首页> 外文期刊>Journal of the American Chemical Society >Hydrogen-Bonded Homoleptic Fluoride-Diarylurea Complexes: Structure, Reactivity, and Coordinating Power
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Hydrogen-Bonded Homoleptic Fluoride-Diarylurea Complexes: Structure, Reactivity, and Coordinating Power

机译:氢键同质氟化物-二芳基脲络合物:结构,反应性和配位能力。

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摘要

Hydrogen bonding with fluoride is a key interaction encountered when analyzing the mode of action of 5'-fluoro-5'-deoxyadenosine synthase, the only known enzyme capable of catalyzing the formation of a C-F bond from F~-. Further understanding of the effect of hydrogen bonding on the structure and reactivity of complexed fluoride is therefore important for catalysis and numerous other applications, such as anion supramolecular chemistry. Herein we disclose a detailed study examining the structure of 18 novel urea-fluoride complexes in the solid state, by X-ray and neutron diffraction, and in solution phase and explore the reactivity of these complexes as a fluoride source in S_N2 chemistry. Experimental data show that the structure, coordination strength, and reactivity of the urea-fluoride complexes are tunable by modifying substituents on the urea receptor. Hammett analysis of aryl groups on the urea indicates that fluoride binding is dependent on σ_p and σ_m parameters with stronger binding being observed for electron-deficient urea ligands. For the first time, defined urea-fluoride complexes are used as fluoride-binding reagents for the nucleophilic substitution of a model alkyl bromide. The reaction is slower in comparison with known alcohol-fluoride complexes, but S_N2 is largely favored over E2, at a ratio surpassing all hydrogen-bonded complexes documented in the literature for the model alkyl bromide employed. Increased second-order rate constants at higher dilution support the hypothesis that the reactive species is a 1:1 urea-fluoride complex of type [UF]~- (U = urea) resulting from partial dissociation of the parent compound [U_2F]~-. The dissociation processes can be quantified through a combination of UV and NMR assays, including DOSY and HOESY analyses that illuminate the complexation state and H-bonding in solution.
机译:与氟化物的氢键键合是分析5'-氟-5'-脱氧腺苷合酶的作用方式时遇到的关键相互作用,5'-氟-5'-脱氧腺苷合酶是唯一已知的能够催化F〜-形成C-F键的酶。因此,进一步了解氢键对复合氟化物的结构和反应性的影响对于催化和许多其他应用(例如阴离子超分子化学)很重要。本文中,我们公开了一项详细的研究,通过X射线和中子衍射以及在溶液相中研究了固态的18种新型脲氟化物配合物的结构,并探讨了这些配合物在S_N2化学中作为氟化物源的反应性。实验数据表明,通过修饰尿素受体上的取代基,可以调节尿素-氟化物配合物的结构,配位强度和反应性。尿素上芳基的Hammett分析表明,氟化物的结合取决于σ_p和σ_m参数,对于缺电子的尿素配体,观察到更强的结合。首次将定义的脲-氟化物络合物用作氟化物结合剂,用于模型烷基溴的亲核取代。与已知的醇-氟化物络合物相比,该反应较慢,但S_N2比E2更为受人欢迎,其比例超过了文献中所采用的模型烷基溴的所有氢键合络合物。较高稀释度时增加的二阶速率常数支持以下假设:反应性物质是母体化合物[U_2F]〜-部分解离的[UF]〜–(U =尿素)型1:1氟脲化合物。 。解离过程可以通过结合UV和NMR分析进行定量,包括DOSY和HOESY分析,它们阐明了溶液中的络合态和H键。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2016年第40期|13314-13325|共12页
  • 作者单位

    Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, OX1 3TA Oxford, United Kingdom;

    Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, OX1 3TA Oxford, United Kingdom,Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States;

    Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, OX1 3TA Oxford, United Kingdom;

    ISIS Facility, STFC-Rutherford Appleton Laboratory, OX11 OQX Didcot, United Kingdom,School of Chemistry, University of Bristol, Cantock's Close, BS8 1TS Bristol, United Kingdom;

    Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, OX1 3TA Oxford, United Kingdom;

    Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, OX1 3TA Oxford, United Kingdom;

    Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, OX1 3TA Oxford, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:08:58

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