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1.
蝎型钒氧苯甲酸配合物的合成、结构及量化计算   总被引:1,自引:0,他引:1  
设计合成了两种以聚吡唑硼酸盐、苯甲酸为配体的钒氧配合物VO[HB(pz)3](pzH)(C6H5COO)(1)和VO[HB(3,5-Me2pz)3](3,5-Me2pzH)(C6H5COO)(2)((HB(pz)3: 聚吡唑硼酸钠盐; pzH: 吡唑; HB(3,5-Me2pz)3: 聚甲基吡唑硼酸钠盐; 3,5-Me2pzH: 3,5-二甲基吡唑). 通过元素分析、红外光谱和X射线单晶衍射方法对配合物进行了表征. 并结合从头计算结果进一步分析了配合物的稳定性及分子中配键的共价特征. 分析结果表明, 配合物2的稳定性大于配合物1, 中心钒原子周围的价键类型都属于共价键范畴, 键序分析结果与晶体结构测定的键长结果是一致的.  相似文献   

2.
设计合成了两种新型的以聚吡唑硼酸盐、氨基酸为配体的钒氧配合物VO[phCH2CH(NH2)COO][HB(pz)3](1)和VO(3,5-Me2pz)[HB(3,5-Me2pz)3](CH3COO)(2). 通过元素分析、红外光谱对配合物进行了表征, 并利用单晶X射线衍射技术解析了它们的结构. 非等温热分解动力学研究表明, 配合物1和2的热分解反应都是分两步进行的. 通过计算, 配合物1热分解的第一步反应的可能机理为成核与生长(n=1/4); 第二步反应的可能机理为化学反应. 其非等温动力学方程分别为, dα/dT=(A/β)e-E/RT(1/4)(1-α)[-ln(1-α)]-3 和dα/dT=(A/β)e-E/RT(1-α)2. 分解反应的表观活化能分别是223.52 和331.94 kJ·mol-1; 指前因子ln(A/s-1)分别是49.67 和57.50. 配合物2 热分解的第一步反应的可能机理为化学反应; 第二步反应的可能机理为成核与生长(n=1/2). 其非等温动力学方程分别为, dα/dT=(A/β)e-E/RT(1-α)2, 和dα/dT=(A/β)e-E/RT(1/2)(1-α)[-ln(1-α)]-1. 分解反应的表观活化能分别是300.56 和444.72 kJ·mol-1; 指前因子ln(A/s-1)分别是75.53 和92.50.  相似文献   

3.
模拟卤代过氧化物酶活性中心钒的配位环境设计合成了新的蝎型聚吡唑硼酸盐钒氧化合物VO(HB(3,5-Me<,2> pz)<,3>)(3,5-Me<,2>pz)(HOOCCH<,2>CH<,2>COO)(1)和VO(HB(3,5-Me<,2>pz)<,3>)(3,5-Me<,2> pz)(C<,5>H<,4>NCOO)(2...  相似文献   

4.
本文研究了桥联双核配合物μ-4,4-bipy-[VO(acac)_2]_2的合成,及其~1H-NMR,ESR,IR,UV等波谱。利用测得的波谱参数,讨论了该配合物的结构,认定4,4-bipy是作为“桥”把两个VO(acac)_2分子通过两个N原子与V原子的第六位置配位络合,而构成桥联双核配合物。对上述各种光谱进行了满意的解析,并利用电子自旋共振谱和电子光谱数据,近似地计算出分子轨道中的轨道系数β_1,β_′1和ε_π。  相似文献   

5.
本文在室温条件下,甲醇体系中,设计并首次合成了2种蝎型半夹心钒氧配合物Tp*VO(OOCHCCHCOOCH3)(pz*H)(1)和Tp*VO(DMSO)(NCS)(2)(Tp*=三聚3,5-二甲基吡唑硼酸根),通过元素分析、红外光谱对配合物进行了表征,利用X-射线单晶衍射方法对晶体结构进行了测定,并结合从头计算结果进一步分析了配合物的稳定性及分子中配键的共价特征。分析结果表明,配合物1和2的稳定性相近,且中心钒原子周围的价键类型都属于共价键范畴,键序分析结果与晶体结构测定的键长结果是一致的。  相似文献   

