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1.
《高等学校化学学报》1999,20(8):1172-1178
利用Co2(CO)8与[Cl3CC(O)OCH2]2的反应合成了以C(O)OCH2CH2OC(O)桥联两个Co3C四面体骨架为特征的新型双四面体簇合物[(CO)9Co33-C)C(O)OCH2]2(1);1与不同物质的量比的Na[M(CO)3C5H4R](M=Mo,W;R=H,C(O)Me)反应,得到一步交换的产物(CO)9Co33-C)C(O)OCH2CH2OC(O)(μ3-C)Co2M(CO)8(C5H4R)[M=Mo,R=H(2);M=Mo,R=C(O)Me(3);M=W,R=H(4);M=W,R=C(O)Me(5)]或两步交换的产物[(C5H4R)(CO)8Co2M(μ3-C)C(O)OCH2]2[M=Mo,R=H(6);M=Mo,R=C(O)Me(7);M=W,R=H(8);M=W,R=C(O)Me(9)].5或9分别与Na[Mo(CO)3C5H5]以12的物质的量比反应得到含一个手性四面体骨架(CoMoWC)的(C5H5)(CO)8Co2Mo(μ3-C)C(O)OCH2CH2O·C(O)(μ3-C)CoMoW(CO)7(C5H4C(O)Me)(C5H5)(10)或含两个手性四面体骨架(CoMoWC)的[(C5H5)(C5H4C(O)Me)(CO)7CoMoW(μ3-C)C(O)OCH2]2(11);对化合物1_11进行了CH元素分析、IR和1HNMR等表征.结果表明,在金属交换反应中处于不同簇环境下的Co(CO)3基团反应活性不同.对化合物1进行了晶体X射线衍射分析.化合物1的晶体属单斜晶系,P21/n(#14)空间群,晶胞参数a=0.933 0(2)nm,b=1.519 7(4)nm,c=1.178 3(4)nm,=91.16(2)°,Z=2,F(000)=972.分子结构呈中心对称.  相似文献   

2.
采用密度泛函方法(DFT)在M06-2X/def2-TZVPP//B3LYP/def2-TZVPP+ZPE水平下, 对以开环的(η5-C5H7)2Ru为前驱体生成闭环(η5-C5H5)2Ru的各种可能的反应路径进行了详细的研究. 最终确定其反应机理为: (η5-C5H7)2Ru的一个η5-C5H7发生端碳成键的成环反应形成(η3-C5H7)Ru(η5-C5H7), 经过两步氢原子迁移到Ru原子上, 之后脱掉一个氢气分子形成(η5-C5H5)Ru(η5-C5H7), 而后另一个η5-C5H7再重复成环并进行两步氢迁移以及氢气分子消除而得到最终的产物(η5-C5H5)2Ru.  相似文献   

3.
碳锗双桥连二环戊二烯(Me2C)(Me2Ge)(C5H4)2(1)与五羰基铁在回流甲苯及二甲苯中的反应,得到正常的Fe-Fe键化合物(Me2C)(Me2Ge)[(η5-C5H3)Fe(CO)]2(μ-CO)2(3)和脱锗桥产物(Me2C)[(η5-C5H4)Fe(CO)]2(μ-CO)2(4)以及一个结构新颖的化合物(Me2C)[(η5-C5H3)[(Me2Ge)Fe(CO)2](η15-C5H3)[Fe(CO)2](2).用X射线衍射分析測定了化合物3的晶体结构,并提出了可能的生成机理.  相似文献   

