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1.
在水热条件下,以对苯二甲基二膦酸为有机配体,以4,4'-联吡啶为辅助配体,合成了具有二维层状结构的有机膦酸镍化合物.晶体属于单斜晶系,C2/c空间群.该化合物每个金属中心与4个氧原子和2个氮原子配位,金属中心Nil通过4,4'-联吡啶配体相连,形成一维链状结构,再由有机膦酸连接形成了二维层状结构.通过灼烧可以除去化合物...  相似文献   

2.
在水热和溶剂热条件下, 有机多齿羧酸4,4'-三苯胺二甲酸(H2L)及含铜化合物分别与2,2'-联吡啶(bpy)和1,4-二(吡啶-4-甲氧基)苯(bpmb)反应, 合成了2种新型的含铜配位聚合物[Cu2L(bpy)](1)和[CuL(bpmb)0.5]·DMF(2). 通过X射线单晶衍射、 红外光谱、 元素分析、 热重和粉末X射线衍射分析等对其结构进行了表征. 结果表明, 化合物1属正交晶系, Pnma空间群, 其骨架为二维层状结构; 化合物2属单斜晶系, P21/c空间群, 具有{44·610·8}拓扑结构的三维网络.  相似文献   

3.
芴酮与2-萘酚在硫酸和3-巯基丙酸的作用下反应得到化合物螺[二苯并[a,j]氧杂蒽-14,9'-芴]. 采用核磁共振、 质谱、 红外光谱和元素分析等对该化合物进行了表征, 并通过X射线衍射法测得了其晶体结构, 确定该化合物是通过二苯并[a,j]氧杂蒽中的含氧六元杂环和芴中的五元环共用一个碳原子形成一个螺环. 利用荧光光谱和热分析等手段对该化合物的性质进行了研究, 结果表明其最大荧光发射峰为366 nm, 熔点为297 ℃, 热分解温度为329 ℃, 具有较高的热稳定性.  相似文献   

4.
金声  花文廷  崔华  蔡国衡 《化学学报》1980,38(6):561-566
发现N-(2,5二甲氧基苯基)N-对甲苯磺酰基-β-丙氨酸甲酯(1)在多聚磷酸作用下,产生了两个新化合物。经过核磁共振、质谱、红外光谱、紫外光谱和化学性质的研究,证实了两个化合物的结构分别为N-(2,5二甲氧基-4-对甲苯基砜基苯基)β-丙氨酸甲酯(2)和N,N'-[4,4'-(2,2',5,5'-四甲氧基)-联苯亚基]双丙氨酸甲酯(4)。在多聚磷酸作用下,发生这样的反应是很少见的。  相似文献   

5.
3,3'-二吲哚甲烷类化合物是一类重要的吲哚生物碱,其结构单元广泛存在于天然产物、功能性材料以及合成药物分子中.因其具有多样的生物活性和功能,如抗氧化、抗炎症、抗血管生成、抗菌以及抗癌活性等,构筑3,3'-二吲哚甲烷类杂环化合物备受关注.传统的合成方法,尤其是对称结构的3,3'-二吲哚甲烷类化合物的合成主要在化学量的Br?nsted酸或Lewis酸存在下,吲哚衍生物与羰基化合物经傅-克反应缩合得到.而过渡金属的使用可引起化合物中金属残留以及环境污染.总结和探讨了从2010年至今3,3'-二吲哚甲烷类化合物的合成方法,尤其是对无过渡金属参与条件下,对称结构的3,3'-二吲哚甲烷类化合物以及非对称结构3,3'-二吲哚甲烷类化合物制备的最新进展以及相应的反应机理,旨在为该类化合物生物活性测试提供重要的理论依据和技术支持.  相似文献   

6.
以4,4'-二硝基-2,2'-联吡啶-6,6'-二亚甲基双三氟乙酸酯作为起始原料, 经水解、 溴化、 酯化和对氨基苯乙炔取代4步反应合成了4,4'-二(对氨基苯乙炔基)-6,6'-二[N,N-二(乙氧基羰甲基)氨甲基]-2,2'-联吡啶. 通过红外光谱、 核磁共振波谱、 高分辨质谱等表征了该化合物的结构. 该化合物经水解后与铕离子形成稀土荧光螯合物, 在紫外光激发下, 发射出具有铕离子特征的荧光光谱.  相似文献   

