首页> 外文期刊>European journal of inorganic chemistry >Vanadium Complexes Derived from Acetyl Pyrazolone and Hydrazides: Structure, Reactivity, Peroxidase Mimicry and Efficient Catalytic Activity for the Oxidation of 1-Phenylethanol
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Vanadium Complexes Derived from Acetyl Pyrazolone and Hydrazides: Structure, Reactivity, Peroxidase Mimicry and Efficient Catalytic Activity for the Oxidation of 1-Phenylethanol

机译:衍生自乙酰基吡唑啉酮和酰肼的钒配合物:结构,反应性,过氧化物酶模拟和1-苯乙醇氧化的高效催化活性

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摘要

Schiff bases obtained from the condensation of acetylpyrazolone (H(2)ap) with benzoyl hydrazide (bhz), furoyl hydrazide (fah), nicotinoyl hydrazide (nah) and isonicotinoyl hydrazide (inh) [H(2)ap-bhz (I), H(2)ap-fah (II) H(2)ap-nah, (III) and H(2)ap-inh (IV)], sharing a ONO donor set, upon reaction with [VIVO(acac)(2)] lead to the formation of [VIVO(ap-bhz)(H2O)] (1), [VIVO(apfah)(H2O)] (2), [VIVO(ap-nah)(H2O)] (3) and [VIVO(ap-inh)(H2O)] (4), respectively. These complexes slowly convert to monooxidovanadium(V) complexes [VVO(ap-bhz)(OMe)(MeOH)] (11), [VVO(ap-fah)(OMe)(MeOH)] (12), [VVO(ap-nah)(OMe)(MeOH)] (13) and [VVO(ap-inh)(OMe)(MeOH)] (14) in methanol. The reaction of aqueous K[H2VVO4] with the corresponding potassium salt of the ligands at neutral pH gives dioxidovanadium(V) complexes, K(H2O)[VVO2(ap-bhz)] (5), K(H2O) 0.5[VVO2(ap-fah)] (6), [VVO2(Hap-nah)] (9) and [VVO2(Hap-nah)] (10). Acidification of solutions of 5 and 6 affords the neutral complexes [VVO2(Hap-bhz)] (7) and [VVO2(Hap-fah)] (8), respectively. All complexes were characterized by various spectroscopic techniques: FT-IR, UV/Visible, EPR, NMR (H-1, C-13 and V-51); elemental analysis, thermal studies, cyclic voltammetry (CV) and single-crystal X-ray analysis. X-ray diffraction studies of complexes 6, 7, 9-12 confirm the ligand's coordination to the metal centre through enolic oxygen (of pyrazolone), azomethine nitrogen and enolic oxygen (hydrazide) atoms. The reactivity of the complexes and their catalytic potential was screened towards their peroxidase mimetic activity in the oxidation of pyragallol in aqueous media with H2O2 as oxidant, showing high activity under mild conditions. They were also tested in the catalytic oxidation of 1-phenylethanol with H2O2 that yields acetophenone as main product. Parameters such as catalyst and oxidant amount, time, temperature, and solvent effects were optimised for maximum oxidation of 1-phenylethanol. The complexes show excellent catalytic activity towards oxidation of 1-phenylethanol being structural and functional models of the vanadate-dependent haloperoxidases.
机译:从乙酰吡唑啉酮(H(2)ap)与苯甲酰肼(bhz),呋喃酰肼(fah),烟酰酰肼(nah)和异烟酰酰肼(inh)缩合获得的席夫碱[H(2)ap-bhz(I) ,H(2)ap-fah(II),H(2)ap-nah,(III)和H(2)ap-inh(IV)],与[VIVO(acac)( 2)]形成[VIVO(ap-bhz)(H2O)](1),[VIVO(apfah)(H2O)](2),[VIVO(ap-nah)(H2O)](3)和[VIVO(ap-inh)(H2O)](4)。这些络合物缓慢转化为单氧化钒络合物[VVO(ap-bhz)(OMe)(MeOH)](11),[VVO(ap-fah)(OMe)(MeOH)](12),[VVO(ap -nah)(OMe)(MeOH)](13)和[VVO(ap-inh)(OMe)(MeOH)](14)在甲醇中的溶液。 K [H2VVO4]水溶液与相应配体的钾盐在中性pH下的反应生成二氧化钒(V)络合物,K(H2O)[VVO2(ap-bhz)](5),K(H2O)0.5 [VVO2( ap-fah)](6),[VVO2(Hap-nah)](9)和[VVO2(Hap-nah)](10)。酸化5和6的溶液分别得到中性络合物[VVO2(Hap-bhz)](7)和[VVO2(Hap-fah)](8)。所有配合物均通过多种光谱技术表征:FT-IR,UV / Visible,EPR,NMR(H-1,C-13和V-51);元素分析,热学,循环伏安法(CV)和单晶X射线分析。配合物6、7、9-12的X射线衍射研究证实了配体通过(吡唑啉酮的)烯醇氧,偶氮甲碱氮和烯醇氧(酰肼)原子与金属中心的配位。筛选了配合物的反应性及其催化潜力,以过氧化物酶模拟活性在以H 2 O 2为氧化剂的水介质中吡喃酚的氧化中显示出在温和条件下的高活性。还对它们进行了用H2O2催化氧化1-苯乙醇的反应测试,生成的苯乙酮为主要产物。优化了催化剂和氧化剂用量,时间,温度和溶剂效果等参数,以最大程度地氧化1-苯基乙醇。该络合物显示出对1-苯基乙醇氧化的优异催化活性,这是钒酸盐依赖性卤代过氧化物酶的结构和功能模型。

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