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      Thermodynamic evaluations of the acceptorless dehydrogenation and hydrogenation of pre-aromatic and aromatic N-heterocycles in acetonitrile

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      a , a , a , b , , a ,
      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          N-heterocycles are important chemical hydrogen-storage materials, and the acceptorless dehydrogenation and hydrogenation of N-heterocycles as organic hydrogen carriers have been widely studied, with the main focus on the catalyst synthesis and design, investigation of the redox mechanisms, and extension of substrate scope. In this work, the Gibbs free energies of the dehydrogenation of pre-aromatic N-heterocycles (YH 2) and the hydrogenation of aromatic N-heterocycles (Y), i.e., Δ G H 2R (YH 2) and Δ G H 2A (Y), were derived by constructing thermodynamic cycles using Hess' law. The thermodynamic abilities for the acceptorless dehydrogenation and hydrogenation of 78 pre-aromatic N-heterocycles (YH 2) and related 78 aromatic N-heterocycles (Y) were well evaluated and discussed in acetonitrile. Moreover, the applications of the two thermodynamic parameters in identifying pre-aromatic N-heterocycles possessing reversible dehydrogenation and hydrogenation properties and the selection of the pre-aromatic N-heterocyclic hydrogen reductants in catalytic hydrogenation were considered and are discussed in detail. Undoubtedly, this work focuses on two new thermodynamic parameters of pre-aromatic and aromatic N-heterocycles, namely Δ G H 2R (YH 2) and Δ G H 2A (Y), which are important supplements to our previous work to offer precise insights into the chemical hydrogen storage and hydrogenation reactions of pre-aromatic and aromatic N-heterocycles.

          Abstract

          This work focuses on two new thermodynamic parameters of pre-aromatic and aromatic N-heterocycles to offer a precise insight into their chemical hydrogen storage and hydrogenation reactions.

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          Most cited references51

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          Asymmetric hydrogenation of heteroarenes and arenes.

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            Transfer hydrogenation with Hantzsch esters and related organic hydride donors.

            In recent years, Hantzsch esters and their related organic hydride donors have been widely utilized in biomimetic approaches of asymmetric transfer hydrogenation (ATH) reactions. Various compounds containing C=C, C=N and C=O unsaturated functionalities could be reduced in the presence of organocatalysts or transition metal complexes, affording versatile chiral building blocks in high yields and excellent enantioselectivities under mild conditions. In this critical review, recent advances in this area are summarized and classified according to unsaturated functional groups being reduced and catalytic systems employed (91 references).
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              Hydrogen storage in liquid organic heterocycles

                Author and article information

                Journal
                RSC Adv
                RSC Adv
                RA
                RSCACL
                RSC Advances
                The Royal Society of Chemistry
                2046-2069
                2 January 2024
                2 January 2024
                2 January 2024
                : 14
                : 1
                : 222-232
                Affiliations
                [a ] College of Medical Engineering, Jining Medical University Jining Shandong 272000 P. R. China gbshen@ 123456mail.jnmc.edu.cn
                [b ] The State Key Laboratory of Elemento-Organic Chemistry, Department of Chemistry, Nankai University Tianjin 300071 China xqzhu@ 123456nankai.edu.cn
                Author information
                https://orcid.org/0000-0003-0449-7301
                Article
                d3ra08022f
                10.1039/d3ra08022f
                10758765
                a489e9e4-9d48-434f-86ed-68a2676b4216
                This journal is © The Royal Society of Chemistry
                History
                : 23 November 2023
                : 4 December 2023
                Page count
                Pages: 11
                Funding
                Funded by: Jining Medical University, doi 10.13039/501100008853;
                Award ID: doctoral scientific research foundation
                Funded by: Department of Education of Shandong Province, doi 10.13039/100012906;
                Award ID: S202210443003
                Categories
                Chemistry
                Custom metadata
                Paginated Article

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