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1.
合成和表征了氯化双(呋喃甲醛)缩邻苯二胺合钴(II)(1)、氯化双(呋 喃甲醛)缩乙二胺合钴(II)(2)、氯化双(呋喃甲醛)缩1,2-丙二胺合钴( II)(3)和氯化双(呋喃甲醛)缩1,3-丙二胺合钴(II)(4)。在吡啶溶液中 和不同温度下,测定了配合物的饱和吸氧量,求出了氧加合常数和热力学参数ΔH °,ΔS°。并以这些配合物为催化剂,活化分子氧氧化环已烯得到高选择性的烯 丙位氧化产物。讨论了温度、配体结构对配合物氧合性能的影响和配体结构以及添 加NHPI(N-羟基邻苯二甲酰亚胺)对环已烯氧化反应的影响。  相似文献   

2.
本文合成了六种呋喃甲醛碱锰金属配合物-双(呋喃甲醛)缩邻苯二胺合锰(Ⅱ)(1),双(呋喃甲醛)缩乙二胺合锰(Ⅱ)(2),双(呋喃甲醛)缩1,3-丙二胺合锰(Ⅱ)(3),双(呋喃甲醛)缩1,2-环己二胺合锰(Ⅱ)(4),双(呋喃甲醛)缩1,2-丙二胺合锰(Ⅱ)(4),双(呋喃甲醛)缩二乙烯三胺合锰(Ⅱ)(6),并用元素分析,红外光谱和核磁共振谱加以表征,以这些配合物作为仿加氧酶的模型化合物催化环氧化苯乙烯,环己烯,2-辛烯,并讨论了配体结构,底物结构对催化环氧化的影响。  相似文献   

3.
由乙二胺四乙酸二酐和多缩乙二醇出发,合成了一系列具有N-支套索冠醚结构的二异羟肟酸配体(L1H2~L4H2)及其钴(II)配合物(Co L1~Co L4),以IR,1H NMR,MS和元素分析进行结构表征。测定在不同温度下Co L1~Co L4的氧加合常数In KO2和热力学参数ΔH0、ΔS0,研究了氮杂冠醚环的大小对配合物氧加合性能的影响。  相似文献   

4.
聚合物键合Cu(Salen)的合成及其催化作用   总被引:1,自引:0,他引:1  
蔡哲斌  李翔等 《分子催化》2001,15(5):391-393
一些简单的无机配合物已经广泛地用作氧载体和氧化催化剂,其中研究较多的是过渡金属卟啉和席夫碱(Schiff base)-过渡金属配合物。其中,席夫碱-过渡金属配合物的合成简单、易于控制配体的电子与立体因素,因而其催化性能的调变更具有灵活性,其分子氧体系已用于烯烃的环氧化和醇类的氧化,卟啉钴配合物-分子氧体系对硫醇的催化氧化研究已报道,其于席夫碱-金属配合物具有结合分子氧的特性和催经作用,以及高分子配合物催化剂的特点,我们合成了聚合物键合双水扬醛缩乙二胺合铜(Ⅱ),并将其用于催化分子氧氧化丙硫醇转化成二硫化物。  相似文献   

5.
合成了单S chiff碱配体水杨醛缩邻甲苯胺(^1L)、5-溴水杨醛缩对氯苯胺(^2L)、5-溴水杨醛缩对甲苯胺(3^L)、水杨醛缩对硝基苯胺(^4L)、水杨醛缩对甲苯胺(^5L)、水杨醛缩对氯苯胺(^6L)及其钴、锰配合物,并用MS、^3HNMR、IR以及元素分析等测试技术予以表征,以钴配合物为催化剂活化分子氧氧化环巳烯,高选择性地得到烯丙位的氧化产物;以锰配合物为催化剂、NaOcl为氧化剂催化苯乙烯的环氧化,主要产物为苯乙烯环氧化物。  相似文献   

6.
本文合成了N,N’-双(2’-羟基苯乙酮)缩乙二胺、N,N’-双(2’-羟基苯乙酮)缩1,2-丙二胺、N,N’-双(2’-羟基苯乙酮)缩1,3-丙二胺和N,N’-双(2’-羟基苯乙酮)缩邻苯二胺四种Schiff配体以及它们的锰(Ⅲ)配合物1,2,3和4。并考察了这四种锰(Ⅲ)配合物作为催化剂,催化以NaOCl为氧源环氧化苯乙烯和环己烯的反应的性能。同时考察了反应温度、助配体、NaOCl的浓度以及pH值对催化环氧化反应的影响。  相似文献   

