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缺电子硼酸聚合物的合成、超分子组装及其作为酰胺键形成催化剂的研究。

Electron-Deficient Borinic Acid Polymers: Synthesis, Supramolecular Assembly, and Examination as Catalysts in Amide Bond Formation.

机构信息

Department of Chemistry, Rutgers University-Newark, 73 Warren Street, Newark, NJ, 07102, USA.

出版信息

Chemistry. 2019 Oct 28;25(60):13799-13810. doi: 10.1002/chem.201903196. Epub 2019 Sep 30.

DOI:10.1002/chem.201903196
PMID:31408217
Abstract

The Lewis acidic character of borinic-acid-functionalized polymers suggests broad potential applications in supramolecular materials, chemo- and biosensors, as well as supported catalysts. Two highly electron-deficient borinic acid copolymers (3 a and 3 b) with variable steric hindrance at the boron center were prepared by reaction of aryldibromoboranes ArBBr (2, Ar=2,4-Cl Ph, 3,5-Cl Ph) with a 10 % stannylated polystyrene random copolymer, followed by conversion to the desired PS-B(Ar)OH functionalities. The supramolecular assembly of these polymers through Lewis acid-Lewis base interactions and reversible covalent B-O-B bond formation was investigated. Exposure of a polymer solution of 3 a to pyridine triggered spontaneous gelation, whereas 3 b only gelled upon addition of molecular sieves to favor formation of boroxane crosslinks. The crosslinking process was readily reversed by addition of small amounts of water or wet solvent. The dynamic processes were studied in detail by variable-temperature (VT) NMR by using molecular model compounds. The polymers and their corresponding model compounds were also examined as catalysts in the amide bond formation reaction between phenylacetic acid and benzylamine. The 3,5-dichlorophenyl borinic acid derivatives proved to be the more effective catalysts. Mechanistic studies suggested that the borane Lewis acid-catalyzed coupling involves initial acid-induced protodeboronation to release the dichlorophenyl boronic acid as the active catalyst.

摘要

硼酸官能化聚合物的路易斯酸性特征表明其在超分子材料、化学和生物传感器以及负载催化剂方面具有广泛的潜在应用。通过芳基二溴代硼烷 ArBBr(2,Ar=2,4-ClPh,3,5-ClPh)与 10%锡化聚苯乙烯无规共聚物反应,制备了两种具有可变硼中心空间位阻的高缺电子硼酸共聚物(3a 和 3b),然后将其转化为所需的 PS-B(Ar)OH 官能团。通过路易斯酸-路易斯碱相互作用和可逆的 B-O-B 键形成研究了这些聚合物的超分子组装。将 3a 的聚合物溶液暴露于吡啶中会引发自发凝胶化,而 3b 仅在添加分子筛以有利于形成硼氧烷交联时才凝胶化。通过添加少量水或湿溶剂可以很容易地逆转交联过程。通过使用分子模型化合物的变温(VT)NMR 详细研究了动态过程。还研究了聚合物及其相应的模型化合物在苯乙酸和苄胺之间形成酰胺键反应中的催化性能。3,5-二氯苯基硼酸衍生物被证明是更有效的催化剂。机理研究表明,硼烷路易斯酸催化偶联涉及初始酸诱导的脱硼化反应,释放出活性催化剂的二氯苯硼酸。

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