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1.
以间苯二甲酰肼、取代水杨醛和有机锡前体化合物进行一锅溶剂热法反应,合成了5个双(取代水杨醛)间苯二甲酰腙有机锡配合物m-Ph (CONH—N=CH (o-O) PhR1)(SnR2)2: R1=Naphth,R2=Cy (1); R1=3-t-Bu,R2=n-Bu (2); R1=5-F,R2=Ph (3); R1=4-Cl,R2=Ph (4); R1=3-t-Bu,R2=Ph (5)。经元素分析、红外光谱、(1H、13C和119Sn)核磁共振谱表征,并用X射线衍射方法确证了配合物1~5的晶体分子结构。配合物1~4为三斜晶系P>1空间群,配合物5为单斜晶系P21空间群。中心锡与配位原子组成五配位畸形三角双锥构型。将水杨醛酰腙链与有机锡配位形成远离中心苯环的构型称为“反式”,将与中心苯环取向相同的构型称为“顺式”。通过C1—C2或C4—C8单键旋转,中心苯环上的2个配位链发生构型翻转。配合物1形成“反-反”式构型,配合物2形成“顺-顺”式构型,配合物345形成“顺-反”式构型。荧光研究表明,配合物具有发光性能,特别是配合物14的有机溶液具有很强的荧光性能。  相似文献   

2.
采用间苯二(取代水杨醛酰腙)(H4L)与R32SnOH溶剂热反应,或间苯二甲酰肼、3-叔丁基水杨醛和三环己基氢氧化锡一锅溶剂热法反应,合成了4个新的有机锡配合物(SnR22L(1~4),其中,H4L=m-Ph(CONH—N=CH(o-OH) PhR12;R1=NEt2,R2=Ph(1);R1=3,5-di-tert-butyl=3,5-t-2Bu,R2=Ph(2);R1=3,5-t-2Bu,R2=Cy(3);R1=3-tert-butyl=3-t-Bu,R2=Cy(4)。经元素分析、红外光谱和(1H、13C、119Sn)核磁共振谱表征,并用X射线衍射方法确证配合物1~4的结构。配体H4L的2个取代水杨醛酰腙链向内取向并与锡原子配位形成3个内向E型配合物1~3,取代水杨醛酰腙链向外取向并与锡原子配位形成外向E型配合物4。配合物124属于三斜晶系P1空间群,配合物3属于单斜晶系P21/c空间群。中心锡与配位原子构成畸形双角三锥构型。配体、配合物-三氯甲烷溶液的荧光性能表明,当具有弱荧光的配体m-Ph(CONH—N=CH(o-OH) PhNEt22(H4L1)和无荧光的配体m-Ph(CONH—N=CH(o-OH) Ph(3,5-t-2Bu))2(H4L2)分别与苯基锡、环己基锡配位后,配合物-三氯甲烷溶液发出强荧光。  相似文献   

3.
合成了2种新的N-甲基-N-苄基二硫代氨基甲酸锑[Sb(MeBnNCS23](1)和铋[Bi(MeBnNCS23](2)配合物。通过元素分析、红外光谱、1H NMR、热重对其进行表征,并用X-射线单晶衍射测定了晶体结构。配合物12均属于单斜晶系,P21/c空间群。配合物1的晶胞参数为:a=0.9551(7)nm,b=1.3575(10)nm,c=2.4681(17)nm,β=104.01(2)°,Z=4,V=3.105(4)nm3,Dc=1.520g·cm-3,F(000)=1440,μ=1.314mm-1,最终偏离因子R1=0.0339,wR2=0.0832,S=1.010;配合物2的晶胞参数为:a=1.3390(6)nm,b=0.9975(5)nm,c=2.4261(5)nm,β=98.433(7)°,Z=4,V=3.205(2)nm3,Dc=1.653g·cm-3,F(000)=1568,μ=5.912mm-1,最终偏离因子R1=0.0398,wR2=0.0864,S=1.089。在这2个配合物中,中心金属离子M(Ⅲ)与来自3个配体中的6个硫原子配位,配合物1形成6配位的畸变的八面体构型;配合物2则形成6配位的畸变的五角锥构型。在配合物2中,分子之间又通过Bi…S弱相互作用构成二聚体结构。利用琼脂扩散法测试了配合物的抑菌活性,结果表明配合物1对4种受试菌株具有较强的抑菌活性。  相似文献   

