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      Investigation of the intramolecular hydrogen bonding interactions and excited state proton transfer mechanism for both Br-BTN and CN-BTN systems†

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We in-depth explore the excited state hydrogen bonding interactions and the excited state intramolecular proton transfer (ESIPT) behaviors for the Br-BTN and CN-BTN system. We firstly verify the formation of hydrogen bond effects of O–H⋯N based on reduced density gradient (RDG) versus sign( λ 2) ρ. The simulated primary bond lengths and bond angles as well as infrared (IR) vibrational spectra reveal that the hydrogen bond O–H⋯N should be strengthened in the excited state. Combining the frontier molecular orbital (MO) investigations, we infer that the charge transfer phenomenon (from HOMO to LUMO) around hydrogen bonding moieties reveals the tendency of ESIPT reaction. Particularly, the increased electronic densities around proton acceptor atoms facilitate attracting a hydrogen proton, which plays a decisive role in opening the ESIPT reaction. Via constructing potential energy curves in both S 0 and S 1 states, the ultrafast ESIPT process can be verified which explains previous experimental characteristics. Furthermore, via searching the transition state (TS) structure and constructing the intrinsic reaction coordinate (IRC) reaction path, we check and confirm the ESIPT mechanism for both Br-BTN and CN-BTN systems. We sincerely hope that our theoretical work could guide novel applications based on Br-BTN and CN-BTN compounds in future.

          Abstract

          In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically.

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          Gaussian 09, revision A. 02

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            Author and article information

            Journal
            RSC Adv
            RSC Adv
            RA
            RSCACL
            RSC Advances
            The Royal Society of Chemistry
            2046-2069
            25 July 2019
            23 July 2019
            25 July 2019
            : 9
            : 40
            : 23004-23011
            Affiliations
            [a] College of Physics and Electronics, North China University of Water Resources and Electric Power Zhengzhou 450046 P. R. China dpyang_ncwu@ 123456163.com
            [b] State Key Laboratory of Molecular Reaction Dynamics, Theoretical and Computational Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences Dalian 116023 P. R. China
            Author information
            https://orcid.org/0000-0002-2319-6355
            Article
            c9ra04258j
            10.1039/c9ra04258j
            9067100
            35514474
            be61897e-a4db-47e8-99ef-92e8736fd47e
            This journal is © The Royal Society of Chemistry
            History
            : 6 June 2019
            : 21 July 2019
            Page count
            Pages: 8
            Funding
            Funded by: Key Scientific Research Project of Colleges and Universities in Henan Province, doi 10.13039/501100013066;
            Award ID: 18A140023
            Categories
            Chemistry
            Custom metadata
            Paginated Article

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