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1.
标题配合物M=1892.01,单斜晶系,空间群P21/c, a=1.2975(3) nm, b=2.6591(9) nm, c=1.2118(3) nm, β=96.95(1)°, Z=2, Dc=1.577 g/cm3, T=293(2)K。最终的偏离因子R=0.0583。该配合物以二聚体形式存在,通过其中的桥联羧基形成了双核分子。该分子中羧基具有桥联双齿、桥联三齿和单齿三种配位模式,Eu-Eu之间的距离为0.4019(1) nm。在77K下测得配合物中Eu(Ⅲ)离子仅有一种格位。 5D07FJ(J=0~2)跃迁光谱说明Eu(Ⅲ)离子格位具有C2对称性。  相似文献   

2.
[Cd(CHZ)3](ClO4)2的制备和分子结构研究   总被引:10,自引:0,他引:10  
本文报道了高氯酸三碳酰肼合镉(Ⅱ)的制备方法和分子结构。该配合物结构式为[Cd(CHZ)3](ClO4)2。晶体属单斜晶系,P21/n空间群。晶体学参数为:a=1.0281(1) nm, b=0.8617(1) nm, c=2.1360(1) nm,β=100.53°, V=1.8604(3) nm3; Z=4, Dc=2.076 g·cm-3, μ(Mo, Kα)=15.43 cm-1。经全矩最小二乘法对非氢原子坐标和温度因子进行修正。最终偏离因子R=0.0296。在该配合物中,碳酰肼(CHZ)分子作为双齿配体,由羰基氧原子和1位氮原子与Cd配位,形成五员平面螯合环,配合物分子中共有三个这样的螯合环,中心离子为六配位八面体构型;配合物的外界是两个高氯酸根离子,通过库仑力与内界结合在一起。  相似文献   

3.
在甲醇和水的混合溶剂中用2,4,6-三甲基苯甲酸(2,4,6-TMBA)、邻菲咯啉(phen)、高氯酸镉为原料采用水热法合成了一维链状配位聚合物Cd(phen)(2,4,6-DMBA)2(H2O)。该配合物晶体属四方晶系,空间群I41。晶体中镉原子与1个邻菲咯啉的2个N原子、2个2,4,6-三甲基苯甲酸酸根中的3个羧基氧原子及1个水分子中的氧原子配位,晶胞参数:a=2.042 5(7) nm,c=1.395 2(5) nm,V=5.820(3) nm3Dc=1.454 g·cm-3,Z=8,F(000)=2 608,GooF=1.064,R1=0.034 8,wR2=0.070 4。形成六配位的变形八面体结构。对晶体进行了热稳定性分析,结果表明:配合物在240.0 ℃以下稳定性好。  相似文献   

4.
刘停  李旭 《无机化学学报》2010,26(4):677-681
N-苯基邻氨基苯甲酸(NPA)、CoSO4和4,4′-联吡啶为原料,溶液法合成了一个新的配位聚合物[Co2(C13H10NO2)4(4,4′-bipy)2]n,并对其进行了红外、元素分析、热重、荧光及X射线衍射等表征与研究。测定结果表明,该配合物晶体属三斜晶系,空间群P1,晶胞参数:a=1.086 99(13) nm,b=1.136 23(13) nm,c=1.414 72(16) nm,α=71.886 0(10)°,β=76.374(2)°,γ=66.177 0(10)°,V=1.507 0(3) nm3,Dc=1.409 g·cm-3,Z=2,F(000)=662。最终GOF=1.028,最终偏离因子R1=0.043 7,wR2=0.079 4。中心Co(Ⅱ)离子分别与2个联吡啶N原子,4个羧基氧原子配位形成六配位的变形八面体结构。其中1个NPA分子的羧基以螯合方式与Co(Ⅱ)金属原子配位,另2个NPA分子的羧基以桥联的方式与相邻的2个Co(Ⅱ)离子配位,形成一个双核Co簇的二级构筑单元。此双核Co簇通过4,4′-联吡啶分子连接起来,最终形成形成一维双链梯状结构。  相似文献   