4.
合成了一对结构类似的双核铜配合物,[CuL1]21)和[CuL2]22),其中L1是双席夫碱配体N,N’-二(5-氟水杨基)-1,3-丙二胺(H2L1)的二价阴离子,L2是N,N’-二(5-氟水杨基)-1,2-乙二胺(H2L2)的二价阴离子,通过元素分析、红外光谱以及单晶X-射线衍射表征了它们的结构。配合物1以单斜晶系P21/c空间群结晶,其晶体学参数a=1.3488(1)nm,b=0.6814(1)nm,c=1.7087(1)nm,β=108.903(3)°,V=1.4857(2)nm3,Z=4,R1=0.0480,wR2=0.1141,Goof=1.115。配合物2以单斜晶系C2/c空间群结晶,其晶体学参数a=2.7568(2)nm,b=0.7036(1)nm,c=1.4547(1)nm,β=94.758(2)°,V=2.8118(5)nm3,Z=4,R1=0.0472,wR2=0.1139,Goof=1.094。X-射线分析表明2个化合物都是中心对称的双核配合物,其中Cu原子都是四方椎配位构型。通过MTT法研究了这2个配合物的抗细菌(枯草芽孢杆菌,金黄色葡萄球菌,大肠杆菌和荧光假单胞菌)和抗真菌(白假丝酵母菌和黑曲霉菌)活性。  相似文献   

5.
甲醇中氧化双[三(2-甲基-2-苯基)丙基锡]分别与DL-扁桃酸、苯乙酸反应,合成了2个三烃基锡配合物(PhCMe2CH23Sn[O2CCH(OH)Ph](1)和(PhCMe2CH23Sn(O2CCH2Ph)(2)。经IR、1H和13CNMR、元素分析和X-射线单晶衍射表征结构。12均属三斜晶系,空间群P1。配合物1晶体学参数:a=0.9711(2)nm,b=1.1766(3)nm,c=1.7008(4)nm,α=96.840(12)°,β=103.235(12)°,γ=110.725(11)°,Z=2,V=1.7260(7)nm3,Dc=1.288g·cm-3,μ(Mo)=0.773mm-1,F(000)=696,R1=0.0325,wR2=0.0873。配合物2晶体学参数:a=0.97285(9)nm,b=1.16140(11)nm,c=1.68931(16)nm,α=96.830(5)°,β=101.935(5)°,γ=110.770(4)°,Z=2,V=1.7071(3)nm3,Dc=1.271g·cm-3,μ(Mo)=0.778mm-1,F(000)=680,R1=0.0248,wR2=0.0673。12的中心锡原子均为畸变四面体构型。通过分子间C-H…O或C-H…π作用,1和2分别形成一维带状或链状结构。热重分析结果表明,12具有良好的稳定性。毒性测试的初步结果表明,配合物1、2具有较好的环境相容性,对石螺急性毒性较小。  相似文献   

6.
合成了2个新的单核双氧基钼Ⅵ配合物,其分子式通式为[MoO2L(MeOH)],其中L1和L2分别是N'-(3-溴-2-羟基苯亚甲基)-3,5-二甲氧基苯甲酰肼和N'-(5-溴-2-羟基苯亚甲基)异烟肼的二价阴离子,通过理化手段、光谱方法以及单晶X射线衍射表征了它们的结构。配合物1以单斜晶系P21/n空间群结晶,其晶体学参数a=0.848 98(3) nm,b=2.275 4(1) nm,c=1.069 82(5) nm,β=109.108(1)°,V=1.952 8(1) nm3,Z=4,R1=0.036 7,wR2=0.084 0,S=1.027。配合物2以三斜晶系P1空间群结晶,其晶体学参数a=0.655 05(9) nm,b=1.076 63(7) nm,c=1.303 3(1) nm,α=67.383(2)°,β=84.264(1)°,γ=76.195(2)°,V=0.823 9(1) nm3,Z=2,R1=0.071 3,wR2=0.151 0,S=1.004。X射线分析表明2个配合物中的Mo原子都采取八面体配位构型,配位原子分别来自酰腙配体的NO2给体基团和甲醇氧原子。催化实验表明2个配合物都是有效的烯烃氧化催化剂。  相似文献   