7.
本文合成了N,N'-双(2'-羟基苯乙酮)缩乙二胺、N,N'-双(2'-羟基苯乙酮)缩1,2-丙二胺、N,N'-双(2'-羟基苯乙酮)缩1,3-丙二胺和N,N'-双(2'-羟基苯乙酮)缩邻苯二胺四种Schiff配体以及它们的锰(Ⅲ)配合物1,2,3和4.并考察了这四种锰(Ⅲ)配合物作为催化剂,催化以NaOCl为氧源环氧化苯乙烯和环己烯的反应的性能.同对考察了反应温度、助配体、NaOCl的浓度以及pH值对催化环氧化反应的影响.  相似文献   

8.
冠醚化单和双Schiff碱的合成及其钴(II)配合物的氧加合性能   总被引:13,自引:0,他引:13  
由苯并-15-冠-5经硝化、还原和缩合反应,制备了4'-(2-羟基苯亚甲基亚氨基)苯并-15-冠-5(L^1H)和4',5'-双(2-羟基苯亚甲基亚氨基)苯并-15-冠-5(L^4H~2)以及它们的取代衍生物L^2H和L^5H~2。在不同温度和不同轴配体存在下,测定了它们的钴(II)配合物的氧合常数和ΔHⅲ,ΔSⅲ,并与未冠醚化的类似物CoL~2^3和CoL^6比较,讨论了配体结构和轴配体碱性对配合物的氧分子加合性能的影响。  相似文献   

9.
由苯并-15-冠-5经硝化、还原和缩合反应,制备了4'-(2-羟基苯亚甲基亚氨基)苯并-15-冠-5(L^1H)和4',5'-双(2-羟基苯亚甲基亚氨基)苯并-15-冠-5(L^4H~2)以及它们的取代衍生物L^2H和L^5H~2。在不同温度和不同轴配体存在下,测定了它们的钴(II)配合物的氧合常数和ΔHⅲ,ΔSⅲ,并与未冠醚化的类似物CoL~2^3和CoL^6比较,讨论了配体结构和轴配体碱性对配合物的氧分子加合性能的影响。  相似文献   

10.
孙斌  陈骏如  胡家元  李贤均 《化学学报》2001,59(9):1418-1423
合成和表征了三个新的冠醚化双西佛碱4',5'-双(2-羟基苯亚甲基亚氨基)苯并-12-冠-4(L^1H2),4',5'-双(5-氯-2-羟基苯亚甲基亚氨基)苯并-12-冠-4(L^1H2)和4',5'-双(5-溴-2-羟基苯亚甲基亚氨基)苯并-12-冠-4(L^3H2)以及它们的钴配合物。在吡啶溶液中和不同温度下,测定了配合物的饱和吸氧量,求出了它们的氧加合常数和热力学参数△H°,△S°,并以这些配合物为催化剂,活化分子氧氧化环已烯制备环已烯酮,通过与未冠醚化的类似物作比较,讨论了冠醚环的引入对配合物与氧分子加合性能以及催化氧化性能的影响。  相似文献   

11.
As mimetic oxygen carrier or oxidation catalyst, Schiff base cobalt complexes such as Co (II) salen have been widely studied1-4. However their high-price greatly limited their application. The synthesis of cheap furaldehyde Schiff bases and their complexes with Co (II), as well as the dioxygen affinity and biomimetic catalytic oxidation performance of these complexes are worth trying to study. In this paper, the saturated dioxygen uptake of cobalt complexes with different bis-(furaldehyd…  相似文献   

12.
锰(Ⅱ)呋喃甲醛Schiff碱催化苯乙烯环氧化的研究   总被引:1,自引:0,他引:1  
自1979年Groves首先以金属卟啉模拟细胞色素P-450,实现烯烃的环氧化^[1]以来,仿单加氧酶催化环氧化烯烃就成为仿酶催化领域里的一个非常活跃的研究课题^[2-5],但在这些报道中所用的模型化合物均为金属卟啉及其衍生物或Mn-Salen及其衍生物,这些化合物高昂的价格极大地限制了其应用前景。呋喃甲醛(俗称糠醛)取之于米糠或玉米芯,价格便宜且非石化产品,用它取代水杨醛不仅可降低成本,而且符合绿色化学要求。为此,本文选取了五种锰呋喃甲醛Schiff碱配合物作为模型化合物,以NaOCI为氧化剂,催化苯乙烯环氧化。讨论了配体结构、氧化物的pH值、轴配体、反应时间对催化环氧化反应的影响。  相似文献   

