oxides and highlight the necessity of considering the effect of halogen bond-induced basicity enhancement on the formation of iodine-containing particles.

摘要

同类碘含氧酸和碘氧化物是海洋大气中的关键成核蒸汽,据报道它们能单独成核。然而,它们是否能一起成核仍不清楚。在此,我们提供了分子水平的证据,表明对碘含氧酸具有最高成核潜力的碘氧化物IO能与HIO-HIO协同成核。在278.15K时,HIO-HIO-IO的成核速率比已知最有效的含碘二元(HIO-HIO)成核速率高1.5至6.8倍,增强了含碘物种在海洋大气颗粒物形成中的作用。对三组分团簇构型的微观分析表明,除了氢键和卤键外,IO与HIO/HIO之间意外的酸碱反应是这种高效协同成核的关键驱动力。我们确定卤键诱导的碱性增强是IO在与HIO/HIO成核过程中表现为碱的化学本质。这种碱性增强效应可以扩展到其他含碘物种,如HIO和酸性更强的HIO,这表明含碘物种之间的相互作用具有共同特征。我们的研究结果阐明了碘含氧酸和碘氧化物的协同成核,并强调了考虑卤键诱导的碱性增强对含碘颗粒形成影响的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbc3/12422352/b73507f574f3/d5sc02517f-f1.jpg

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