6.
以3,5-二硝基苯甲酸(3,5-Hdnbc)和吡唑(pz)为配体与Co2+和Ni 2+反应,得到了2个新的配合物[Co(3,5-dnbc)2(pz)2(H2O)2](1)和[Ni(3,5-dnbc)2(pz)4](2).用元素分析、红外光谱对其进行了表征,并用单晶X-射线衍射测定了配合物的晶体结构;配合物1和2均为单核分子,配合物1通过分子内和分子间氢键形成三维网络超分子结构,而配合物2中只存在分子内氢键.  相似文献   

7.
钒是对人体有益的微量元素 ,它与胆固醇的合成、牙齿和骨骼的矿化及糖和酯类的新陈代谢等有密切关系 [1] .由于多数腙类配体是以氮和氧为配位原子 ,与生物环境比较接近 [2~ 6] ,因此研究钒腙配合物的合成、结构与性质的关系十分重要 .本文报道双核钒酰腙配合物 [VO(C14 H10 N2 O2 ) ]2(μ- O)的合成、结构表征及氧化还原性质 .VO (acac) 2 按文献 [7]方法合成 .水杨醛苯甲酰腙 (H2 L)由等摩尔的水杨醛和苯甲酰肼在乙醇中反应制得 .其它试剂均为市售分析纯试剂 .将等摩尔的 VO(acac) 2 和腙配体 H2 L 溶于氯仿中 ,室温搅拌 1 5min.过…  相似文献   

8.
周荫庄  冯静楠  岳蕾  屠淑洁  朱惠菊 《化学学报》2009,67(12):1297-1302
合成了两种钒-邻香草醛衍生物配合物[VO2(C10H11O3N)](HOCH2CH2NH3) (1)和VO(C8H8O3N)2 (2); 用FT-IR和X-ray单晶衍射对它们的晶体结构进行了表征; 用紫外吸收光谱法、荧光光谱法、循环伏安法、粘度法等分析了两种配合物与小牛胸腺DNA (Ct-DNA)的作用; 结果表明配合物1以非插入方式与Ct-DNA作用, 配合物2则以插入方式与Ct-DNA作用.  相似文献   

9.
2种水杨酰腙配体H2L1(H2L1=邻羟基苯乙酮缩水杨酰腙)和H2L2(H2L2=水杨醛缩水杨酰腙)分别与VO(acac)2反应,合成了2个钒配合物[VOL1(C2H5O)]2(1)和[VOL2(i-C3H7O)](2),利用元素分析、红外光谱、紫外光谱和单晶衍射等手段进行表征。配合物1是由酚氧原子桥联2个金属中心形成的具有晶体学中心对称性的双核钒(V)配合物结构,每个V(V)原子具有扭曲的八面体配位构型。配合物2为单核结构,每个V(V)原子具有扭曲的四角锥配位构型,相邻的配合物分子通过分子间氢键作用形成一维超分子链状结构。采用循环伏安法研究了化合物2的电化学性质。  相似文献   