5.
大环双核铜(Ⅱ)配合物由N,N′-二甲基-N,N′-二(3-甲酰基-5-氯水杨醛)乙二胺和1,3-丙二胺,与铜(Ⅱ)反应形成的,经过X-射线单晶衍射结果表明:a=0.871 05(16) nm,b=0.957 78(18) nm,c=1.810 4(3) nm,β=100.761(18)°,V=1.483 8(5) nm3,Z=2,Dc=1.762 Mg·m-3,μ=1.85 mm-1,F(000)=796,and final R1=0.061,wR2=0.126。晶体结构表明:两个铜离子位于双核大环中间,与大环的胺、亚胺以及酚羟基的氧进行配位。磁性结果表明配合物为反铁磁性。  相似文献   

6.
[Mn2(CHZ)4(H2O)2](PA)4·10H2O的制备和分子结构研究   总被引:10,自引:0,他引:10  
本文论述了苦味酸(PA,三硝基苯酚)锰与碳酰肼(CHZ, NH2NHCONHNH2)反应制备目标配合物的方法及该配合物的晶体结构。该配合物的结构式为[O,O′-μ-Mn2(CHZ)4(H2O2)](PA)4·10H2O。晶体属三斜晶系,P1 空间群。晶体学参数为:a=0.8269(1) nm, b=1.2812(1) nm, c=1.5915(1) nm; α=109.58(1)°, β=95.19(1)°, γ=92.76(1)°, V=1.5765(2)nm3; Z=1, Dc=1.580 g·cm-3, μ(Mo Kα)=520 m-1。晶体结构经全矩阵最小二乘法修正,最终偏离因子R=0.0557。该化合物为具有中心对称的双核配合物,以两个碳酰肼分子中羰基氧为桥原子将两个锰离子结合起来,与锰离子形成配位键的原子是碳酰肼分子第一、五氮原子,羰基氧原子和水分子中的氧原子,锰离子的配位数为七。若味酸根作为外界离子以库伦力和氢键与内界离子结合成配合物分子。  相似文献   

7.
以2-(对甲基苯甲酰基)苯甲酸(2-PMBBA)和1,10-邻菲啰啉(Phen)为配体合成了一个新的锌(Ⅱ)配合物Zn(2-PMBBA)2(Phen)。该配合物晶体属正交晶系,空间群Pccn,晶胞参数:a=1.3716(4)nm,b=1.3368(4)nm,c=1.9287(5)nm,V=3.5364(17)nm3,Dc=1.360g·cm-3,Z=4,μ(Mo)=0.746mm-1,F(000)=1496,最终偏离因子R1=0.0358,wR2=0.0861。在标题配合物中,中心锌(Ⅱ)离子的配位数是4,处于变形的四面体配位环境中,这是不多见的。本工作还测定了标题配合物的电化学、磁性及荧光性能。结果表明:循环伏安过程中,配合物的电子转移是不可逆的,对应的电极反应是Zn(Ⅱ)/Zn(0);在300~7K,配合物有抗磁性;当激发波长为224nm时,配合物在450和472nm处有强的荧光发射峰。  相似文献   

8.
采用硅酸盐作为基质材料,通过高温固相法合成了Li4SrCa(SiO42:Eu3+红色荧光粉。通过X射线粉末衍射、X射线光电子能谱、透射电镜和荧光光谱,对所得样品的物相、形貌及其发光性能进行了表征分析。结果表明,掺入Eu3+后,Li4SrCa(SiO42的晶体结构并没有发生改变。在393 nm光激发下,荧光粉的荧光光谱中693 nm处发射峰强度最强。以693 nm作为监测波长,荧光激发峰分别为361 nm(7F05D4)、375 nm(7F05G3)、413 nm(7F05D3)、393 nm(7F05L6)和464 nm(7F05D2),即样品对近紫外和蓝光有较好的吸收。利用发射光谱研究了Eu3+掺杂浓度(物质的量分数)对荧光粉发光强度的影响。当Eu3+的掺杂浓度x=0.10时,样品发射强度最强,发射红光,其色坐标为(0.637 5,0.353 7)。通过Dexter强度与浓度关系分析了浓度猝灭机制。  相似文献   

