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1.
异双Schiff碱及其稀土配合物的合成、机理与波谱   总被引:6,自引:0,他引:6  
姚克敏  周文  鲁桂  沈联芳 《化学学报》2000,58(10):1275-1279
利用2,6-二氨基己酸(赖氨酸)具有两端不对称结构的-NH~2基,合成了一端与水杨醛,另一端与2,4-二羟基苯甲醛缩合形成空间结构不对称的异双Schiff碱及其与稀土元素配合物。以元素分析、热分析、摩尔电导、红外光谱、EPR以及^1HNMR,^1^3C-^1HCOSY谱、固体高分辨^1^3C谱等表征,研究了这类不对称Schiff碱的形成机理和配位方式。  相似文献   

2.
合成表征了32个标题化合物ROCOCHR^1CH~2SnCl~3.(2-HOC~6H~4CH==NC~6H~4-X)(R=Me,Et,n-Bu;R^1=H,Me;X=H,4'-Cl,3'-Br,3'-OH,3',4'-Cl~2,4'-OMe),通过元素分析,UV-vis,IR和^1HNMR进行了表征.n-BuOCOCH~2CH~2SnCl~3.(2-HOC~6H~4CH==NC~6H~4OMe-4')的晶体结构分析表,该晶体属单斜晶系,a=1.4661(3)nm,b=0.9307(2)nm,c=1.7888(4)nm,β=94.04(3)^o;v=2.4348nm^3,z=4;空间群P2~1/c.该化合物为含有分子内羰基氧配位,Schiff碱以酚羟基上的氧原子配位,中心锡原子为六配位,空间构型为畸变八面体构型的单分子有机锡化合物。  相似文献   

3.
姚克敏  周文  鲁桂  沈联芳 《化学学报》2000,58(10):1275-1279
利用2,6-二氨基己酸(赖氨酸)具有两端不对称结构的-NH~2基,合成了一端与水杨醛,另一端与2,4-二羟基苯甲醛缩合形成空间结构不对称的异双Schiff碱及其与稀土元素配合物。以元素分析、热分析、摩尔电导、红外光谱、EPR以及^1HNMR,^1^3C-^1HCOSY谱、固体高分辨^1^3C谱等表征,研究了这类不对称Schiff碱的形成机理和配位方式。  相似文献   

4.
新型3-取代-6-芳偶氮香豆素化合物的合成及结构表征   总被引:8,自引:0,他引:8  
合成了一系列新型偶氮香豆素化合物,通过^1H NMR,IR,MS和元素分析对其结 构进行了确认,同时用X射线单晶衍射测定了化合物2a的晶体结构,其特殊的双功 能分子键连,偶氮基的顺反异构和苯环与香豆素环平面间的扭转平角,使之可能成 为有效的分子器件材料。  相似文献   

5.
含N,O和S的Schiff碱配体的双核锌配合物的合成与晶体结构   总被引:7,自引:0,他引:7  
本文合成了具有隔室构造的Schiff碱配体H3L(L^3^-=C11H11N6OS2^3^-), 并对其进行了元素分析, IR, ^1H NMR和MS等项表征。制备了该配体的分别由醋酸根和吡啶分子协配的两种锌的双核配合物, 对后者进行了X射线单晶结构分析。[Zn2L(OH)(py)2](py)2, P21/c, a=0.9195(1), b=2.3334(6), c=1.6111(3)nm,β=93.99(1)°, Z=4。结构用直接法解得, 最终的R=0.066。测定的结果表明,两锌原子间存在酚氧和羟基的两μ2-O-桥, 每个五配位的锌均具有四方锥型的配位构型。  相似文献   

6.
合成了13个标题化合物ROCOCH2CH2SnCl3.L (R=C1-5烷基;L=DBSO, HMPA), 通过元素分析、IR和1H NMR进行了表征。n-PrOCOCH2CH2SnCl3.DBSO的晶体结构分析表明, 该晶体属正交晶系; 空间群P212121; a=1.062, b=1.427, c=1.635; Z=4。该化合物为含有分子内羰基配位和Lewis碱配位的具有畸变八面体构型的单分子有机锡化合物。研究了CH3OCOCH2CH2SnCl3.L和醇的酯交换反应, 提出了分子内Lewis酸催化的反应机理。  相似文献   

7.
通过对苯二甲酰双环戊二烯基三羰基钼(钨)负离子与有机锡的反应,合成了 一系列的对苯二甲酰双环戊二烯基锡钼(钨)异多核金属配合物,并用IR,~1H NMR和元素分析对其进行了表征。结果表明,环戊二烯上的拉电子取代基极大地减 弱金属负离子的亲核性,对苯二甲酰双环戊二烯基三羰基钼(钨)负离子与 R_2SnCl_2(R = Ph, Me, Et)反应时,仅有一个氯原子被金属负离子所取代。用X射 线单晶衍射测定了化合物{p-[(Ph_3Sn)(CO)_3MoC_5H_4-C(O)]_2C_6H_4}的晶体结 构。该晶体为单斜晶系,空间群为C2/c,晶胞参数为:a = 3.4209(10) nm, b = 1.1329(3) nm, c = 1.4214(4) nm, β = 104.466(5) °, V = 5.334(3) nm~3, Z = 4, R = 0.033。两个SnMo结构单元处于桥连苯基的反位。  相似文献   

