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首页> 外文期刊>Angewandte Chemie >Generation and Applications of the Hydroxide Trihydrate Anion, [OH(OH2)(3)](-), Stabilized by a Weakly Coordinating Cation
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Generation and Applications of the Hydroxide Trihydrate Anion, [OH(OH2)(3)](-), Stabilized by a Weakly Coordinating Cation

机译:氢氧化物Trihydrate阴离子的产生和应用,[OH2)(3)]( - ),通过弱协调阳离子稳定

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摘要

The reaction of a strongly basic phosphazene (Schwesinger base) with water afforded the corresponding metastable hydroxide trihydrate [OH(OH2)(3)] salt. This is the first hydroxide solvate that is not in contact with a cation and furthermore one of rare known water-stabilized hydroxide anions. Thermolysis in vacuum results in the decomposition of the hydroxide salt and quantitative liberation of the free phosphazene base. This approach was used to synthesize the Schwesinger base from its hydrochloride salt after anion exchange in excellent yields of over 97%. This deprotonation method can also be used for the phosphazene-base-catalyzed preparation of the Ruppert-Prakash reagent Me3SiCF3 using fluoroform ( HCF3) as the trifluoromethyl building block and sodium hydroxide as the formal deprotonation agent.
机译:强碱性磷腈(Schwesinger Base)用水的反应得到了相应的氢氧化物三水合物[OH(OH2)(3)]盐。 这是第一种氢氧化物溶剂化物,其不与阳离子接触,进一步稀有已知的水稳定氢氧化氢氧化物中的一种溶剂化物。 真空热解导致氢氧化物盐的分解和自由磷腈碱的定量释放。 这种方法用于在阴离子交换后将Schwesinger基盐从其盐酸盐的优异产量超过97%。 这种去质子化方法也可用于使用含氟甲基(HCF 3)作为三氟甲基积木和氢氧化钠作为正式的去质子剂的磷腈碱催化制剂。

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