首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >beta-diketones containing a ferrocenyl group: synthesis, structural aspects, pK(a)(1), values, group electronegativities and complexation with rhodium(I)
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beta-diketones containing a ferrocenyl group: synthesis, structural aspects, pK(a)(1), values, group electronegativities and complexation with rhodium(I)

机译:含二茂铁基的β-二酮:合成,结构方面,pK(a)(1),值,基团电负性和与铑(I)的络合

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摘要

1-Ferrocenyl-4,4,4-trifluorobutane-1,3-dione (ferrocenoyltrifluoroacetone, Hfctfa, pK(a)(1) = 6.53 +/- 0.03), 4,4,4-trichloro-1-ferrocenylbutane-1,3-dione (trichloroferrocenoylacetone, Hfctca, pK(a)(1) = 7.15 +/- 0.02), 1-ferrocenylbutane-1,3-dione (ferrocenoylacetone, Hfca, pK(a)(1) = 10.01 +/- 0.02), 1-ferrocenyl-3-phenylpropane-1,3-dione (benzoylferrocenoylmethane, Hbfcm, pK(a)(1) = 10.41 +/- 0.02) and 1,3-diferrocenylpropane-1,3-dione (diferrocenoylmethane, Hdfcm, pK(a)(1) = 13.1 +/- 0.1) were prepared by Claisen condensation of acetylferrocene with an appropriate ester under the influence of sodium amide, sodium ethoxide or lithium diisopropylamide. The group electronegativity of the ferrocenyl group is 1.87 (Gordy scale) as inferred from a linear beta-diketone pK(a)(1)- group electronegativity relationship as well as from a linear methyl ester IR carbonyl stretching frequency-group electronegativity relationship. Complexes [Rh(beta-diketone)(cod)] were obtained in yields approaching 80% by treating the beta-diketones with [Rh2Cl2(cod)(2)], while the copper(II) chelates form just as readily. Treatment of all [Rh(beta-diketone)(cod)] complexes with 1,10-phenanthroline (phen) and some of its derivatives resulted in substitution of the beta-diketone ligand to form [Rh(cod)(phen)](+). The uncomplexed beta-diketones are increasingly stabletowards the OH- nucleophile in the order Hdfcm (apparent most unstable) < Hfctfa < Hbfcm < Hfctca < Hfca (most stable). Asymmetric enolisation in the direction furthest from the ferrocenyl group was observed for all beta-diketones. This finding is considered to be the result of resonance driving forces rather than inductive electronic effects of substituents on the pseudo-aromatic beta-diketone core. [References: 65]
机译:1-二茂铁-4,4,4-三氟丁烷-1,3-二酮(二茂铁酰基三氟丙酮,Hfctfa,pK(a)(1)= 6.53 +/- 0.03),4,4,4-三氯-1-二茂铁丁烷-1 ,3-二酮(三氯二茂铁基丙酮,Hfctca,pK(a)(1)= 7.15 +/- 0.02),1-二茂铁基丁烷-1,3-dione(二茂铁基丙酮,Hfca,pK(a)(1)= 10.01 +/- 0.02),1-二茂铁基-3-苯基丙烷-1,3-二酮(苯甲酰基二茂铁基甲烷,Hbfcm,pK(a)(1)= 10.41 +/- 0.02)和1,3-二茂铁基丙烷-1,3-二酮(二茂铁基甲烷,在酰胺钠,乙醇钠或二异丙基氨基锂的影响下,通过乙酰二茂铁与适当的酯的克莱森缩合制备Hdfcm,pK(a)(1)= 13.1 +/- 0.1)。从线性β-二酮pK(a)(1)-基团电负性关系以及线性甲酯IR羰基拉伸频率-基团电负性关系推断,二茂铁基的基团电负性为1.87(高迪标度)。通过用[Rh2Cl2(cod)(2)]处理β-二酮,可以得到接近80%的配合物[Rh(β-二酮)(cod)],而铜(II)螯合物的形成也很容易。用1,10-菲咯啉(phen)及其某些衍生物处理所有[Rh(β-二酮)(cod)]配合物,导致β-二酮配体取代形成[Rh(cod)(phen)]( +)。未复合的β-二酮对OH-亲核试剂的稳定程度依次为Hdfcm(表观最不稳定)

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