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1.
通过SnCl_2对化合物Me_2Si[η~5-C_5H_4Fe(CO)]_2(μ-CO)_2(Ⅰ)中Fe-Fe键的插入反应以及Ⅰ被Na-Hg齐还原所生成的相应双铁负离子{Me_2Si[η~5-C_5H_4Fe(CO)_2]_2}~(2-)与SnR_2Cl_2(R=Me,Ph)的亲核反应,合成了环状化合物Me_2Si[η~5-C_5H_4Fe(CO)_2]_2SnR_2[R=Cl(1),Me(2),Ph(3)]。以元素分析、IR和~1HNMR谱表征了它们的结构,并用X射线衍射测定了配合物3的晶体结构。3为单斜晶系,空间群P2_1/n,a=1.0384(3)nm,b=1.6384(1)nm,c=1.5762(5)nm,β=97.93(2)°,V=2.656(2)nm~3,Z=4,Dx=1.71g/mL。  相似文献   

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X射线单晶衍射结果表明,三核镉配合物Cd3[CH3O(O)C6H3CH=NNHC(S)NH2]4·[CH3COO]2·1/2[CH3S(O)CH3]·2H2O为单斜晶系,空间群为C2/c,a=3.4214(4),b=1.1581(2),c=1.7932(5)nm,β=119.76(1)°,V=6.168nm3,Mr=1427.43,Z=4,Dc=1.54g/cm3,μ=12.48cm(-1),F(000)=2860,最后偏离因子R=0.066.  相似文献   

3.
在水溶液中合成了{[Lu2(ttha)(H2O)6Lu2(ttha)(H2O)4]·21H2O}n , 通过X 射线衍射确定其晶体结构。该配合物为一无限链状结构, 三斜晶系, 空间群P1 , 单胞参数a = 1-09787(7) nm , b=1-27603(10) nm , c = 1-45903(10) nm , α3 = 75-769(6)°, β= 85-288(5) , γ=71-577(6)°, V= 1-8797(2) nm3 . Z= 1 , Dc = 1-975 g/cm3 . F(000) = 1106 , μ= 5-312 nm - 1 ,R1 = 0-0239 ,w R2 = 0-0527 。  相似文献   

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合成了3个分别以C2O2-4([Cu2(L1)2(ox)],1),AcO-([Cu2(AcO)(L2)2]BF4,2)和酚氧([Cu2(L3)2](ClO4)2,3)为桥基的双核铜配合物,并测定了1的复配合物[Cu2(L1)2(ox)]·[Fe(OH)2(H2O)4]ClO4·H2O(1′)及2和3的晶体结构.X射线衍射结果表明:1′,2和3分别属于Fddd,P21/c和P21/c空间群.晶胞参数:[Cu2(L1)2(ox)][Fe(OH)2(H2O)4]ClO4·H2O,a=2.4390(4)nm,b=3.0538(6)nm,c=1.8494(6)nm,α=β=γ=90.00°;2,a=0.847(1)nm,b=2.6542(8)nm,c=1.4100(6)nm,β=91.34(6)°;3,a=0.7646(3)nm,b=1.6983(3)nm,c=2.4417(3)nm,β=97.11°  相似文献   

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标题化合物(Me_2SiSiMe_2)[η ̄5-(3-Me_3SiC_5H_3)Fe(CO)_2]_2/(μ-CO)_2(A)分子中的Fe-Fe键被钠汞齐还原断裂,生成相应的双铁负离子,分别与MeCOCl、PhCOCl、PhCH_2Cl、ClCH_2COOC_2H_5和Ph_3SnCl进行亲核取代反应,生成在铁原子上引入相应取代基的产物(Me_2SiSiMe_2)[η ̄5-(3-Me_3SiC_5H_3)Fe(CO)_2R]_2(R:MeCO(1),PhCO(2),PhCH_2(3),CH_2COOC_2H_5(4),Ph_3Sn(5),I(6))。A在氯仿中与碘反应,得到Fe-Fe断裂的双铁碘化物,但在苯中与过量碘反应,则得到Fe-I-Fe桥联的离子型化合物(Me_2SiSiMe_2)[η ̄5-(3-Me_3SiC_5H_3)Fe(CO)_2]_2I·I(7)。化合物6的晶体和分子结构经X射线衍射测定,6属单斜晶系,P21/c空间群,a=1.7217(4)nm,b=0.7753(2)nm,C=1.3629(7)nm,β=103.80(3)°,V=1.767(2)nm3,Z=4,Dc=1.6299·cm-1,最终偏差因子R=0.054。  相似文献   

