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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Palladium catalyzed Suzuki C-C couplings in an ionic liquid: nanoparticles responsible for the catalytic activity
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Palladium catalyzed Suzuki C-C couplings in an ionic liquid: nanoparticles responsible for the catalytic activity

机译:离子液体中钯催化的Suzuki C-C偶联:负责催化活性的纳米颗粒

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A new family of functionalized ligands derived from norborn-5-ene-2,3-dicarboxylic anhydride has been used in Suzuki C-C cross-couplings between aryl boronic acids and aryl bromide derivatives in [BMI][PF6] (BMI =1-n-butyl-3-methyl-imidazolium), using palladium acetate as catalytic precursor. High conversions and yields are obtained when amine ligands containing hydroxy groups are involved. TEM analyses after catalysis show the formation of small nanoparticles, in contrast to the agglomerates observed when nanoparticles are intentionally preformed, with a consequent decrease in the catalytic activity in the latter case. Some tests, including the correlation effect between solvent and ligand, are carried out to try to identify the true nature of the catalyst. All the results obtained suggest that formation of nanoparticles is required to lead to a catalytically active system.
机译:Suzuki CC在[BMI] [PF6]中的芳基硼酸和芳基溴化物衍生物之间的交叉偶联中使用了新的衍生自降冰片5烯-2,3-二羧酸酐的官能化配体的新家族(BMI = 1-n -丁基-3-甲基-咪唑鎓),使用乙酸钯作为催化前体。当涉及含有羟基的胺配体时,获得高转化率和产率。催化后的TEM分析表明,形成了小的纳米颗粒,这与有意预形成纳米颗粒时所观察到的团聚体相反,在后一种情况下,催化活性因此而降低。进行了一些测试,包括溶剂和配体之间的相关效应,以试图确定催化剂的真实性质。所有获得的结果表明,需要形成纳米颗粒才能形成催化活性体系。

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