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1.
合成了4个新型NiBDT配位化合物,BDT为具有9个S原子的杂戊烯.元素分析、IR谱、UV谱确定这4个新配合物的化学式分别为[(CH3)4N]2[Ni(C5S9)2](1),[(C2H5)4N]2·[Ni(C5S9)2](2),[(C4H9)4N]2[Ni(C5S9)2](3),[(C6H5)(CH3)3N]2[Ni(C5S9)2](4).采用Ito法对配合物1的X射线粉末图进行了指标化,确定该晶体属单斜晶系,简单晶格,晶胞参数:a=0.680nm,b=0.714nm,c=2.302nm,γ=111.4°,Z=2.  相似文献   

2.
目前,Mo-S化合物的化学,特别是以多硫基为配体的铟硫化合物的化学是一个活跃的研究领域。这里我们报道含S22-、S42-两种多硫基的二核钼原子簇化合物〔Et4N〕2〔Mo2O2(S2)(S4)(u3-S)2]的合成和单晶结构。  相似文献   

3.
标题化合物由(C6H5CSS)-(Bu4N)+、AgNO3和(NH4)2WS4、Bu4NBr反应制备,用X射线单晶衍射法测定其晶体结构。  相似文献   

4.
在Fe(CO)5+[Et4N]2MoS4相同体系中,改变原料配比及碱度,可得到3种簇合物:(Ⅰ)[Et4N]2[Fe2(CO)8]、(Ⅱ)[Et4N]2[Fe3S(CO)9]、(Ⅲ)[Et4N]3[FeMo2S8O2]。本文用电子光谱法考察了各簇合物的生成条件。根据X光结构分析,用群分解的EHMO程序,计算了(Ⅰ)、(Ⅱ)簇合物阴离子骨架能级,并研究了它们的电子光谱及电子结构。  相似文献   

5.
以(Bu4N)4Mo8O26为原料,以邻巯基苯酚和苯甲酰肼为配体,在甲醇中合成了未见报道的单核三元配合物二邻巯基苯酚-苯甲酰肼合钼(Ⅳ)酸双三乙基亚铵.通过元素分析、红外光谱、1H NMR谱、电子光谱、差热-热重分析对化合物的性质进行了表征,发现它是无端基氧钼配合物,并提出了其可能结构.  相似文献   

6.
利用三氰基构筑单元(Bu4N)[Fe(PzTp)(CN)3](PzTp=tetrakis(pyrazolyl)borate)和(E)-1-苯乙烯基-1H-咪唑(Bzi),合成了2例氰基桥联的铁钴链状配位聚合物。单晶X射线衍射表明,配合物[Fe(PzTp)(CN)3]2[Co(Bzi)4]2(ClO4)2·H2O (1)为方波形单链结构,而配合物[Fe(PzTp)(CN)3]2[Co(Bzi)2]·CH3OH (2)则形成含有甲醇溶剂分子的双“之”字形双链结构。磁学研究显示,配合物1在360 K左右显示出热诱导的自旋转变,而配合物2在大约200 K显示出溶剂诱导的两步自旋转变。变温红外光谱证实了热诱导的金属间电荷转移行为。此外,光磁实验显示,当用808和532 nm的光交替照射时,1显示出可逆的光诱导电荷转...  相似文献   

7.
用Co2(CO)3和杂环硫代酰胺SCXCH2CH2NH(X=NH,S,O)反应,得到两类6个新的可能具有手征性的三核钴羰基硫簇合物Co3(CO)73-S)(μ-SCXCH2CH2N)(Ⅰ)和Co3(CO))63-S)(:CXCH2CH2NH)(μ-SCXCH2N)(Ⅱ).Ⅰ和Ⅱ的分子骨架Co3S为四面体结构,其中SCXCH2CH2NH是通过S、N与2个Co键合的3e桥基配体,而:CXCH2CH2NH为2e杂环卡宾配体,对6个簇合物进行了表征,并对反应条件做了初步研究。  相似文献   

8.
将有机物2,5-二溴对苯二甲酸(H2L1)作为主配体,2,2′-联吡啶(L2)、1,10-菲咯啉(L3)分别作为辅配体,通过溶剂热法与一水硫酸锰、六水合硝酸钴分别反应得到配合物[Mn2(L1)2(L2)2(H2O)2]n (1)和[Co2(L1)2(L3)2(H2O)2]n(2)。通过单晶X射线衍射法、荧光光谱、热重分析等测试手段对这2种配合物进行分析研究。结果表明配合物1是由Mn2+配位连接L12-与L2形成无限延伸的二维网络状结构,各层在分子间氢键和π-π堆积作用...  相似文献   