7.
熊航行 《无机化学学报》2016,32(9):1596-1602
合成了2个新的单核双氧基钼(Ⅳ)配合物,其分子式通式为[MoO2L(MeOH)],其中L1和L2分别是N’-(3-溴-2-羟基苯亚甲基)-3,5-二甲氧基苯甲酰肼和N’-(5-溴-2-羟基苯亚甲基)异烟肼的二价阴离子,通过理化手段、光谱方法以及单晶X射线衍射表征了它们的结构。配合物1以单斜晶系P21/n空间群结晶,其晶体学参数a=0.848 98(3)nm,b=2.275 4(1)nm,c=1.069 82(5)nm,β=109.108(1)°,V=1.952 8(1)nm3,Z=4,R1=0.036 7,wR2=0.084 0,S=1.027。配合物2以三斜晶系P1空间群结晶,其晶体学参数a=0.655 05(9)nm,b=1.076 63(7)nm,c=1.303 3(1)nm,α=67.383(2)°,β=84.264(1)°,γ=76.195(2)°,V=0.823 9(1)nm3,Z=2,R1=0.071 3,wR2=0.151 0,S=1.004。X射线分析表明2个配合物中的Mo原子都采取八面体配位构型,配位原子分别来自酰腙配体的NO2给体基团和甲醇氧原子。催化实验表明2个配合物都是有效的烯烃氧化催化剂。  相似文献   

8.
陈正军  张道  金国新 《无机化学学报》2005,21(12):1775-1783
选择含有烯丙基亚胺酚为辅助配体,设计合成了5个ⅣB族钛锆金属络合物[{CH2=CHCH2N=CH-C6H3(3-R)O}2MCl2](4aR=t-Bu,M=Zr;4bR=t-Bu,M=Ti;4cR=Ph,M=Zr;4dR=Ph,M=Ti)和[{(CH3)2CHCH2N=CH-C6H3(3-t-Bu)O}2ZrCl2] (5),对它们进行了红外光谱、核磁共振及元素分析表征。并用X-射线单晶衍射法测定了化合物4a4d的晶体结构。部分配合物在助催化剂MMAO的作用下对烯烃聚合显示了较好的催化活性,其中自固载催化剂4a生成了双峰分布的聚烯烃产品 (Mw/Mn=15.3~31.9)。  相似文献   

9.
合成了一对结构类似的双核铜和锌配合物,Cu2(L1)2 (1)和[Zn2(L2)2(CH3OH)2] (2),其中L1和L2分别是2-溴-N'-(2-羟基-5-甲基苯亚甲基)苯甲酰肼(H2L1)和2-氯-N'-(2-羟基-5-甲基苯亚甲基)苯甲酰肼(H2L2)的二价阴离子,通过元素分析、红外光谱以及单晶X射线衍射表征了它们的结构.配合物1以三斜晶系P1空间群结晶,其晶体学参数:a=0.914 11(6) nm,b=1.180 04(7) nm,c=1.359 36(9) nm,α=101.928(2)°,β=91.399(2)°,γ=107.873(2)°,V=1.359 3(2) nm3,Z=2,R1=0.054 0,wR2=0.118 9,GOF=0.970.配合 物2以单斜晶系P21/c空间群结晶,其晶体学参数:a=1.216 97(9) nm,b=1.214 96(9) nm,c=1.212 83(9) nm,β=110.939(1)°,V=1.674 8(2) nm3,Z=2,R1=0.034 1,wR2=0.068 9,GOF=1.024.X射线分析表明2个化合物都是中心对称的双核配合物,其中配合物1中的Cu原子是平面正方形配位构型,配合物2中的Zn原子是四方锥配位构型.还通过MTT法研究了这两个配合物的抗细菌(大肠杆菌,金黄色葡萄球菌,枯草芽孢杆菌和铜绿色假单胞菌)和抗真菌(白假丝酵母菌和黑曲霉菌)活性.  相似文献   

