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环状硼酸酯与氟离子的结合:主链螯合对受体完整性的影响。

Fluoride anion binding by cyclic boronic esters: influence of backbone chelate on receptor integrity.

作者信息

Bresner Christopher, Day Joanna K, Coombs Natalie D, Fallis Ian A, Aldridge Simon, Coles Simon J, Hursthouse Michael B

机构信息

Centre for Fundamental and Applied Main Group Chemistry, Cardiff School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, UK.

出版信息

Dalton Trans. 2006 Aug 14(30):3660-7. doi: 10.1039/b605031j. Epub 2006 Jul 4.

DOI:10.1039/b605031j
PMID:16865177
Abstract

A systematic investigation of fluoride anion binding properties as a function of chelate backbone has been carried out for ferrocene functionalised boronic esters of the types FcB(OR)2 and fc[B(OR)2]2 [Fc = ferrocenyl = (eta5-C5H5)Fe(eta5-C5H4); fc = ferrocendiyl = Fe(eta5-C5H4)2]. Cyclic boronic esters containing a saturated five- or six-membered chelate ring are readily synthesized from ferrocene, and selectively bind fluoride via Lewis acid/base chemistry in chloroform solution. The resulting complexes are characterized by relatively weak fluoride binding (e.g.K = 35.8 +/- 9.8 M(-1) for FcBO2C2H2Ph2-S,S), and by cathodic shifts in the ferrocene oxidation potential that form the basis for electrochemical or colorimetric fluoride detection. The fluoride selectivity of these systems is attributed to relatively weak Lewis acidity, resulting in weak F- binding, and essentially no binding of potentially competitive anions. By contrast, more elaborate Lewis acid frameworks based on calix[4]arene (calixH4), such as (FcB)2calix or fcB2calix, do not survive intact exposure to standard fluoride sources (e.g. [nBu4N]F.xH2O solutions in chloroform or acetonitrile). Instead B-O bond cleavage occurs yielding the parent calixarene; the differences between alkoxo- and aryloxo-functionalised derivatives can be rationalised, at least in part, by consideration of the differences in electron donating capabilities of RO- (R = alkyl, aryl).

摘要

已针对二茂铁官能化硼酸酯FcB(OR)₂和fc[B(OR)₂]₂类型(Fc = 二茂铁基 = (η⁵-C₅H₅)Fe(η⁵-C₅H₄);fc = 二茂铁二基 = Fe(η⁵-C₅H₄)₂),开展了作为螯合主链函数的氟阴离子结合性质的系统研究。含有饱和五元或六元螯合环的环状硼酸酯可容易地由二茂铁合成,并在氯仿溶液中通过路易斯酸/碱化学选择性结合氟化物。所得配合物的特征在于氟化物结合相对较弱(例如对于FcBO₂C₂H₂Ph₂-S,S,K = 35.8 ± 9.8 M⁻¹),并且二茂铁氧化电位发生阴极位移,这构成了电化学或比色法检测氟化物的基础。这些体系对氟化物的选择性归因于相对较弱的路易斯酸性,导致F⁻结合较弱,并且基本上不结合潜在竞争性阴离子。相比之下,基于杯[4]芳烃(杯H₄)的更精细的路易斯酸框架,如(FcB)₂杯或fcB₂杯,在完整暴露于标准氟源(例如氯仿或乙腈中的[nBu₄N]F·xH₂O溶液)时无法保持完整。相反,会发生B-O键断裂,生成母体杯芳烃;烷氧基和芳氧基官能化衍生物之间的差异至少部分可以通过考虑RO⁻(R = 烷基、芳基)供电子能力的差异来解释。

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