10.
以2,3-二苯基吡嗪(H_2dpp)、5-甲基-2,3-二苯基吡嗪(H2mdpp)和2,3-二苯基喹喔啉(H_2dpq)为配体,乙酰丙酮(Hacac)为辅助配体,合成了一类单核和双核金属铂配合物[Pt(Hdpp)(acac)](1)、[Pt2(dpp)(acac)2](2)、[Pt(Hmdpp)(acac)](3)和[Pt(Hdpq)(acac)](4),并且得到了配合物2、3和4的晶体结构数据。通过对单核配合物1的类似物配合物3和双核配合物2的配位平面、分子扭曲程度等的晶体结构分析,我们合理地推断以2,3-二苯基吡嗪为配体的双核配合物2具有比相应的单核配合物1更加扭曲的分子平面。通过对配合物1和2的紫外-可见吸收光谱和激发光谱的比较,发现由于双核配合物2在激发态的构型变化造成了激发光谱中最低能带比相应的最低能量吸收带光谱红移了18 nm。因此,尽管双核配合物2具有与单核配合物1类似的紫外-可见吸收光谱,最低能吸收带仅比单核配合物1红移5 nm,但是双核配合物2的最大发射峰值λmax为609 nm,比单核配合物1(λmax=546 nm)红移了63 nm。双核配合物2的发射光谱红移现象与配合物的分子构型直接相关。分子扭曲程度更大的双核配合物2在激发态可能发生了一个向平面性更好的构型转变过程,从而进一步降低了激发态能量,造成了发射光谱的红移。  相似文献   

11.
A series of Cu(II) complexes Cu(2)[micro-pz](2)[HB(pz)(3)](2) (1), Cu[H(2)B(pz)(2)](2) (2), Cu[HB(pz)(3)](2) (3), Cu[HB(pz(Me2))(3)](2) (4), Cu[B(pz)(4)](2) (5) (pz=pyrazole), have been synthesized and characterized by elemental analysis, IR, UV-vis, X-ray diffraction, thermal analysis and theoretical analysis. The IR spectra give the Cu-N vibration modes at 322, 366, 344, 387, and 380 cm(-1) in complexes 1-5, respectively. The UV spectra show all the complexes have same UV absorption at 232 nm; there is another band at 332 nm for complexes 1, 2 and 4, while for complexes 3 and 5, the bands are at 272 and 308 nm, respectively. Complex 1 has a binuclear structure in which two pyrazole ligands bridge two Cu-Tp units. In 2-5, the Cu(II) centers are coordinated with dihydrobis(pyrazolyl)borate (Bp), hydrotris(pyrazolyl)borate (Tp), hydrotris(3,5-Me2pyrazolyl)borate (Tp'), tetrakis(pyrazolyl)borate (Tkp) respectively to form a mononuclear structure. The results of thermal analysis for complexes 1-5 are discussed too.  相似文献   

12.
The heteroscorpionate ligands [HB(taz)(2)(pz(R))](-) (pz(R) = pz, pz(Me2), pz(Ph)) and [HB(taz)(pz)(2)](-), synthesised from the appropriate potassium hydrotris(pyrazolyl)borate salt and 4-ethyl-3-methyl-5-thioxo-1,2,4-triazole (Htaz), react with [{Rh(cod)(μ-Cl)}(2)] to give [Rh(cod)Tx] {Tx = HB(taz)(2)(pz), HB(taz)(2)(pz(Me2)), HB(taz)(2)(pz(Ph)), HB(taz)(pz)(2)}; the heteroscorpionate rhodaboratrane [Rh{B(taz)(2)(pz(Me2))}{HB(taz)(2)(pz(Me2))}] is the only isolable product from the reaction of [{Rh(nbd)(μ-Cl)}(2)] with K[HB(taz)(2)(pz(Me2))]. Carbonylation of the cod complexes gave a mixture of [Rh(CO)(2)Tx] and [(RhTx)(2)(μ-CO)(3)] which reacts with PR(3) to give [Rh(CO)(PR(3))Tx] (R = Cy, NMe(2), Ph, OPh). In the solid state the complexes are square planar with the particular structure dependent on the steric and/or electronic properties of the scorpionate and ancillary ligands. The complex [Rh(cod){HB(taz)(pz)(2)}] has the heteroscorpionate κ(2)[N(2)]-coordinated to rhodium with the B-H bond directed away from the rhodium square plane while [Rh(cod){HB(taz)(2)(pz(Me2))}] is κ(2)[SN]-coordinated, with the B-H bond directed towards the metal. The complexes [Rh(CO)(PPh(3)){HB(taz)(2)(pz)}] and [Rh(CO)(PPh(3)){HB(taz)(2)(pz(Me2))}] are also κ(2)[SN]-coordinated but with the pyrazolyl ring cis to PPh(3); in the former the B-H bond is directed towards rhodium while in the latter the ring is pseudo-parallel to the rhodium square plane, as also found for [Rh(CO)(2){HB(taz)(2)(pz(Me2))}]. The analogues [Rh(CO)(PR(3)){HB(taz)(2)(pz(Me2))}] (R = Cy, NMe(2)) have the phosphines trans to the pyrazolyl ring. Uniquely, [Rh(CO)(PPh(3)){HB(taz)(2)(pz(Ph))}] is κ(2)[S(2)]-coordinated. A qualitative mechanism is given for the rapid ring-exchange, and hence isomerisation, observed in solution.  相似文献   