7.
以4,4'-二硝基-2,2'-联吡啶-6,6'-二亚甲基双三氟乙酸酯作为起始原料,经水解、溴化、酯化和对氨基苯乙炔取代4步反应合成了4,4'-二.(对氨基苯乙炔基)-6,6'-二[N,N-二(乙氧基羰甲基)氨甲基]-2,2'-联吡啶.通过红外光谱、核磁共振波谱、高分辨质谱等表征了该化合物的结构.该化合物经水解后与铕离子形成稀土荧光螯合物,在紫外光激发下,发射出具有铕离子特征的荧光光谱.  相似文献   

8.
采用振动圆二色谱(VCD)方法研究了一个具有高度催化活性的轴手性结构的双咔啉N—O化合物的立体化学结构. 在B3LYP/6-311+G(d)水平上得到的计算结果表明, 对于具有负旋光值的双咔啉N—O化合物化合物, 其绝对构型是aS. 同时, 分别计算了双咔啉N—O化合物的电子圆二色谱(ECD)和旋光值, 并与实验结果进行了比较. 在化合物结构完全正确条件下, VCD, ECD和旋光数据均表明, 具有负旋光值的该化合物的绝对构型是aS.  相似文献   

9.
在水热条件下, 利用锌离子与2种有机配体合成出1个结构新颖的金属有机骨架化合物[Zn2(BPDC)(IN)2](H2BPDC=4,4'-联苯二羧酸; HIN=异烟酸), 并通过单晶X射线衍射、 红外光谱、 热重分析和荧光光谱等对该化合物进行了表征. 结果表明, 该化合物结构中Zn离子与BPDC的羧基形成双核金属次级结构单元[Zn2(—CO2)2(IN)2], 相邻次级结构单元通过IN配离子连接形成[Zn2(—CO2)2(IN)2]二维层面, 相邻的二维层通过BPDC相互连接形成具有三重互穿的简单格子拓扑结构. 该化合物表现出良好的荧光性质.  相似文献   

10.
利用四[1-(1, 2, 4-三氮唑基)甲基]间苯二酚杯[4]芳烃配体(TTR4A)在溶剂热的条件下合成了两个配位聚合物,[[Zn2(TTR4A)(L)2]·DMF·4H2O]n(化合物1) (DMF = N, N-二甲基甲酰胺)和[[Co(TTR4A)Cl2]·DMA·H2O]n (化合物2) (H2L = 4, 4’-联苯二甲酸) (DMA = N, N-二甲基乙酰胺)。通过单晶X射线衍射方法对这两个配位聚合物的结构进行了确定。利用红外、元素分析、粉末X射线衍射(PXRD)和热重表征手段对化合物1和2进行了表征。在化合物1中,四个L配体连接着四个Zn(Ⅱ)离子形成了环状的Zn4L4结构单元,该结构单元进一步地被TTR4A链接形成了一维链状结构。在化合物2中,TTR4A的四个三氮唑基团各连接一个Co(Ⅱ)离子形成二维层状结构。此外,我们对化合物1的荧光性能进行了研究,荧光测定表明固态条件下化合物1发出很强的荧光,并能够选择性地对Fe3+、Cr2O72−和硝基苯分子产生响应。  相似文献   

11.
The X-ray crystal structure and absolute configuration of (−)436-(η5-C5H5)Fe(CO)(CH3CO)[Ph2PNHCH(Me)(Ph)] have been determined from single crystal diffraction data. The compound crystallizes in the monoclinic space group P21 with two molecules in a unit cell of dimensions a = 10.676(4), b = 8.913(7), c = 13.275(9) Å, and β = 91.36°. The structure was solved by the Patterson method and refined to a final R value of 4.7% using 2299 independent data. The iron atom has distorted octahedral coordination, and the configuration at the iron is found to be (S) for the (−)436 diastereoisomer. The Fe---Cp distances average 2.131 Å, with an Fe-(ring centroid)distance of 1.76 Å. The Fe-acetyl distance is virtually identical to that found in another iron/acetyl complex, but shows substantial variation from other compounds where the nature of the C(=O)R group is changed. Comparison to the Mo-alkyl/Mo-acetyl series is made, and the argument for back-donation in transition metal acyls is strengthened.