9.
以2-(对甲基苯甲酰基)苯甲酸(2-PMBBA)和1,10-邻菲啰啉(Phen)为配体合成了一个新的锌(Ⅱ)配合物Zn(2-PMBBA)2(Phen)。该配合物晶体属正交晶系,空间群Pccn,晶胞参数:a=1.371 6(4) nm,b=1.336 8(4) nm,c=1.928 7(5) nm,V=3.536 4(17) nm3,Dc=1.360 g·cm-3,Z=4,μ(Mo Kα)=0.746 mm-1,F(000)=1 496,最终偏离因子R1=0.035 8,wR2=0.086 1。在标题配合物中,中心锌(Ⅱ)离子的配位数是4,处于变形的四面体配位环境中,这是不多见的。本工作还测定了标题配合物的电化学、磁性及荧光性能。结果表明:循环伏安过程中,配合物的电子转移是不可逆的,对应的电极反应是Zn(Ⅱ)/Zn(0);在300~7 K,配合物有抗磁性;当激发波长为224 nm时,配合物在450和472 nm处有强的荧光发射峰。  相似文献   

10.
在甲醇水混合溶剂中,以对乙酰氨基苯甲酸(p-ABA),1,10-邻菲咯啉(phen)为配体与高氯酸锌合成了标题配合物[Zn(p-ABA)2(phen)·(H2O)]·H2O。配合物(C30H26N4O8Zn,分子量为637.93)晶体属单斜晶系,空间群P21/c。晶体结构表明:锌原子与2个对乙酰氨基苯甲酸的2个氧原子,1个1,10-邻菲咯啉中的2个氮原子以及水分子中的氧原子配位,晶胞参数:a=1.362 77(17) nm, b=1.882 3(2) nm,c=1.252 53(16) nm;β=114.500(2)°,V=2.923 6(6) nm3Dc=1.449 g·cm-3Z=4,F(000)=1 320,R1=0.041 4,wR2=0.087 8。形成五配位的三角双锥结构。对配合物热稳定性进行分析,结果表明,配合物在230.0 ℃以下稳定性好。  相似文献   

11.
12.
The dehydrocoupling of the sterically hindered phosphine-borane adduct tBu(2)PH.BH(3) above 140 degrees C is catalyzed by the rhodium complexes [Rh(1,5-cod)(2)][OTf] or Rh(6)(CO)(16) to give the four-membered chain tBu(2)PH-BH(2)-tBu(2)P-BH(3) (1), which was isolated in 60% yield and characterized by multinuclear NMR spectroscopy, mass spectrometry, and elemental analysis. Thermolysis of 1 in the temperature range 175-180 degrees C led to partial decomposition and the formation of tBu(2)PH.BH(3). When the dehydrocoupling of tBu(2)PH.BH(3) was performed in the presence of [[Rh(mu-Cl)(1,5-cod)](2)] or RhCl(3) hydrate, the chlorinated compound tBu(2)PH-BH(2)-tBu(2)P-BH(2)Cl (2) was formed which could not be obtained free of 1. The molecular structures of tBu(2)PH.BH(3), tBu(2)PH-BH(2)-tBu(2)P-BH(3) (1), and tBu(2)PH-BH(2)-tBu(2)P-BH(2)Cl (2) together with 1 were determined by single-crystal X-ray diffraction studies.  相似文献   