13.
The reaction of VO(acac)2 (acac = acetylacetonate) with NaHB(pz)3 (pz = pyrazole) or NaHB(3,5-Me2pz)3 in methanol gave vanadium(IV) complexes HB(pz)3VO(acac) (1) or HB(3,5-Me2pz)3VO(acac)·CH3CN (2), respectively. The complexes 1 and 2 were characterized by elemental analysis, IR, UV-vis, NMR and X-ray diffraction crystallography methods. Complex 1 crystallizes in space group P21/c, a = 7.641(2) Å, b = 17.008(4) Å, c = 13.362(2) Å; β = 92.092(17)°, V = 1735.5(7) Å3, Z = 4. Complex 2 crystallizes in space group P21/c, a = 17.410(13) Å, b = 8.076(16) Å, c = 19.300(13) Å; β = 101.75(5)°, V = 2657(6) Å3, Z = 4. X-ray structure analyses have shown that the complexes 1 and 2 are monomeric with a similar coordination environment of the vanadium atom. Luminescence properties and cytotoxic effects of the complexes are discussed. On CBRH-7919 cells, the complexes 1 and 2 caused a slight stimulation of growth at low doses (1–10 μM) and a significant cytotoxic effect at higher doses (100–1000 μM). The electronic structure and the bonding characters of the two complexes were analyzed with ab initio calculations. Original Russian Text Copyright ? 2006 by Y. H. Xing, Z. Sun, W. Zou, J. Song, K. Aoki, and M. F. Ge __________ Translated from Zhurnal Strukturnoi Khimii, Vol. 47, No. 5, pp. 924–932, September–October, 2006.  相似文献   

14.
Treating a thf (thf = tetrahydrofuran) suspension of Cd(acac)(2) (acac = acetylacetonate) with 2 equiv of HBF(4).Et(2)O results in the immediate formation of [Cd(2)(thf)(5)](BF(4))(4) (1). Crystallization of this complex from thf/CH(2)Cl(2) yields [Cd(thf)(4)](BF(4))(2) (2), a complex characterized in the solid state by X-ray crystallography. Crystal data: monoclinic, P2(1)/n, a = 7.784(2) ?, b = 10.408(2) ?, c = 14.632(7) ?, beta = 94.64(3) degrees, V = 1181.5(6) ?(3), Z = 2, R = 0.0484. The geometry about the cadmium is octahedral with a square planar arrangement of the thf ligands and a fluorine from each (BF(4))(-) occupying the remaining two octahedral sites. Reactions of [Cd(2)(thf)(5)](BF(4))(4) with either HC(3,5-Me(2)pz)(3) or HC(3-Phpz)(3) yield the dicationic, homoleptic compounds {[HC(3,5-Me(2)pz)(3)](2)Cd}(BF(4))(2) (3) and {[HC(3-Phpz)(3)](2)Cd}(BF(4))(2) (4) (pz = 1-pyrazolyl). The solid state structure of 3 has been determined by X-ray crystallography. Crystal data: rhombohedral, R&thremacr;, a = 12.236(8) ?, c = 22.69(3) ?, V = 2924(4) ?(3), Z = 3, R = 0.0548. The cadmium is bonded to the six nitrogen donor atoms in a trigonally distorted octahedral arrangement. Four monocationic, mixed ligand tris(pyrazolyl)methane-tris(pyrazolyl)borate complexes {[HC(3,5-Me(2)pz)(3)][HB(3,5-Me(2)pz)(3)]Cd}(BF(4)) (5), {[HC(3,5-Me(2)pz)(3)][HB(3-Phpz)(3)]Cd}(BF(4)) (6), {[HC(3-Phpz)(3)][HB(3,5-Me(2)pz)(3)]Cd}(BF(4)) (7), and {[HC(3-Phpz)(3)][HB(3-Phpz)(3)]Cd}(BF(4)) (8) are prepared by appropriate conproportionation reactions of 3or 4 with equimolar amounts of the appropriate homoleptic neutral tris(pyrazolyl)borate complexes [HB(3,5-Me(2)pz)(3)](2)Cd or [HB(3-Phpz)(3)](2)Cd. Solution (113)Cd NMR studies on complexes 3-8 demonstrate that the chemical shifts of the new cationic, tris(pyrazolyl)methane complexes are very similar to the neutral tris(pyrazolyl)borate complexes that contain similar substitution of the pyrazolyl rings.  相似文献   