8.
Schiff碱与锰(Ⅲ)的单核和双核配合物的合成与结构   总被引:2,自引:0,他引:2  
本文报道合成了以水杨醛及邻香草醛缩丙醇胺Schiff碱与锰(Ⅲ)的六个新型配合物,其中[Mn2(salpa)2(PhCOO)2]·2CH2Cl2,[Mn2(vanpa)2(PhCOO)2]·2CHCl3,[Mn2(vanpa)2(ClCH2COO  相似文献   

9.
通过对苯二甲酰双环戊二烯基三羰基钼(钨)负离子与有机锡的反应,合成了 一系列的对苯二甲酰双环戊二烯基锡钼(钨)异多核金属配合物,并用IR,~1H NMR和元素分析对其进行了表征。结果表明,环戊二烯上的拉电子取代基极大地减 弱金属负离子的亲核性,对苯二甲酰双环戊二烯基三羰基钼(钨)负离子与 R_2SnCl_2(R = Ph, Me, Et)反应时,仅有一个氯原子被金属负离子所取代。用X射 线单晶衍射测定了化合物{p-[(Ph_3Sn)(CO)_3MoC_5H_4-C(O)]_2C_6H_4}的晶体结 构。该晶体为单斜晶系,空间群为C2/c,晶胞参数为:a = 3.4209(10) nm, b = 1.1329(3) nm, c = 1.4214(4) nm, β = 104.466(5) °, V = 5.334(3) nm~3, Z = 4, R = 0.033。两个SnMo结构单元处于桥连苯基的反位。  相似文献   

10.
大取代茂钼化合物的合成与结构分析   总被引:1,自引:0,他引:1  
利用芳基锂与6,6-二烷基富烯发生加成反应,制得大取代环戊二烯基负离子.用六羰基钼配位,合成出13个钼-钼双核及5个钼-卤素单核羰基化合物.研究了其IR、^1HNMR、^95MoNMR.测定了[(CH~3)~2C(m-CH~3C~6H~4]Mo(CO)~3Br(1)的晶体结构.该晶体属于单余晶系,晶胞参数为a=1.175(3),b=1.4196(2),c=1.1894(4)nm,β=118.03(2)°,Ⅴ=1.75134nm^3.Z=4,D~0=1.733g/cm^3,F(000)=904,μ=30.0cm^-1,R=0.039,R~W=0.050,空间群为P2~1/α.  相似文献   

11.
1 INTRODUCTION The insulin-mimetic property of vanadium complexes is the most noteworthy finding and the relationship between vanadium and diabetes mellitus has been extensively studied in the past decades[1~5]. Vanadium complexes are capable of increa…  相似文献   

12.
1 INTRODUCTION Schiff base ligands have been studied for a longtime due to the instant and enduring popularity fromtheir easy synthesis and versatility complexes. Theyplay an important role in the development of coor-dination chemistry as well as inorganic biochemistry,catalysis, optical materials and so on[1, . Consider- 2]able attention has been focused on the syntheses andstructures of copper(II) and nickle(II) complexes.The nickel complexes with multidentate Schiff baseligands have …  相似文献   

13.
A Schiff base ligand 1‐salicylideneamino‐1,3,4‐triazole (L) was prepared. Two new complexes with Schiff base, [Zn(L)2(SCN)2] ( 1 ) and [Co2(L)5(SCN)4]·H2O ( 2 ) have been synthesized and structurally characterized. Complex 1 takes a mononuclear zinc structure and the coordination geometry of zinc atom exhibits a distorted tetrahedron, in which a zig‐zag chain is constructed through hydrogen bonding interactions. A 2D supramolecular network is formed through Π‐Π stacking between triazole planes and phenyl planes of adjacent chains, and a 3D supramolecular network is further constructed by these non‐covalent Π‐Π stacking interactions between the triazole planes of neighboring layers. Complex 2 takes a dinuclear structure with the bidentate‐bridging Schiff base ligands, and cobalt site exhibits a distorted octahedron. The lattice water molecules and neutral complex 2 units form a dimer with hydrogen bonding interactions. In addition, IR and thermal gravimetric analysis are presented.  相似文献   

