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1.
三环己基氢氧化锡分别与辛二酸和壬二酸进行甲醇溶剂热反应,合成了2个双(三环已基锡)二元酸酯(CH2)n(CO2SnCy3)2[(n:6(1),7(2)],并用IR、1H和13C NMR、元素分析和X射线单晶衍射表征结构。化合物12均属单斜晶系,空间群分别为P21/nP21/c,在化合物的晶体中,1通过Sn-O共价键,2通过Sn-O和Sn…O弱作用,分别形成了四锡核30元(1)和32元(2)二维大环网状结构。化合物12对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460均具有良好的体外抑制活性,对S. AureusB. SubtilisE. ColiS. Typhi具有选择性的抑菌作用。  相似文献   

2.
氧化双[三(2-甲基-2-苯基)丙基]锡分别与庚二酸和辛二酸反应, 合成了2个双[三(2-甲基-2-苯基)丙基锡]二元酸酯(CH2)n[CO2Sn(CH2CMe2Ph)3]2[(n=5 (1), 6 (2)], 经IR、1H和13C NMR、元素分析和X射线单晶衍射对化合物进行了表征。化合物属单斜晶系, 空间群为P21/c。锡原子均为畸型四面体构型, 化合物1以氢键作用形成一维链状结构, 化合物2以氢键和C-H…π作用形成二维网状结构。化合物12在340 ℃以下具有良好的热稳定性, 对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460均具有较好的体外抑制活性, 且具有一定的抑菌活性。  相似文献   

3.
氧化双[三(2-甲基-2-苯基)丙基]锡分别与庚二酸和辛二酸反应, 合成了2个双[三(2-甲基-2-苯基)丙基锡]二元酸酯(CH2)n[CO2Sn(CH2CMe2Ph)3]2[(n=5 (1), 6 (2)], 经IR、1H和13C NMR、元素分析和X射线单晶衍射对化合物进行了表征。化合物属单斜晶系, 空间群为P21/c。锡原子均为畸型四面体构型, 化合物1以氢键作用形成一维链状结构, 化合物2以氢键和C-H…π作用形成二维网状结构。化合物12在340 ℃以下具有良好的热稳定性, 对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460均具有较好的体外抑制活性, 且具有一定的抑菌活性。  相似文献   

4.
在微波溶剂热中,三环已基氢氧化锡、氧化双(三((2-甲基-2-苯基)丙基)锡)与吡啶-2,3(5)-二甲酸反应,合成了3个双核二(有机锡)吡啶-2,3(5)-二甲酸酯:Py(CO)2(SnR32(MeOH) n(R:Cy,n=1(1),2(2);R:PhCMe2CH2,n=0(3)),对它们的组成和结构进行了元素分析、IR、(1H,13C,119Sn) NMR和X射线晶体衍射分析表征,化合物中心锡与配基原子构成畸形四/六面体构型,由于氢键作用,化合物1形成一维链,2形成二维34元大环网状结构。化合物对人结肠癌(HT-29)、肝癌细胞(HepG2)、乳腺癌(MCF-7)、鼻咽癌(KB)和肺癌细胞(A549)的增殖有较强的抑制作用。  相似文献   

5.
丁二酸、戊二酸和己二酸分别与μ-氧-双[三(2-甲基-2-苯基)丙基]锡反应,合成了3个二[三(2-甲基-2-苯基)丙基锡]二元酸酯(CH2)n[CO2Sn(CH2CMe2Ph)3]2(n=2(1),3(2),4(3))。对化合物1~3进行了元素分析、红外光谱及核磁共振(1H,13C)表征,并通过X-射线晶体衍射分析测定晶体结构。化合物中锡与配基原子构成畸型四面体构型。试验表明,化合物23均对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460的增殖具有较强的抑制作用。  相似文献   