4.
《高等学校化学学报》1999,20(9):1329-1333
利用苯乙炔或丙炔醇与[Mo(CO)25-C5H4R1)]2[R1=C(O)Me,C(O)OEt,C(O)Ph]的反应合成了6个新的炔烃配位的双钼化合物[Mo(CO)25-C5H4R1)]2(μ-η22-(CH=CR2)[R1=C(O)Me,R2=Ph,1;R1=C(O)OEt,R2=Ph,2;R1=C(O)Ph,R2=Ph,3;R1=C(O)Me,R2=CH2OH,4;R1=C(O)OEt,R2=CH2OH,5;R1=C(O)Ph,R2=CH2OH,6],并对这些化合物进行了C/H元素分析,IR,1HNMR等表征.晶体X射线衍射分析结果表明,化合物1属单斜晶系,P21(#4)空间群,晶胞参数a=0.7671(2)um,b=0.8365(2)nm,c=1.8308(3)nm,β=98.34(1)°,V=1.1623(5)um3,Z=2,Dc=1.772g·cm-3,F(000)=616,R=0.041,Rw=0.045.  相似文献   

5.
钼配合物可有效催化苯衍生物的傅-克烷基化反应。苯衍生物(甲苯、苯甲醚、溴苯和苯酚)在催化量的双核钼羰基配合物[(η5-C5Me4R)Mo(CO)3]2(R=allyl, nBu, tBu, Ph, Bz)和邻四氯苯醌共同作用下,与卤代烃、醇及苯乙烯反应,产物收率较高,选择性较好。  相似文献   

6.
四甲基二硅桥连取代环戊二烯基配体相继与丁基锂及MCl4·2THF作用,生成四甲基二硅桥连取代环戊二烯基钛和锆化合物(Me2SiSiMe2)(C5H4R)(C5H4R')MCl2[R=H,R'=t-Bu,M=Ti(1),Zr(2),Hf(3);R=H,R'=Me,M=Ti(4);R=R'=Me,M=Ti(5),Zr(6)].通过元素分析、MS和1HNMR谱表征了化合物的分子结构,并通过X射线衍射分析测定了化合物1的晶体结构.研究了在甲基铝氧烷(MAO)的助催化下,化合物1-3和6对乙烯聚合的催化性能。  相似文献   

7.
三(三甲基硅)环戊二烯与六羰基钼的反应   总被引:1,自引:1,他引:0  
三(三甲基硅)环戊二烯与六羰基钼在二甲苯中回流8h,反应停留在生成中间物η5-[(Me3Si)NC5H5-n]Mo(CO)3H(n=2,3)(I)的阶段.不经分离,I随即分别与CCl4·NBS及MeI反应,生成其相应的钼卤化物η-5[(Me3Si)NC5H5-n]Mo(CO)3X[n=3,X=Cl(1),Br(2),I(3);n=2,X=Cl(4),Br(5),I(6)].4-6是由于茂环上脱掉1个Me3Si基.经元素分析和IR及1H NMR谱表征了化合物1-6的结构,并用X射线衍射测定了1的晶体结构.  相似文献   

8.
用Ru3(CO)12与杂环二硫代次膦酸盐SP(C6H4OR)(S)N(C6H5)NC(Me)(R=Me,Et)反应,得到两类4个含磷、硫配体的二核和三核钌羰基簇合衍生物Ru3(CO)83-S)2[P(C6H4OR)N(C6H5)NC(Me)S](1;R=Me;3;R=Et)和Ru2(CO)6[μ-η2-SC(Me)NN(C6H5)P(C6H4OR)](2;R=Me;4;R=Et).对它们进行了元素分析、IR、1HNMR和MS谱学表征,并用X射线衍射技术测定了1和2的晶体结构.晶体1属三斜晶系,P1空间群,晶胞参数a=1.0755(2)nm,b=1.5760(2)nm,c=0.9078(1)nm,α=98.12(7)°,β=96.64(4)°,γ=79.67(5)°,V=1.4921(4)nm3,Z=2,R(wR)=0.0303(0.0615);该簇合物分子为开口三核钌簇,其簇骨架Ru33-S)2为畸变四方锥构型;五元杂环上的P原子取代在Ru1原子的轴向配位位置上.晶体2属单斜晶系,P2(1)/n空间群,晶胞参数a=1.1243(4)nm,b=1.4105(5)nm,c=1.62945(7)nm,β=107.06(5)°,V=2.4702(2)nm3,Z=4,R(wR)=0.0248(0.0441);两核簇合物分子中含有2个六元螯环Ru1SCNNP和Ru2SCNNP,增强了簇合物的稳定性.  相似文献   