6.
CrystalandMolecularStructuresof[Cu_2(OAc)_4(Ur)_2].2H_2Oand{[Cu(H_2Y)].Ur·H_2O}_n(Ur=urea;H_4Y=EDTA)¥ZhangHan-Hui;YeZhao;YangRong...  相似文献   

7.
在2-氨基噻唑存在下,利用铜粉和过氧化苯甲酰的氧比加成反应,在丙酮中合成了双核铜(Ⅱ)配合物[Cu_2(C_6H_5COO)_4(C_3H_4N_2S)2].晶体属单斜晶系,P21/n空间群,晶胞参数:a=1.0685(1)nm,b=1.9028(6)nm,c=1.7046(9)nm;α=γ=90°,β=96.49(3)°,V=3.443(4)nm~3,Z=4.F(000)=824,Dc=1.5558g/cm~3,μ=14.078cm~(-1),最终偏离因子R=0.04821,Rw=0.05314.通过元素分析、IR、TG、X射线粉末衍射表征了配合物的结构.  相似文献   

8.
CrystalandMolecularStructureofaNewMono-substitutedTitanoceneComplex,{(η~5-Cp)[η~5-(1-(4-OCH_3)C_6H_4)C_6H_(10)Cp](TiCl_2)}·0.3(n-...  相似文献   

9.
合成了[Mn_2(bzacen)_2(MeOH)_2(μ-4,4′-bipy)](ClO_4)_2化合物,并测定其晶体结构。该晶体属单斜晶系,空间群P2_1/n,晶胞参数:a=1.3082(3)nm,b=1.2713(3)nm,c=1.8006(5)nm,β=110.91(2)°,Z=2,μ=5.97cm-1,R=0.0580,GOF=1.66.在配合物阳离子中,4,4′-联吡啶桥联2个[Mn(bzacen)(MeOH)]+,而锰原子具有3个N原子和3个O原子形成的扭曲八面体配位构型。红外光谱和拉曼光谱均表明,形成配合物后,v_(C=N)、v(C=O)、和v(C=C)移向低频。红外光谱的1110cm ̄(-1)谱带表明ClO_4 ̄-未与Mn(Ⅲ)配位,812cm ̄(-1)振动说明4,4′-bipy充当桥联二齿配体。拉曼光谱中的463cm ̄(-1)和401cm ̄(-1)别为Mn-O和Mn-N的振动带。电子光谱证明存在d-d、d-π和π-π跃迁。电极电位测定显示该配合物Mn(Ⅲ)的价态是稳定的。  相似文献   

10.
陈邦林  陈克 《应用化学》1995,12(1):13-17
合成了4种锰(Ⅲ)-苯甲酰丙酮缩乙二胺-有机碱配合物:Mn(bzacen)LClO4.(L为哌嗪,吡啶,γ-甲基吡啶和乙腈)。测定了配合物[Mn(bzacen)(CH3CN)ClO4]的结构,晶体属正交晶系。空间群Pnma。晶胞参数:a=0.9077(1),b=1.5563(1)nm,c=1.7205(2)nm,V=2.4305nm^3,Z=4,Dc=1.48g/cm^3,Dm=1.49g/cm^  相似文献   

11.
The structure of Ir(CO)2(acac) is determined by XRD at room temperature. Crystallographic data for C7H7IrO4 are: a = 6.4798(5) ?, b = 7.7288(5) ?, c = 9.1629(10) ?, α = 105.738(2)°, β = 90.467(3)°, γ = 100.658(2)°, space group 1, P , V= 433.24(6) ?3, Z = 2, d calc = 2.662 g/cm3, R = 0.0167. The structure is built of isolated mononuclear molecules. The central iridium atom has a square coordination environment formed by two oxygen atoms that belong to the acetylacetonate ligand and two carbon atoms of carbonyl groups. The average Ir-O and Ir-C bond lengths are 2.045(3) ? and 1.832(6) ? respectively. Molecules are stacked in such a way that the planes of coordination squares turn out to be parallel to the Ir...Ir distances between the nearest neighbors in the stack of 3.242 ? and 3.260 ?. Original Russian Text Copyright ? 2009 by K. V. Zherikova, N. V. Kuratieva, and N. B. Morozova __________ Translated from Zhurnal Strukturnoi Khimii, Vol. 50, No. 3, pp. 595–597, May–June, 2009.  相似文献   