The orientation of the acetyl group is determined by a strong NHO intra-molecular hydrogen bond having an NO separation of only 2.86 ». The phosphine ligand has a very short Fe---P bond which could be in part caused by the role of the adjacent nitrogen in hydrogen bonding. The remaining ligand geometry is the same as that found in a recently reported ruthenium structure, although the absolute configurations at the chiral carbons are reversed, with the current compound being designated (S) at this site.  相似文献   


12.
Bis[bis{(diphenylphosphinyl)methyl}ethyl phoshinate]bis(ethanol) metal(II) perchlorate complexes, where METAL = Co, Ni or Cu, have been prepared by the reaction of metal perchlorates and bis[(diphenylphosphinyl)methyl]ethyl phosphinate, (RPOEt), in absolute ethanol. The crystal structure of the copper complex is triclinic, space group P , a = 13.688(7) Å, b = 14.424(10) Å, c = 9.865(2) Å, = 110.43(4)°, β = 90.13(2)°, γ = 115.54(4)°, V = 1619.8 Å3, Z = 1 and refined to R = 0.048 (Rw = 0.057). The structure consists of complex cations surrounded by perchlorate anions. Two RPOEt ligands and two ethanols are coordinated to the copper atom situated at the centre of symmetry 0, 0, 0. The RPOEt ligand is bidentate [Cu---O distances 1.969(4) Å, 2.312(4) Å], but the third oxygen atom from phosphoryl bonds is hydrogen bonded [2.669(6) Å], to the oxygen atom of ethanol molecule coordinated to the copper at 1.988(4) Å. The conformations of the ligand and chelate rings, magnetic data, molar conductance values, infrared and electronic spectra are given.  相似文献   

13.
The crystal structure of NdCl3·C6H12O6·9H2O has been determined. It crystallizes in the monoclinic system, p2(1)/n space group with cell dimensions: a=15.824(3) Å, b=8.633(2) Å, c=16.219(3) Å, β=107.24°, V=2116.1(7) Å3 and Z=4. Each Nd ion is coordinated to nine oxygen atoms, two from inositol and seven from water molecules, with an Nd–O distance of 2.449–2.683 Å, the other two water molecules are hydrogen bonded. No direct contacts exist between Nd and Cl. There is an extensive network of hydrogen bonds in hydroxyl groups, water molecules and chloride ions in the crystal structure of the lanthanide complex. The Raman spectra of Pr–, Nd– and Sm–inositol are similar, which show that the three metal ions have the same coordination mode. The Raman spectra are consistent with their structures.  相似文献   

14.
以甘氨酸(Gly)、 18-冠醚-6、 二氯化锰(MnCl2)和盐酸为原料, 通过蒸发法获得一种新型相变一维链状氢键型甘氨酸超分子化合物[(Gly)2+ (18-crown-6)2(MnCl4)2?](1). 通过元素分析、 变温X射线单晶衍射和介电测试等手段对其进行了表征和解析. 实验结果表明, 该晶体属于单斜晶系, 空间群从P21/c(100 K)转化为C2/c(293 K). 随着温度升高, [MnCl4]2?呈现无序状态的共棱双四面体结构. 质子化甘氨酸分子和分子内羟基(—OH)发生动态摆动, 引起O—H…Cl型一维氢键链产生明显伸缩运动, 导致化合物1在一定温度范围内出现结构相变及介电异常.  相似文献   

15.
The characterization by X-ray analysis of the trans,trans,trans-[bis(1-methylcytosinate,N4)bis(ammine)bis(hydroxo)platinum(IV)] octahydrate complex (I) reveals an unexpected crystal packing. The neutral complex molecule is hosted by layers, totally built up by water molecules which do not exhibit a direct coordination to metal ions. These corrugated layers are made by puckered eight- and planar four-membered rings of water molecules, held together by hydrogen bonds with an ordered proton arrangement.  相似文献   

16.
The molecular structure of the title complex [ZnBr2(C7H6N2)2] was investigated by X-ray diffraction and IR spectroscopy methods. Molecules of zinc(II) complex crystallize in the triclinic crystal system with cell constants a=7.526(2) Å, b=7.8971(8) Å, c=13.431(1) Å, Z=2 and V=791.3(2) Å3. In the molecular structure, the Zn atom is coordinated tetrahedrally by two Br anions and two benzimidazole ligands. Intramolecular steric repulsions between Br anions and benzimidazole groups have been caused to cis configuration around the central metal atom.  相似文献   