10.
甲醇中三环己基氢氧化锡分别与呋喃-2-甲酸、2,4,6-三甲基苯甲酸反应,合成了2个三环己基锡芳香羧酸酯Cy3SnO2CC4H3O(1)和Cy3SnO2CC6H2Me32)(Cy为环己基)。通过IR、1H和13C NMR、元素分析及X-射线单晶衍射表征结构。(1)和(2)均属单斜晶系,配合物(1)空间群P21,晶体学参数:a=0.82304(2)nm,b=1.11119(3)nm,c=1.28390(3)nm,β=101.090(2)°,Z=2,V=1.15227(5)nm3,Dc=1.381g·cm-3,μ(Mo )=1.127mm-1,F(000)=496,R1=0.0529,wR2=0.1387。配合物(2)空间群P21/c,晶体学参数:a=0.99962(2)nm,b=1.41597(2)nm,c=1.97359(3)nm,β=94.0420(10)°,Z=4,V=2.78653(8)nm3,Dc=1.266g·cm-3,μ(Mo )=0.937mm-1,F(000)=1112,R1=0.0540,wR2=0.1619。配合物(1)和(2)的中心锡原子均为畸变四面体构型。通过分子间氢键作用,配合物(1)形成二维网状结构。试验表明,配合物(1)和(2)具有良好的热稳定性,对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460增殖均有较强的抑制作用。  相似文献   

11.
New organotin(IV) carboxylates, R2SnL2 (R=n-Bu: 1), R2Sn(Cl)L (R=n-Bu: 2), and R3SnL (R=Me: 3; n-Bu: 4; Ph: 5) have been synthesized by stirring 5-chloro-2-hydroxybenzoic acid HL with KOH and R2SnCl2 (R=n-Bu)/R3SnCl (R=Me, n-Bu, Ph) in methanol at room temperature. The complexes along with ligand have been characterized by FTIR, (1H, 13C) NMR, EI-MS, and single-crystal XRD crystallography. FTIR data indicated bidentate coordination of carboxylate. NMR data suggested six- or five-coordinate geometry of organotin(IV) carboxylates. Single-crystal XRD of 1 demonstrated skew-trapezoidal geometry around the tin center, with the basal plane occupied by four oxygens and the two butyl groups lying in distorted axial position. Complexes 1, 2, and 5 exhibited interaction with SS-DNA (salmon sperm) and suggests intercalating mode of binding. The complexes displayed significant antimicrobial activities against bacterial and fungal strains as compared to free ligand. The hemolytic activity of the complexes was lower compared to Triton-X 100 (positive control, 100% lysis) and higher than phosphate-buffered saline (negative control, 0% lysis). Complex 4 was the most potent inhibitor of bacterial/fungal growth.  相似文献   

12.
The organotin (IV) derivatives of 2-mercapto-4-methylpyrimidine (Hmpymt) R3SnL (R = Ph 1, PhCH22, n-Bu 3), R2SnClmLn (m = 1, n = 1, R = CH34, Ph 5, n-Bu 6, PhCH27; m = 0, n = 2, R = CH38, n-Bu 9, Ph 10, PhCH211) were obtained by the reaction of the organotin(IV) chlorides R3SnCl or R2SnCl2 with 2-mercapto-4-methylpyrimidine hydrochloride (HCl · Hmpymt) in 1:1 or 1:2 molar ratio. All complexes 1-11 were characterized by elemental analyses, IR, 1H, 13C and temperature-dependent 119Sn NMR spectra. Except for complexes 3 and 6, the structures of complexes 1, 2, 4, 5, 7, 8-11 were confirmed by X-ray crystallography. Including tin-nitrogen intramolecular interaction, the tin atoms of complexes 1-7 are all five-coordinated and their geometries are distorted trigonal bipyramidal. While the tin atoms of complexes 8-11 are six-coordinated and their geometries are distorted octahedral. Besides, the ligand adopts the different coordination modes to bond to tin atom between the complexes 1, 6, 7 and 2, 3, 4, 5, 8-11. Furthermore, intermolecular Sn?N or Sn?S interactions were recognized in crystal structures of complexes 4, 7 and 11, respectively.  相似文献   