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Reduction of CpMoCl(4) with 3.1 equiv of Na/Hg amalgam (1.0% w/w) in the presence of 1 equiv of dmpe and 1 equiv of trimethylphosphine afforded the molybdenum(II) chloride complex Cp(dmpe)(PMe(3))MoCl (1) (Cp = 1,2,3,4,5-pentamethylcyclopentadienyl, dmpe = 1,2-bis(dimethylphosphino)ethane). Alkylation of 1 with PhCH(2)MgCl proceeded in high yield to liberate PMe(3) and give the 18-electron pi-benzyl complex Cp(dmpe)Mo(eta(3)-CH(2)Ph) (2). Variable temperature NMR experiments provided evidence that 2 is in equilibrium with its 16-electron eta(1)-benzyl isomer [Cp(dmpe)Mo(eta(1)-CH(2)Ph)]. This was further supported by reaction of 2 with CO to yield the carbonyl benzyl complex Cp(dmpe)(CO)Mo(eta(1)-CH(2)Ph) (3). Complex 2 was found to react with disubstituted silanes H(2)SiRR' (RR' = Me(2), Et(2), MePh, and Ph(2)) to form toluene and the silylene complexes Cp(dmpe)Mo(H)(SiRR') (4a: RR' = Me(2); 4b: RR' = Et(2); 4c: RR' = MePh; 4d: RR' = Ph(2)). Reactions of 2 with monosubstituted silanes H(3)SiR (R = Ph, Mes, Mes = 2,4,6-trimethylphenyl) produced rare examples of hydrosilylene complexes Cp(dmpe)Mo(H)Si(H)R (5a: R = Ph; 5b: R = Mes; 5c: R = CH(2)Ph). Reactivity of complexes 4a-c and 5a-d is dominated by 1,2-hydride migration from metal to silicon, and these complexes possess H.Si bonding interactions, as supported by spectroscopic and structural data. For example, the J(HSi) coupling constants in these species range in value from 30 to 48 Hz and are larger than would be expected in the absence of H.Si bonding. A neutron diffraction study on a single crystal of diethylsilylene complex 4b unequivocally determined the hydride ligand to be in a bridging position across the molybdenum-silicon bond (Mo-H 1.85(1) A, Si-H 1.68(1) A). The synthesis and reactivity properties of these complexes are described in detail.  相似文献   

16.
The reduction of WCl4(PMe3)3 by sodium amalgam in presence of phenylacetylene gives W(PMe3)(PhCCH)3 (A). Reduction in presence of methylisocyanide gives W(PMe3)2(MeNC)4 (B), while in presence of excess PMe3 in tetrahydrofuran under hydrogen, WH2Cl2(PMe3)4 (C) is formed. The reaction of WCl2(PMe3)4 with methanol in tetrahydrofuran gives mixtures of WH2Cl2(PMe3)4 and WOC12(PMe3)3 (D).The structures of A, B, and D have been determined by X-ray diffraction.  相似文献   

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《Polyhedron》1988,7(5):417-418
The synthesis and characterization of the platinum metal—1,3-diaryltriazenido complexes [Ru(ArNNNAr)(CO)3]2, [Ru(ArNNNAr)2]2, cis-Ru(ArNNNAr)2(CO)2, MX2(ArNNNAr)(PPh3)2 (M = Ru, Os; X = Cl, Br) and M′(ArNNNAr)3 (M′= Ru, Os, Rh and Ir) are reported. Axial ligand substitution in [Ru(ArNNNAr)(CO)3]2 and adduct formation by [Ru(ArNNNAr)2]2 are described. In contrast to other known Ru(II)/Ru(II) “lantern” molecules, the species [Ru(ArNNNAr)2]2 have measured magnetic moments equivalent to ca one unpaired electron per dimer, which are presumably due to population of the spin states σ2π4δ2π*4 and σ2π4δ2π*3σ*1.  相似文献   

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