13.
Huang FQ  Ibers JA 《Inorganic chemistry》2001,40(11):2602-2607
The new compounds K(2)TiCu(2)S(4), Rb(2)TiCu(2)S(4), Rb(2)TiAg(2)S(4), Cs(2)TiAg(2)S(4), and Cs(2)TiCu(2)Se(4) have been synthesized by the reactions of A(2)Q(3) (A = K, Rb, Cs; Q = S, Se) with Ti, M (M = Cu or Ag), and Q at 823 K. The compounds Rb(2)TiCu(2)S(4), Cs(2)TiAg(2)S(4), and Cs(2)TiCu(2)Se(4) are isostructural. They crystallize with two formula units in space group P4(2)/mcm of the tetragonal system in cells of dimensions a = 5.6046(4) A, c = 13.154(1) A for Rb(2)TiCu(2)S(4), a =6.024(1) A, c = 13.566(4) A for Cs(2)TiAg(2)S(4), and a =5.852(2) A, c =14.234(5) A for Cs(2)TiCu(2)Se(4) at 153 K. Their structure is closely related to that of Cs(2)ZrAg(2)Te(4) and comprises [TiM(2)Q(4)(2)(-)] layers, which are separated by alkali metal atoms. The [TiM(2)Q(4)(2)(-)] layer is anti-fluorite-like with both Ti and M atoms tetrahedrally coordinated to Q atoms. Tetrahedral coordination of Ti(4+) is rare in the solid state. On the basis of unit cell and space group determinations, the compounds K(2)TiCu(2)S(4) and Rb(2)TiAg(2)S(4) are isostructural with the above compounds. The band gaps of K(2)TiCu(2)S(4), Rb(2)TiCu(2)S(4), Rb(2)TiAg(2)S(4), and Cs(2)TiAg(2)S(4) are 2.04, 2.19, 2.33, and 2.44 eV, respectively, as derived from optical measurements. From band-structure calculations, the optical absorption for an A(2)TiM(2)Q(4) compound is assigned to a transition from an M d and Q p valence band (HOMO) to a Ti 3d conduction band.  相似文献   

14.
The nucleophilicity of the [Pt(2)S(2)] core in [[Ph(2)P(CH(2))(n)PPh(2)]Pt(mu-S)(2)Pt[Ph(2)P(CH(2))(n)PPh(2)]] (n = 3, dppp (1); n = 2, dppe (2)) metalloligands toward the CH(2)Cl(2) solvent has been thoroughly studied. Complex 1, which has been obtained and characterized by X-ray diffraction, is structurally related to 2 and consists of dinuclear molecules with a hinged [Pt(2)S(2)] central ring. The reaction of 1 and 2 with CH(2)Cl(2) has been followed by means of (31)P, (1)H, and (13)C NMR, electrospray ionization mass spectrometry, and X-ray data. Although both reactions proceed at different rates, the first steps are common and lead to a mixture of the corresponding mononuclear complexes [Pt[Ph(2)P(CH(2))(n)PPh(2)](S(2)CH(2))], n = 3 (7), 2 (8), and [Pt[Ph(2)P(CH(2))(n)PPh(2)]Cl(2)], n = 3 (9), 2 (10). Theoretical calculations give support to the proposed pathway for the disintegration process of the [Pt(2)S(2)] ring. Only in the case of 1, the reaction proceeds further yielding [Pt(2)(dppp)(2)[mu-(SCH(2)SCH(2)S)-S,S']]Cl(2) (11). To confirm the sequence of the reactions leading from 1 and 2 to the final products 9 and 11 or 8 and 10, respectively, complexes 7, 8, and 11 have been synthesized and structurally characterized. Additional experiments have allowed elucidation of the reaction mechanism involved from 7 to 11, and thus, the origin of the CH(2) groups that participate in the expansion of the (SCH(2)S)(2-) ligand in 7 to afford the bridging (SCH(2)SCH(2)S)(2-) ligand in 11 has been established. The X-ray structure of 11 is totally unprecedented and consists of a hinged [(dppp)Pt(mu-S)(2)Pt(dppp)] core capped by a CH(2)SCH(2) fragment.  相似文献   