14.
Two new zinc(II) complexes, [Zn2L2Cl4]·2[ZnL(CH3OH)Cl2] 1 and [ZnL2(NO3)2] 2, were synthesized by reacting ZnX2·nH2O (X = Cl-, NO3-) and a Schiff base ligand 2-[(4-me- thylphenylimino)methyl]-6-methoxyphenol (C15H15NO2, L) which was obtained by the condensation of o-vanillin (2-hydroxy-3-methoxybenzaldehyde) with p-toluidine. Both 1 and 2 were characterized by single-crystal X-ray diffraction technique, elemental analysis, molar conductance, FT-IR, UV-Vis, 1H-NMR spectra and thermogravimetric analysis. The Schiff base ligand and its zinc(II) complexes have been tested in vitro to evaluate their antibacterial activity against bacteria, viz., Escherichia Coli, Staphylococcus aureus and Bacillus Subtilis. The results show that these complexes have higher activity than the corresponding free Schiff base ligand against the same bacteria.  相似文献   

15.
1 INTRODUCTION The chemical behavior of metal complexes with Schiff base ligand has attracted much attention be- cause of their catalytic activity in some industrial[1, 2] and biochemical processes[3~5]. As some metal com- plexes have shown the catalytic activity in some polymerization reactions[2, 6], we are recently inte- rested in polymerizartion of organo-silicon com- pounds catalyzed by Schiff base complexes of tran- sition metals. A series of Schiff base complexes have been prepare…  相似文献   

16.
合成了2个含三齿Schiff碱配体和单齿N-杂环分子的多核过渡金属配合物:1个含5-氯水杨醛缩对硝基苯甲酰腙(H2L1)和吗啡啉(Mf)的镍髤配合物[Ni(L1)(Mf)](1),1个含5-氯水杨醛缩水杨酰腙(H2L2)和吡啶(Py)的铜髤配合物[Cu2(L2)2(Py)2](2),并通过元素分析、红外光谱、紫外光谱以及单晶衍射等手段进行表征。在配合物1中,中心Ni髤与酰腙配体(L12-)的酚氧、亚胺氮、去质子酰胺氧原子以及中性吗啡啉氮原子配位形成平面四方形的N2O2配位构型,相邻配合物通过分子间氢键作用构筑成一维超分子链状结构。配合物2中含有2个晶体学上独立的双核铜髤配合物,相邻配合物分子的酚氧原子分别桥联2个[Cu(L2)(Py)]基本单元,形成2个含有Cu2(μ-O)2核心的配合物。每个Cu髤原子具有五配位的NONO(O)四角锥配位构型。  相似文献   

17.
解庆范  陈延民 《无机化学学报》2019,35(12):2209-2216
采用不同的方法合成了3种酰腙的锌配合物[Zn(Lss)(phen)(DMF)](1)、{[Zn(HLdis)]_2·2CH_3OH}_n(2)和[Zn(Baf)_2]·CH_3OH (3),通过元素分析、红外光谱、紫外光谱和热重分析进行了表征,并经X射线单晶衍射分析它们晶体结构。1和3的晶体属于三斜晶系P1空间群,Zn(Ⅱ)的配位数为6;2属于单斜晶系P2_1/n空间群,Zn(Ⅱ)的配位数为5。3的前驱体是一种吡唑啉类化合物(C_(15)H_(14)N_2O_3,Pzl),它的晶体属于单斜晶系P2_1/c空间群;Pzl与锌离子配位时发生分子重排,开环产物HBaf以酰腙结构与Zn(Ⅱ)配位形成3。  相似文献   

18.
Two new Schiff base complexes, [NiL]ClO4 1 and [CuL]ClO4.0.5H2O 2, were synthesized and characterized, where L is the 1:1 condensation product of salicylaldehyde and diethylenetriamine. Their crystal structures and magnetic properties were determined and investigated. The H-bonding interactions concern just in neighbor cation and anion, do not extendin to network for both 1 and 2. The temperature dependence of the magnetic susceptibilities(2-300K) showed that 1 is diamagnetism and 2 is paramagnetism with weak antiferromagnetic exchange interactions between adjacent spin carriers, no magnetic ordering taking place in these two complexes.  相似文献   

19.
1 INTRODUCTION The chemistry of copper compounds has been extensively investigated and the relationship be- tween structure and reactivity, ranging from indus- trial catalysis to biochemistry activity, is of major importance. For binuclear copper(II) complexes equa- torially bridged by pair of hydroxide[1] or alkoxide[2, 3] groups, satisfactory linear correlation is found be- tween the Cu–O–Cu bridging angle and spin coupling between the metal centers. However, for binuclear copper(I…  相似文献   

20.
合成和表征了两个2,4-二羟基苯甲醛缩甘氨酸(H3L)席夫碱配合物[Cu(Py)2(HL)] (1)和[Zn(Py)3(HL)]·2Py(Py=吡啶) (2),并通过X射线单晶衍射分析确定了其结构。配合物1通过分子间的O-H…O氢键形成了一维链状结构,配合物2通过分子间的O-H…O和C-H…O氢键形成了二维网状结构。重要的是,配合物1在醇的选择性氧化反应中显示出了良好的催化效率(转化率高达94.8%,选择性高达98.3%)。  相似文献   

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