6.
丁二酸、戊二酸和己二酸分别与μ-氧-双[三(2-甲基-2-苯基)丙基]锡反应, 合成了3个二[三(2-甲基-2-苯基)丙基锡]二元酸酯(CH2)n[CO2Sn(CH2CMe2Ph)3]2(n=2 (1), 3 (2), 4 (3))。对化合物1~3进行了元素分析、红外光谱及核磁共振(1H, 13C)表征, 并通过X-射线晶体衍射分析测定晶体结构。化合物中锡与配基原子构成畸型四面体构型。试验表明, 化合物23均对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460的增殖具有较强的抑制作用。  相似文献   

7.
合成了Schiff碱配体3-乙酰吡啶缩邻氨基苯甲酰腙(L1)及4-乙酰吡啶缩邻氨基苯甲酰腙(L2),并分别与HgCl2进行了配位反应,得到2个配位聚合物{[Hg(L1)Cl2]·CH3OH}n (1)和[Hg(L2)Cl2]n (2),采用1H NMR、FTIR和元素分析等手段对化合物进行了表征,并对配合物的热稳定性进行了考察。通过X射线单晶体衍射技术测定了2个配合物的单晶结构,结构解析表明,配合物1属于三斜晶系,P1空间群,配合物2属于单斜晶系,P21/n空间群。  相似文献   

8.
用溶剂热法设计、合成了4个金属-有机配合物[Mn(L1)4(OH)2](1),{[MnL1(H2O)4]SO4}n(2),[CdL2(NO3)2]n(3)和{[Co(L2)2](PF6)2}n(4),(L1=3,6-二(N-咪唑基)哒嗪,L2=3,6-二(N-苯并咪唑基)哒嗪),并通过元素分析、红外、X射线单晶衍射对配合物结构进行了表征,测试结果表明配合物1具有单核结构,2为一维链结构,配合物34均为二维网状结构。此外,对配合物34的固态荧光性能及光催化的性能做了进一步研究。  相似文献   

9.
以 2,2''-联苯二甲酸(H2DPA)分别与双(三(2-甲基-2-苯基丙基)锡)氧化物、三环己基氢氧化锡和二丁基氧化锡反应,合成了3个有机锡2,2''-联苯二甲酸酯:[((PhC(Me)2CH2)3Sn)2(DPA)] (1)、[(Cy)3Sn(DPA)]n (2)和[(n-Bu)2Sn(DPA)]n (3)。通过IR、NMR、元素分析、热重及X射线单晶衍射对配合物进行表征分析。配合物1、2、3均属单斜晶系,配合物1为双核结构,配合物2、3为一维链状结构,锡原子的配位数依次增大,分别为4、5、6。体外抗癌活性实验表明,配合物1、2、3对人肺癌细胞(NCI-H460)、人乳腺腺癌细胞(MCF-7)、人肝癌细胞(HepG2)的增殖具有较强的抑制作用。  相似文献   

10.
在相同条件下,α-萘乙酸分别与二丁基氧化锡、氧化双(三丁基锡)反应,合成了四核簇状二丁基锡α-萘乙酸酯{[n-Bu2Sn(O2CCH2C10H7)]2O}2(1)和一维链状三丁基锡α-萘乙酸酯[n-Bu3Sn(O2CCH2C10H7)]n(2).经IR、1H和13CNMR、元素分析和X-射线单晶衍射表征结构.1具有核心结构为氧原子桥联锡构筑的Sn2O2四元环,且四元环二聚形成Sn4O4簇状,中间Sn2O2环的中心为整个分子的对称中心.1中,两相邻配合物分子间通过C-H…π作用、形成一维带状结构.配合物2中,锡原子通过羧基双齿桥联、组成一维链状配位聚合物.测试表明:12分别在250、175℃以下可以稳定存在;对人癌细胞Colo205、HepG2、MCF-7、Hela、NCI-H460增殖均有较强的抑制作用,且2的活性高于1.  相似文献   