13.
Some new tri- and diorganotin(IV) complexes of the general formula, R3Sn(H2L) and R′2Sn(HL) [where R = Me, n-Pr, n-Bu and Ph; R′ = Me, n-Bu, Ph and n-Oct; H3L = Schiff base (abbreviated as tren(4-Me-5-ImH)3) derived from condensation of tris(2-aminoethyl)amine (tren) and 4-methyl-5-imidazolecarboxaldehyde (4-Me-5-ImH)] have been synthesized. The coordination behaviour of Schiff base towards organotin(IV) moieties is discussed on the basis of infrared and far-infrared, 119Sn Mössbauer and multinuclear (1H, 13C and 119Sn) magnetic resonance (NMR) spectroscopic studies. Thermal studies of all of the synthesized organotin(IV) complexes have been carried out using TG, DTG and DTA techniques. The residues thus obtained from pyrolysis of the studied complexes have been characterized by X-ray powder diffraction analysis and IR. The newly synthesized complexes have been tested for their anti-inflammatory activity and toxicity (LD50).  相似文献   

14.
The organotin(IV) complexes R2Sn(tpu)2 · L [L = 2MeOH, R = Me (1); L = 0: R = n-Bu (2), Ph (3), PhCH2 (4)], R3Sn(Hthpu) [R = Me (5), n-Bu (6), Ph (7), PhCH2 (8)] and (R2SnCl)2 (dtpu) · L [L = H2O, R = Me (9); L = 0: R = n-Bu (10), Ph (11), PhCH2 (12)] have been synthesized, where tpu, Hthpu and dtpu are the anions of 6-thiopurine (Htpu), 2-thio-6-hydroxypurine (H2thpu) and 2,6-dithiopurine (H2dtpu), respectively. All the complexes 1-12 have been characterized by elemental, IR, 1H, 13C and 119Sn NMR spectra analyses. And complexes 1, 2, 7 and 9 have also been determined by X-ray crystallography, complexes 1 and 2 are both six-coordinated with R2Sn coordinated to the thiol/thione S and heterocyclic N atoms but the coordination modes differed. As for complex 7 and 9, the geometries of Sn atoms are distorted trigonal bipyramidal. Moreover, the packing of complexes 1, 2, 7 and 9 are stabilized by the hydrogen bonding and weak interactions.  相似文献   

15.
The anisyl boronic acids, 2-OMe-3-R2-5-R1-C6H2B(OH)2 (R1=R2=H (a); R1=H, R2=Ph (b); R1=Me, R2=H (c); R1=Cl, R2=H (d); R1=t-Bu, R2=H (e)), have been employed in Suzuki cross-coupling reactions with either 2-bromo-6-formylpyridine (I) or 2-bromo-6-acetylpyridine (II) generating, following a facile deprotection step, the 2-phenoxy-6-carbonylpyridines, 2-(2′-OH-3′-R2-5′-R1-C6H2)-6-(CHO)C5H3N (R1=R2=H (1a); R1=Me, R2=H (1c); R1=Cl, R2=H (1d); R1=t-Bu, R2=H (1e)) and 2-(2′-OH-3′-R2-5′-R1-C6H2)-6-(CMeO)C5H3N (R1=R2=H (2a); R1=H, R2=Ph (2b)). Condensation reactions of 1 and 2 with 2,6-diisopropylaniline proceed smoothly to give the 2-phenoxy-6-iminopyridines, 2-(2′-OH-3′-R2-5′-R1-C6H2)-6-{CHN(2,6-i-Pr2C6H3)}C5H3N (R1=R2=H (3a); R1=Me, R2=H (3c); R1=Cl, R2=H (3d); R1=t-Bu, R2=H (3e)) and 2-(2′-OH-3′-R2-5′-R2-C6H2)-6-{CMeN(2,6-i-Pr2C6H3)}C5H3N (R1=H, R2=Ph (4a), R1=H, R2=Ph (4b)). Reduction of the imino unit (and concomitant C-C bond formation) in 3 can be achieved by treatment with trimethylaluminium or methyllithium which, following hydrolysis, furnishes the racemic chiral 2-phenoxy-6-(methanamino)pyridines, 2-(2′-OH-3′-R2-5′-R1-C6H2)-6-{CHMe-NH(2,6-i-Pr2C6H3)}C5H3N (R1=R2=H (5a); R1=Me, R2=H (5c); R1=Cl, R2=H (5d); R1=t-Bu, R2=H (5e)). This work represents a straightforward and rapid synthetic route to libraries of sterically and electronically variable phenoxy-substituted imino- and methanamino-pyridines, which are expected to act as useful ligands or proligands for late and early transition metal-mediated alkene polymerisation catalysis.  相似文献   