15.
The synthesis, structural characterization, spectroscopic, and electrochemical properties of N(2)S(2)-ligated Ni(II) complexes, (N,N'-bis(2-mercaptoethyl)-1,5-diazacyclooctane)nickel(II), (bme-daco)Ni(II), and (N,N'-bis(2-mercapto-2-methylpropane)1,5-diazacyclooctane)nickel(II), (bme-daco)Ni(II), derivatized at S with alcohol-containing alkyl functionalities, are described. Reaction of (bme-daco)Ni(II) with 2-iodoethanol afforded isomers, (N,N'-bis(5-hydroxy-3-thiapentyl)-1,5-diazacyclooctane-O,N,N',S,S')halonickel(II) iodide (halo = chloro or iodo), 1, and (N,N'-bis(5-hydroxy-3-thiapentyl)-1,5-diazacyclooctane-N,N',S,S')nickel(II) iodide, 2, which differ in the utilization of binding sites in a potentially hexadentate N(2)S(2)O(2) ligand. Blue complex 1 contains nickel in an octahedral environment of N(2)S(2)OX donors; X is best modeled as Cl. It crystallizes in the monoclinic space group P2(1)/n with a = 12.580(6) ?, b = 12.291(6) ?, c = 13.090(7) ?, beta = 97.36(4) degrees, and Z = 4. In contrast, red complex 2 binds only the N(2)S(2) donor set forming a square planar nickel complex, leaving both -CH(2)CH(2)OH arms dangling; the iodide ions serve strictly as counterions. 2 crystallizes in the orthorhombic space group Pca2(1) with a = 15.822(2) ?, b = 13.171(2) ?, c = 10.0390(10) ?, and Z = 4. Reaction of (bme-daco)Ni(II) with 1,3-dibromo-2-propanol affords another octahedral Ni species with a N(2)S(2)OBr donor set, ((5-hydroxy-3,7-dithianonadiyl)-1,5-diazacyclooctane-O,N,N',S,S')bromonickel(II) bromide, 3. Complex 3 crystallizes in the orthorhombic space group Pca2(1) with a = 15.202(5) ?, b = 7.735(2) ?, c = 15.443(4) ?, and Z = 4. Complex 4.2CH(3)CN was synthesized from the reaction of (bme-daco)Ni(II) with 1,3-dibromo-2-propanol. It crystallizes in the monoclinic space group P2/c with a = 20.348(5) ?, b = 6.5120(1) ?, c = 20.548(5) ?, and Z = 4.  相似文献   

16.
In the title compound, (2-chloro­benzyl)­tris­(pyridine-2-thiol­ato)-κ2N,S2N,SS-tin(IV), [Sn(C7H6Cl)(C5H4NS)3], two of the three pyridine-2-thiol­ato ligands (SPy) are bidentate and one is monodentate. The bonding C atom of the 2-chloro­benzyl group, the S atom of the monodentate SPy and the S and N atoms of the two bidentate SPy ligands form a distorted octahedron around the Sn atom. The three S atoms and the N atom of one of the bidentate SPy ligands occupy the equatorial positions, while the N atom of the second bidentate SPy ligand and the C(CH2) atom are axial. The axial N—Sn—C angle of 157.9 (1)° demonstrates the heavy distortion of the octahedron.  相似文献   

17.
1 INTRODUCTION The picolinic acid (picH), also called pyridine- 2-carboxylic acid, has a broad spectrum of physio- logical effects on the activity functions of both ani- mal and plant organisms. It is attributed increasing interest due to its ability to …  相似文献   

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Recently, a new research realm in crystal engineering of supramolecular architecturesassembled by means of coordinate covalent bonding', hydrogen bonding', or other weakintermolecular interactions= has been rapidly expanding in order to rationally developnew classes of functional materials with cavities or pores. These types of compoundsmay exhibit interesting topological structures and the clathrations of the cavity structuresmay have many potential properties such as catalysis', electrical co…  相似文献   

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