11.
Fe2(CO)9 and R2P(S)P(S)R2 (R = Et, n-Pr, n-Bu, Ph) react to form two types of cluster complexes Fe3(CO)93-S)2 (1), Fe2(CO)6(μ-SPR2)2 (2A)–(2D), [2A, R = Et; 2B, R = n-Pr; 2C, R = n-Bu; 2D, R = Ph]. The complexes result from phosphorus–phosphorus bond scission; in the former sulfur abstraction has also occurred. The complexes have been characterized by elemental analyses, FT-IR and 31P-[1H]-NMR spectroscopy and mass spectrometry.  相似文献   

12.
在微波溶剂热中,三环已基氢氧化锡、氧化双(三((2-甲基-2-苯基)丙基)锡)与吡啶-2,3(5)-二甲酸反应,合成了3个双核二(有机锡)吡啶-2,3(5)-二甲酸酯:Py(CO)_2(SnR_3)_2(MeOH)_n(R:Cy,n=1(1),2(2);R:PhCMe_2CH_2,n=0(3)),对它们的组成和结构进行了元素分析、IR、(~1H,~(13)C,~(119)Sn)NMR和X射线晶体衍射分析表征,化合物中心锡与配基原子构成畸形四/六面体构型,由于氢键作用,化合物1形成一维链,2形成二维34元大环网状结构。化合物对人结肠癌(HT-29)、肝癌细胞(HepG2)、乳腺癌(MCF-7)、鼻咽癌(KB)和肺癌细胞(A549)的增殖有较强的抑制作用。  相似文献   

13.
The coordination of organochalcogen (especially Se and Te) substituted Schiff-bases L1H, L2H, L3H, and L4H toward Zn(II) and Hg(II) has been studied. Reactions of these ligands with ZnCl2 in 1?:?1 molar ratio gave binuclear complexes [{2-[PhX(CH2) n N?=?C(Ph)]-6-[PhCO]-4-MeC6H2O}2Zn2Cl2] (where X?=?Se, n?=?2 (1); X?=?Se, n?=?3 (2); X?=?Te, n?=?2 (3); and X?=?Te, n?=?3 (4)) with partial hydrolytic cleavage of proligands. In these complexes, two partially hydrolyzed ligand fragments coordinate tridentate (NOO) with two Zn's. Reaction of HgBr2 with L1H and L2H in 1?:?1 molar ratio gave monometallic complexes [C6H2(4-Me)(OH)[2,6-{C(Ph)?=?N(CH2) n Se(Ph)}2HgBr2]] (n?=?2 (5) or 3 (6)) and under similar conditions with L3H and L4H gave bimetallic complexes [C6H2(4-Me)(OH)[2,6-{C(Ph)?=?N(CH2) n Te(Ph)}2Hg2Br4]] (n?=?2?(7) or 3 (8)) in which the ligands coordinate with metal through selenium or tellurium, leaving the imino nitrogen and phenolic oxygen uncoordinated. The proligands L1H, L2H give 14- or 16-membered metallamacrocycles through Se–Hg–Se linkages and L3H, L4H give 16- or 18-membered metallamacrocycles through Te–Hg–Br–Hg–Te linkages. All the complexes were characterized by elemental analyses, ESIMS, FTIR, multinuclear NMR, UV-Vis, and conductance measurements. The redox properties of the complexes were investigated by cyclic voltammetry (CV). Complexes 14 exhibited ligand-centered irreversible oxidation processes. Complexes 5 and 6 showed metal-centered quasi-reversible single electron transfer, whereas dinuclear complexes 7 and 8 displayed two quasi-reversible, one-electron transfer steps. A single-crystal X-ray structure determination of 1 showed that the coordination unit is centrosymmetric with Zn(II) in square-pyramidal coordination geometry and the two square pyramids sharing an edge. The Zn?···?Zn separation is 3.232?Å. The DNA-binding properties of 1 and 3 with calf thymus DNA were explored by a spectrophotometric method and CV.  相似文献   