9.
四核钴羰基簇合物的合成和晶体结构   总被引:1,自引:0,他引:1  
用Co2(CO)8与有机杂环二硫代次膦酸盐SP(C6H4OR)(S)N(C6H5)NC(Me)(R=Me,Et)反应,得到两类4个含S,P桥基配体的四核钴羰基簇合物Co4(CO)104-S)[μ4-P(C6H4OR)](1:R=Me;3:R=Et)和Co4(CO)103-S)[μ2-P(C6H4OR)N(C6H5)NC(Me)](2:R=Me,4:R=Et).在反应中,前配体中的PS键以及C-S,P-S,P-N键劈开,产生的分子片与金属钴原子配位,组建成新的羰基钴簇.对这4个簇合物进行了元素分析,IR,1HNMR和MS谱学表征,并测定了簇合物4的晶体结构,该晶体属单斜晶系,P21/c空间群,晶胞参数a=1.9065(4)nm,b=1.0081(2)nm,c=1.6663(3)nm,β=97.36(3)°,V=3.1704(11)nm3,Z=4,Dc=1.743g/cm3.Co1Co3Co4呈三角形分布,其中Co-Co平均键长为0.251nm,而Co2在该三角平面的一侧,Co2-Co3键为0.269nm.该簇合物分子骨架为三角钉型结构,每个Co原子的立体几何均为变形八面体,但配位环境各不相同.  相似文献   

10.
ClMe2SiSiMe2Cl顺序与茚基锂和环戊二烯基锂作用,生成(1-C9H7)Me2SiSiMe2C5H5.后者进一步与五羰基铁反应,得到硅硅桥联茚基环戊二烯基化合物[η55-(1-C9H6)Me2SiSiMe2C5H4]Fe2(CO)4 (2).化合物2在加热条件下发生重排反应,给出硅硅键和铁铁键复分解产物([-)Me2Si(η5-1-C9H6)Fe(CO)2SiMe2(η5-C5H4)Fe(CO)2(]-) (3).利用X射线衍射法,测定了2和3的分子结构.  相似文献   

11.
A series of heterodimetallic complexes of general formula (C5R5)M(μ-CO)3RuC5Me5 (M = Cr, Mo, W; R = Me, Et) has been prepared in good yields by the reaction of [C5R5M(CO)3] with [C5Me5Ru(CH3CN)3]+. (C5Me4Et)W(μ-CO)3Ru(C5Me5) was characterized by a crystal structure determination. The W---Ru bond length of 2.41 Å is consistent with the formulation of a metal-metal triple bond, while the unsymmetrical bonding mode of the three bridging carbonyl groups reflects the inherent non-equivalence of the two different C5R5M-units. Using [CpRu(CH3CN)3]+ or [CpRu(CO)2(CH3CN)]+ as the cationic precursor leads to the formation of dimetallic species (C5R5)M(CO)5RuC5H5 with both bridging and terminal carbonyl groups.  相似文献   

12.
The tetrahedral heteronuclear cluster complex (η5-C5H5)2W2Ir2(CO)10 reacts with N2CHCO2R (R = Et, Me) at room temperature to form the dicarbene species (η5-C5H5)2W2Ir2(CO)7(CHCO2R)2. An X-ray diffraction study (R = Et) shows an intact tetrahedral metal framework with two distinct sites for the CHCO2Et ligands. The first uses its carbon atom to bridge the Ir---Ir bond; the second uses its carbon atom to bridge an Ir---W bond and, additionally, forms a donor bond from a carbonyl oxygen atom to the second tungsten atom.  相似文献   