16.
The interaction of Ph3Ti with a number of ketones (acetone, 2-butanone, 3,3-dimethyl-2-butanone, benzophenone) was studied. The PhTi(OCR1R2Ph)2 complexes, where R1=R2=Me (a), R1=Me, R2=Et (b), R1=Me, R2=t-Bu (c), and R1=R2=Ph (d) were isolated in satisfactory yields. These compounds were characterized by ESR and IR spectroscopy and elemental analysis. Their thermal stability was determined by the DTA method. The reaction of Bn3V with acetone gives V(OCMe2Bn)3. In analogy with titanium compounds, Bn4V reacts with acetone at the ratio 12 to give Bn2(OCMe2Bn)2.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 6, pp. 1120–1122, June, 1994.  相似文献   

17.
Ketenylidenetriphenylphosphorane, Ph3PCCO (2), reacts selectively with the ω-hydroxy group of the alkene-carbene complexes (OC)4CrC(η2-NMeCH2CHCHCH2OH)R1 (1) (R1=Me: (1a); Ph: (1b)) to give the acyl ylide terminated complexes (OC)4CrC[(4,5-η2)-NMeCH2CHCHCH2O(O)C-CHPPh3]R1 (3) (R1=Me: (3a); Ph: (3b)). Complexes 3 undergo Wittig alkenation reactions with aldehydes such as 2-alkynals, R2-CC-CHO (R2=H, SiMe3, Ph), to give the corresponding 4Z, 9E-dien-11-ynes (OC)4CrC[(4,5-η2)-NMeCH2CHCHCH2O(O)C-CHCH-CC-R2]R1 (4-6) (R1=Me, R2=H, SiMe3, Ph: (4a-6a); R1=Ph, R2=H, SiMe3, Ph: (4b-6b)). All complexes were characterized in solution by one- and two-dimensional NMR spectroscopy (1H, 13C, 29Si, 31P, 1H/1H COSY, 13C/1H HETCOR, 31P/31P EXSY).  相似文献   

18.
A series of organotin (IV) complexes with 6-amino-1,3,5-triazine-2,4-dithiol of the type [(RnSnCl4−n)2 (C3H2N4S2)] (n = 3: R = Me 1, n-Bu 2, PhCH23, Ph 4; n = 2: R = Me 5, n-Bu 6, PhCH27, Ph 8) have been synthesized. All the complexes 1-8 have been characterized by elemental analysis, IR, 1H and 13C NMR spectra. Among them complexes 1, 4, 5 and 8 have also been characterized by X-ray crystallography diffraction analyses, which revealed that the tin atoms of complexes 1, 4, 5 and 8 are all five-coordinated with distorted trigonal bipyramid geometries.  相似文献   

19.
Electrochemical reduction of 1-X-1-R1-5-methyl-2-phenyl-7-R2-1,2-dihydro-1,2,4,3-tri-azaphospholo[4,5-a]quinolines1–5 (1: X is the lone electron pair (LEP), R1=Et2N, R2=Me;2: X=LEP, R1=Ph, R2=H;3: X=S, R1=Et2N, R2=H;4: X=LEP, R1=Et2N, R2=H;5: X=LEP, R1=MeO, R2=H) in DMF with 0.1M Bu4NI as supporting electrolyte is reversible and results in metastable radical anions. Radical anions of compounds1–3 efficiently reduce 1,2-dichloro-2-methoxycarbonyl-2-methylcyclopropane both in the presence and in absence of Ni11 ions. Effective reduction rate constants have been evaluated. Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 11, pp. 2088–2091, November, 1999.  相似文献   

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