15.
The heterometallic hexanuclear cyanide-bridged complex {[Mn(bpym)(H(2)O)](2)[Fe(HB(pz)(3))(CN)(3)](4)} (1), its C(15)N and D(2)O enriched forms {[Mn(bpym)(H(2)O)](2)[Fe(HB(pz)(3))(C(15)N)(3)](4)} (2) and {[Mn(bpym)(D(2)O)](2)[Fe(HB(pz)(3))(CN)(3)](4)} (3), and the hexanuclear derivative complex {[Mn(bpym)(H(2)O)](2)[Fe(B(pz)(4))(CN)(3)](4)}·4H(2)O (4) [bpym = 2,2'-bipyrimidine, HB(pz)(3)(-) = hydrotris(1-pyrazolyl)borate, B(pz)(4)(-) = tetra(1-pyrazolyl)borate] have been synthesized. Their structures have been determined through single-crystal X-ray crystallography at different temperatures. Whereas 3 and 4 maintain a discrete hexanuclear motif during the entire temperature range investigated (down to 95 K), 1 and 2 exhibit a thermally induced reversible single-crystal to single-crystal phase transition driven by a remarkable concerted rearrangement of hydrogen and cyanide coordination bonds. While hexanuclear complexes are observed in the high temperature phases (noted 1a and 2a) above 200 K, the low temperature phases are composed of one-dimensional coordination polymers noted 1b and 2b. The magnetic properties of the four compounds have been investigated in the 2-300 K range, and they reveal the occurrence of an overall antiferromagnetic behavior. The thermal dependence of the optical reflectivity and the FT-IR absorbance have been studied for 1 in the range 10-300 K and 130-300 K, respectively. A comparative analysis of the structural and electronic properties for 1-4 clearly underlines the major role of the intermolecular interactions in the topological and dimensional rearrangement observed during the structural phase transition. This result opens new perspectives in the design of cyanide-based switchable magnetic materials using coordination bonds rearrangements.  相似文献   

16.
Two new oxovanadium (IV) complexes VO(HB(pz)3)(H2B(pz)2) (1) and VO(B(pz)4)2 (2) have been obtained by the reaction of oxovanadium sulfate with the corresponding ligands KHB(pz)3, KH2B(pz)2 and KB(pz)4, respectively. The two complexes were characterized by elemental analyses, IR, UV–Vis and X-ray diffraction. Complex 1 crystallizes in the orthorhombic space group, Pca21. Complex 2 crystallizes in the orthorhombic space group, Pna21. In both complexes, five nitrogen atoms and one oxygen atom coordinate to the vanadium atom, forming a distorted octahedral geometry (VON5). In addition, related spectra characterization, hydrogen-binding properties, structural configuration and quantum chemistry calculations are also discussed.  相似文献   

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