14.
合成了Schiff碱配体3-乙酰吡啶缩邻氨基苯甲酰腙(L1)及4-乙酰吡啶缩邻氨基苯甲酰腙(L2),并分别与Hg Cl2进行了配位反应,得到2个配位聚合物{[Hg(L1)Cl2]·CH3OH}n(1)和[Hg(L2)Cl2]n(2),采用1H NMR、FTIR和元素分析等手段对化合物进行了表征,并对配合物的热稳定性进行了考察。通过X射线单晶体衍射技术测定了2个配合物的单晶结构,结构解析表明,配合物1属于三斜晶系,P1空间群,配合物2属于单斜晶系,P21/n空间群。  相似文献   

15.
The reaction of 2-(1H-imidazol-1-yl)acetic acid with (Ph3Sn)2O or Cy3SnOH (Cy?=?cyclohexyl) yields triphenyltin 2-(1H-imidazol-1-yl)acetate (1) and tricyclohexyltin 2-(1H-imidazol-1-yl)acetate (2), respectively. 2-(1H-imidazol-1-yl)acetates in these two complexes show remarkably different coordination modes. Complex 1 forms a polymeric chain structure through intermolecular Sn–N interactions, while 2 displays a 28-membered macrocyclic tetranuclear structure by the assembly of Sn–N coordination bonds.  相似文献   

16.
Toxic metal (Cd2+, Hg2+, Pb2+, and Ag+) complexes with the tetradentate macrocyclic ligand - cyclen (1,4,7,10-tetraazacyclododecane, [12]aneN4, L) were prepared and studied in the solid state by IR, X-ray diffraction, elemental and thermal analysis. Diffraction results have yielded three molecular structures, [Cd([12]ane-κ4N1,4,7,10)(NO3)2)] (1), [Hg([12]ane-κ4N1,4,7,10)(NO3-κ2O,O`)]NO3 (2), [Pb2([12]ane-κ4N1,4,7,10)2][Pb(NO3)6] (3) and one polymeric structure {[Ag2([12]ane-κ3N1,4,7)(μ2-[12]aneN10)](NO3)2?2H2O)}n (4) featuring a unique coordination mode not observed before with cyclen as a ligand. The monodentate (1) and chelate (with small bite angle 50.3(3)°, (2) coordination modes of nitrate ligands were confirmed. Stereochemically active 6s2 lone pair was suggested in 3 and DFT results confirmed no significant metal–metal covalent bond. The stability constants of the complexes with Cd2+ and Pb2+ ions were determined by potentiometric methods in aqueous solutions. Additionally, the structures of complexes in solution were observed by 1H NMR. Both methods confirm similar cyclen complexing properties toward Zn2+ biometal and Cd2+, Pb2+ toxic metals.  相似文献   

17.
Abstract

The reaction of 2,6-bis(benzoxazolyl)-4-tert-butylphenol (HL) with [nBuxSnCl4?x] (x?=?0, 1) in 1:1 stoichiometry yielded the tin coordination complexes [(HL)SnnBuxCl4?x] [x?=?0 (1); x?=?1 (2)]. Deprotonation of HL was performed using reagents having groups with high basicity such as nBuLi or [Sn{N(SiMe3)2}2]. These basic reagents prompted the coordination of the ligand in its anionic form, yielding the complexes [(thf)2Li(L)SnCl4] (3) and [(L)Sn{N(SiMe3)2}] (4), respectively. The molecular structure of HL displayed an intramolecular hydrogen bond OH—N and a planar arrangement of the bis(benzoxazolyl)phenolic system. In the molecular structures of both complexes containing HL an intramolecular hydrogen bond of NH—O type was also present. The coordination of the ligand in either neutral or anionic form is described by a κON chelate mode toward Sn. All complexes displayed bis(benzoxazolyl)phenolic moieties close to planar; the least planar system was observed in 4 that was also studied by DFT methods.  相似文献   

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