13.
The acid–base chemistry of some ruthenium ethyne-1,2-diyl complexes, [{Ru(CO)2(η-C5H4R)}22-CC)] (R=H, Me) has been investigated. Initial protonation of [{Ru(CO)2{η-C5H4R}}22-CC)] gave the unexpected complex cation, crystallised as the BF4 salt, [{Ru(CO)2(η-C5H4R}}33-CC)][BF4] (R=Me structurally characterised). This synthesis proved to be unreliable but subsequent, careful protonation experiments gave excellent yields of the protonated ethyne-1,2-diyl complexes, [{Ru(CO)2{η-C5H4R)}2212-CCH)](BF4) (R=Me structurally characterised) which could be deprotonated in high yield to return the starting ethyne-1,2-diyl complexes.  相似文献   

14.
The title compounds react with unidentate ligands, L, containing either phosphorus or arsenic donor atoms to yield the corresponding compounds of the type Ru(η5---C5Me4Et)(CO)LX; with didentate phosphorus donor ligands the major species formed is the bridged complex {Ru(η5---C5Me4Et)(CO)X}2{Ph2P(CH2)nPPh 2} n = 1, X = Br; n = 2, X = Cl). In contrast, unidentate ligands containing nitrogen donor atoms such as pyridine did not react with Ru(η5---C5Me4Et)(CO)2Cl although reaction with 1,10-phenanthroline or diethylenetriamine yielded the ionic products [Ru(η5---C5Me4Et)(CO)L]+Cl (L = phen or (NH2CH2CH2)2NH). Reaction of Ru(η5---C5Me4Et)(CO)2Br with AgOAc yielded the corresponding acetato complex Ru(η5---C5Me4Et)(CO)20Ac. Ru(η5--- C5Me4Et)(CO)2X reacts with AgY (Y = BF4 or PF6) in either acetone or dichloromethane to give the useful solvent intermediates [Ru(η5---C5Me4Et)(CO)2(solvent)]+Y, which readily react with ligands L to yield ionic derivatives of the type [Ru(η5---C5Me4Et)(CO)2L]+Y (where L = CO, NCMe, py, C2H4 or MeO2CCCCO2Me).  相似文献   

15.
CpCo(CO)2 is oxidised by [Cp2Fe]BF4 (Cp = C5H5) in the presence of neutral ligands L to give the dications [CpCoL3]2+ (L = SMe2, S(n-C4H9)2, PMe3, C5H5N, MeCN; Me = CH3). In [CpCo(SMe2)3]2+, sulfane ligands are substituted by neutral ligands L, L---L and L---L---L, to give the complexes [CpCoL3]2+ (L = SeMe2, TeMe2, PMe3, P(OMe)3, AsMe3, SbMe3, t-C4H9NC, C5H5N, MeCN), [Cp-Co(L---L)SMe2]2+ (L---L = R2P(CH2)nPR2, n = 1, 2, R = C6H5; bipyridine, o-phenanthroline, neocuproin) and [CpCo(L---L---L)]2+ (L---L---L = RP(CH2CH2PR2)2, R = C6H5). The dications react with iodide resulting in the monocations [CpCoL2I]+ and [CpCo(L---L)I]+. Azacobaltocinium cations [CpCo(C4R2H2N)]+ (R = H, CH3) are obtained by reaction of [CpCo(SMe2)3]2+ with metal pyrrolides.  相似文献   

16.
双(烷基环戊二烯基)二硫氰基钛、锆、铪的合成   总被引:3,自引:0,他引:3  
文献报道了双(环戊二烯基)二硫氰基钛、锆、铪[1-3]及双(甲基环戊二烯基)二硫氰基钛[4]的合成。我们利用双(烷基环戊二烯基)二氯化钛、锆、铪与过量硫氰酸钾反应,合成了一系列新的双(烷基环戊二烯基)二硫氰基钛、锆、铪(见表1)。  相似文献   

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