13.
Synthetic routes to a series of new (salen-1)CoX (salen-1 = N,N'-bis(salicylidene)-1,2-diaminoalkane; X = halide or carboxylate) species are described and the X-ray crystal structures of two (salen-1)CoX (salen- = N,N'-bis(3,5-di-tert-butylsalicylidene)-1,2-diaminocyclohexane; X = Cl, I) complexes are presented. (R,R)-(salen-)CoX (X = Cl, Br, I, OAc, pentafluorobenzoate (OBzF(5))) catalysts are active for the copolymerization of cyclohexene oxide (CHO) and CO(2), yielding syndiotactic poly(cyclohexene carbonate) (PCHC), a previously unreported PCHC microstructure. Variation of the salen ligand and reaction conditions, as well as the inclusion of [PPN]Cl ([PPN]Cl = bis(triphenylphosphine)iminium chloride) cocatalysts, has dramatic effects on the polymerization rate and the resultant PCHC tacticity. Catalysts rac-(salen-)CoX (salen- = N,N'-bis(3,5-di-tert-butylsalicylidene)-1,2-diaminopropane; X = Br, OBzF(5)) have high activities for CHO/CO(2) copolymerization, yielding syndiotactic PCHCs with up to 81% r-centered tetrads. Using Bernoullian statistical methods, PCHC tetrad and triad sequences were assigned in the (13)C NMR spectra of these polymers in the carbonyl and methylene regions, respectively.  相似文献   

14.
The neutral and one-electron oxidized group 10 metal, Ni(II), Pd(II) and Pt(II), six-membered chelate Salpn (Salpn = N,N'-bis(3,5-di-tert-butylsalicylidene)-1,3-propanediamine) complexes have been investigated and compared to the five-membered chelate Salen (N,N'-bis(3,5-di-tert-butylsalicylidene)-1,2-ethanediamine) and Salcn (N,N'-bis(3,5-di-tert-butylsalicylidene)-1,2-cyclohexane-(1R,2R)-diamine) complexes. Reaction of the Salpn complexes with 1 equivalent of AgSbF(6) affords the oxidized complexes which exist as ligand radical species in solution and in the solid state. The solid state structures of the oxidized complexes have been determined by X-ray crystal structure analysis. While the Ni and Pt analogues exhibit an essentially symmetric coordination sphere contraction upon oxidation, the oxidized Pd derivative exhibits an asymmetric metal binding environment demonstrating at least partial ligand radical localization. In comparison to the oxidized Salen and Salcn complexes, the propyl backbone of the Salpn complexes leads to a larger deviation from a planar geometry in the solid state. The electronic structure of the oxidized Salpn complexes was further probed by UV-vis-NIR measurements, electrochemistry, EPR spectroscopy, and theoretical calculations. The intense NIR band for the one-electron oxidized Salpn complexes shifts to lower energy in comparison to the 5-membered chelate analogues, which is attributed to lower metal d(xz) character in the β-LUMO for the Salpn series. The reactivity of the one-electron oxidized Salpn complexes with exogenous ligands was also studied. In the presence of pyridine, the oxidized Ni analogue exhibits a shift in the locus of oxidation to a Ni(III) species. The oxidized PtSalpn complex rapidly decomposes in the presence of pyridine, even at low temperature. Interestingly, electronic and EPR spectroscopy suggests that the addition of pyridine to the oxidized Pd analogue results in initial dissociation of the phenoxyl radical ligand, likely due to the increased flexibility of the propyl backbone.  相似文献   

15.
The electrochemical behaviour of a series of iron(II) complexes with the tetradentate ligand NN′-1,2-phenylenebis(salicylideneimine), [Fe(II)L], was studied in non-aqueous solvents. The redox properties of the complexes were related to the nature of the substituents in the aromatic rings. Attention was devoted to dioxygen reactivity of the complexes. The electrode activity of the catechol—[NN′-1,2-phenylenebis(salicylidene-iminato) iron(III)] system, [Fe(III)L(catH)], was also studied; the results gave evidence that both the electrochemical oxidation and the chemical oxidation by dioxygen of [Fe(II)L] in the presence of catechol lead to the complex [Fe(III)L(catH)].  相似文献   

16.
1,2-Benzylidenedioxy-7-(2-hydroxybenzylideneamino)-4-azaheptane was synthesized by reaction of 1,2-benzylidenedioxy-3-chloropropane with 1,3-diaminopropane and subsequent condensation of 1,2-benzylidenedioxy-7-amino-4-azaheptane with salicylaldehyde. Complexes of 1,2-benzylidenedioxy-7-(2-hydroxybenzylideneamino)-4-azaheptane with cobalt(II), nickel(II), and copper(II) salts were obtained. The structure of the ligand and its complexes was established on the basis of their elemental compositions, IR, UV, and 1H NMR spectra, magnetic susceptibilities, and thermogravimetric data.  相似文献   

17.
The dioxygen affinities and catalytic oxidation performance of cobalt (II) complexes with N-phenylhydroxamic acids were investigated. The effects of substituting groups in aromatic ring of ligands on these properties were examined, and some relativity between the dioxygen affinities and catalytic oxidation activity were also discussed in this paper. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