17.
A series of modified ferrites were prepared by doping iron oxide with various transition/non-transition/inner-transition metal ions [M = Cr, Mn, Co, Ni, Cu, Zn and Ce] in situ during synthesis. All the modified ferrites thus obtained exhibit remarkably high surface areas, greater than that of pure iron oxide (Fe2O3) sample. The efficacy of the dopant ions in modifying the resultant specific surface area, could be directly related to variations in the rate of crystal growth. The nature and concentration of the foreign cations present in the system govern this variation. Interestingly all the modified ferrites, exhibit a narrow pore size distribution in the range of 4.9–25 nm. XRD analysis revealed the existence of hematite (Fe2O3) phase in all the as-prepared samples. The X-ray diffraction experiments performed on activated catalysts, confirmed the existence of magnetite (Fe3O4) phase with a nominal composition of Fe2.73M0.27O4. These inverse or mixed spinels with general formula A(1−δ)Bδ[AδB(2−δ)]O4, possess highly facile Fe3+  Fe2+ redox couple, the degree of facileness depends on the extent of synergistic interaction between iron and the other substitutent metal ion. The rapid electron hopping between Fe3+  Fe2+ in the Fe3O4 lattice system is essential to catalyze WGS reaction. From TPR it was observed that, incorporation of metal cations into the hematite (-Fe2O3) crystal structure alters the reducibility of the hematite particles, which in turn depends on the nature of the incorporated metal cation. A plausible explanation for the WGS activity over various modified ferrites has been attempted with the help of TPR analysis.  相似文献   

18.
New proton-ionizable macrocyclic polyether ligands containing the 4-pyridone subcyclic unit have been prepared by reacting 4-THP blocked-2,6-pyridinedimethanol with various oligoethylene glycol ditosylates. The 18-crown-6 ligand containing the 4-pyridone subcyclic unit, 4 , forms stable complexes with alkali metal and organic ammonium cations. The crystal structure of 4 proves the 4-pyridone structural unit. The crystal structure of the potassium thiocyanate complex of 4 is also reported and shows the complex to contain the 4-hydroxypyridine unit.  相似文献   

19.
N,N'-Bis(2-aminobenzyl)-4,13-diaza-18-crown-6 (L) is a versatile receptor able to adapt to the coordinative preferences of different metal cation guests. With first-row transition metal ions, L tends to form binuclear complexes but, depending on the nature of the particular metal ion, the structure of the binuclear complex may be very different. Herein we report a study of the structure and magnetic properties of the corresponding nickel(II) and cobalt(II) complexes. The X-ray crystal structure of the nickel complex (1), with formula [Ni2(L)(CH3CN)4](ClO4)4.CH3CN, shows that this compound presents a symmetric coordination environment with L adopting an anti arrangement. Each Ni(II) ion is six-coordinate in a distorted octahedral environment, and both metal ions are quite far from each other. On the other hand, the X-ray crystal structure of the cobalt complex (2), with formula [Co(L)(mu-OH)Co(CH3CN)](ClO4)3, reveals a rather different structure. Coordination number asymmetry is found: one of the Co(II) is five-coordinate in a distorted trigonal-bipyramidal coordination environment, while the second Co(II) ion is six-coordinate in a distorted octahedral arrangement. Now L adopts a syn arrangement and a hydroxide group acts as a bridge between both cobalt ions. This hydroxo-bridged Co(II) binuclear complex shows structural features that mimic the active site of methionine aminopeptidases. The magnetic properties of 1 and 2 have been investigated in the temperature range 2.0-300 K. Whereas 1 displays a Curie law except for temperatures below 50 K where zero-field splitting of the S= 1 ground state is observed, antiferromagnetic exchange in the singular asymmetric binuclear Co(II) complex 2 has been observed. This magnetic behaviour has been fitted considering first-order spin-orbit coupling in the assumed axially distorted octahedral site and totally quenched orbital contribution in the five-coordinate site in which zero-field splitting of the S= 3/2 ground state is operative.  相似文献   

20.
The reaction of phospholide ions with imidoyl chlorides in the presence of tBuOK gives the alpha-iminophospholides that are isolated as their trimethylstannyl derivatives. These derivatives in turn react with metal chlorides to give complexes of the title ligands. A DFT study shows that substantial electronic delocalization takes place between the imino group and the phospholyl ring in these anions. The X-ray crystal structure of one stannylphosphole shows a highly pyramidal phosphorus atom (sum of angles = ca. 280 degrees ). A tetrameric copper complex has also been structurally characterized.  相似文献   

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