18.
Two Mn(II) complexes are isolated and X-ray characterized, namely, cis-[(L(2))Mn(II)(Cl)(2)] (1) and [(L(3))Mn(II)Cl(OH(2))](ClO(4)) (2(ClO(4))), where L(2) and L(3) are the well-known tetradentate N,N'-dimethyl-N,N'-bis(2-pyridylmethyl)ethane-1,2-diamine and N,N'-dimethyl-N,N'-bis(2-pyridylmethyl)propane-1,3-diamine ligands, respectively. The crystal structure reveals that whereas the ligand L(2) is in the cis-alpha conformation in complex 1, the ligand L(3) is in the more unusual cis-beta conformation in 2. EPR spectra are recorded on frozen solutions for both complexes and are characteristic of Mn(II) species. Electrochemical behaviors are investigated on acetonitrile solution for both complexes and show that cation 2 exists as closely related Mn(II) species in equilibrium. For both complexes exhaustive bulk electrolyses of acetonitrile solution are performed at oxidative potential in various experimental conditions. In the presence of 2,6-lutidine and after elimination of chloride ligands, the formation of the di-mu-oxo mixed-valent complexes [(L(2))Mn(III)(mu-O)(2)Mn(IV)(L(2))](3+) (3a) and [(L(3))Mn(III)(mu-O)(2)Mn(IV)(L(3))](3+) (4) is confirmed by UV-vis and EPR spectroscopies and cyclic voltammetry. In addition crystals of 4(ClO(4))(3) were isolated, and the X-ray structure reveals the cis-alphaconformation of L(3). In the absence of 2,6-lutidine and without elimination of the exogenous chloride ions, the electrochemical oxidation of 1 leads to the formation of the mononuclear Mn(III) complex, namely, [(L(2))Mn(III)(Cl)(2)](+) (5), as confirmed by UV-vis as well as parallel mode EPR spectroscopy and cyclic voltammetry. In the same conditions, the electrochemical oxidation of complex 2 is more intricate, and a thorough analysis of EPR spectra establishes the formation of the binuclear mono-mu-oxo mixed-valent [(L(3))ClMn(III)(mu-O)Mn(IV)Cl(L(3))](3+) (6) complexes. Electrochemical conversion of Mn(II) complexes into mixed-valent Mn(2)(III,IV) oxo-bridged complexes in the presence of 2,6-lutidine is discussed. The role of the chloride ligands as well as that of L(3) in the building of oxo bridges is discussed. Differences in behavior between L(2) and L(3) are commented on.  相似文献   

19.
A 3,5-di-tert-butyl-1,2-semiquinonato (DTBSQ) adduct of Mn(II) was prepared by a reaction between Mn(II)(TPA)Cl(2) (TPA = tris(pyridin-2-ylmethyl)amine) and DTBSQ anion and was isolated as a tetraphenylborate salt. The X-ray crystal structure revealed that the complex is formulated as a manganese(II)-semiquinonate complex [Mn(II)(TPA)(DTBSQ)](+) (1). The electronic spectra in solution also indicated the semiquinonate coordination to Mn. The exposure of 1 in acetonitrile to dioxygen afforded 3,5-di-tert-butyl-1,2-benzoquione and a bis(mu-oxo)dimanganese(III,III) complex [Mn(III)(2)(mu-oxo)(2)(TPA)(2)](2+) (2). The reaction of 2 with 3,5-di-tert-butylcatechol (DTBCH(2)) quantitatively afforded two equivalents of 1 under anaerobic conditions. The highly efficient catalytic oxidation of DTBCH(2) with dioxygen was achieved by combining the above two reactions, that is, by constructing a catalytic cycle involving both manganese complexes 1 and 2. It was revealed that dioxygen is reduced to water but not to hydrogen peroxide in the catalytic cycle.  相似文献   

20.
It is known that the rates and stereochemical outcomes of epoxidations and cyclopropanations using a metallosalen (salenH(2): N,N'-bis(salicylidene)ethylene-1,2-diamine) complex as catalyst are affected by a trans effect of the apical ligand of the complex. By taking into consideration this trans effect, we have synthesized optically active pentadentate salen ligands bearing an imidazole or pyridine derivative as the fifth coordinating group, and have prepared the corresponding manganese(III) and cobalt(II) complexes, in which the fifth ligand is expected to intramolecularly coordinate to the metal center and exert a trans effect. Indeed, high enantioselectivity has been achieved in epoxidations using aqueous hydrogen peroxide as the terminal oxidant and in cyclopropanations with these complexes as catalysts. In general, metallosalen-catalyzed reactions have been carried out in the presence of an excess of a donor ligand; however, the present reactions do not need the addition of any extra donor ligand.  相似文献   

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