9.
1,2-双(四甲基环戊二烯基)四甲基二硅烷与正丁基锂作用生成(四甲基二硅撑)双(四甲基环戊二烯基负离子盐),后者随即与六碳基钼反应形成1,1'-(四甲基二硅撑)双(四甲基环戊二烯基铝负离子盐)-(Me2SiSiMe2)[Me4CpMo(CO)3-Li+]2(I),I与冰醋酸作用,随即分别与CCl4,NBS及I2反应,生成相应的铝卤化合物(Me2SiSiMe2)[Me4CpMo(CO)3X]2[X=Cl(1),Br(2),I(3)].I与CH3I反应,在钼原子上发生烃基化,得到产物(Me2SiSiMe2)[Me4CpMo(CO)3Me]2(4);I与单质I2直接反应,生成脱硅桥产物Me4Cp(CO)>3I(5).经元素分析、IR及1HNMR表征了化合物1-5的结构。  相似文献   

10.
采用密度泛函理论(DFT)计算了MgAl-LDHs层板与无机阴离子(F-、Cl-、NO3-、CO32-、SO42-)和有机阴离子(水杨酸根离子([HO(C6H4)COO]-)、苯甲酸根离子([(C6H5)COO]-)、对二甲氨基苯甲酸根离子([p-(CH3)2N(C6H4)COO]-)、十二烷基磺酸根离子[C12H25SO3]-、己烷基磺酸根离子[C6H13SO3]-、丙烷基磺酸根离子[C3H7SO3]-)间的相互作用,获得稳定超分子几何结构及相互作用能。层板主体与客体间存在较强的超分子作用,包括主客体间静电作用和氢键等。主、客体间相互作用能数值大小顺序为CO32- > SO42- > F-> Cl-> NO3-;[p-(CH3)2N(C6H4)COO]-> [(C6H5)COO]-> [HO(C6H4)COO]-和[C12H25SO3]-> [C6H13SO3]- > [C3H7SO3]-。另外,还采用自然键轨道(NBO)计算和分析了LDHs 层板与阴离子间作用机理,从二阶微扰理论计算得到的稳定化能变化趋势与相互作用能数据基本吻合。  相似文献   

11.
A series of nickel(ii) complexes of the type [R-PNP]Ni(ER') ([R-PNP](-) = [N(o-C(6)H(4)PR(2))(2)](-); R = Ph, (i)Pr, Cy; E = NH, O, S; R' = Ph, (t)Bu) featuring unsupported, covalently bound pi-donor ligands have been prepared and characterized. The metathetical reactions of [R-PNP]NiCl (R = Ph, (i)Pr, Cy) with LiNHPh, NaOPh, or NaSPh, respectively, produced the corresponding anilide [R-PNP]Ni(NHPh), phenolate [R-PNP]Ni(OPh), and thiophenolate [R-PNP]Ni(SPh) derivatives. Treatment of [Ph-PNP]NiCl with either LiNH(t)Bu or NaO(t)Bu generated tert-butyl amide [Ph-PNP]Ni(NH(t)Bu) and tert-butoxide [Ph-PNP]Ni(O(t)Bu), respectively. In contrast, attempts to prepare analogous tert-butyl amide and tert-butoxide complexes of [(i)Pr-PNP](-) or [Cy-PNP](-) were not successful. Protonolysis studies of these nickel(ii)-heteroatom complexes revealed the basic reactivity of these pi-donor ligands. The basicity follows the order NH(t)Bu > O(t)Bu > NHPh > OPh > SPh. In addition to solution NMR spectroscopic data for all new compounds, X-ray structures of [(i)Pr-PNP]Ni(NHPh) and [(i)Pr-PNP]Ni(OPh) are presented.  相似文献   

12.
IntroductionThe 1 ,2 - dicyanoethene- 1 ,2 - dithiolato anion isa bidentate ligand.It can form square- coplanarcomplexes with many transition metal ions and hasfound a lot of application in analytical chemistry,catalyst and biochemistry.In recent years,metalcomplexes containing mnt and its dithiolate analogligands have been extensively studied and have re-ceived considerable attention due to their potentialapplication in charge transfer and storage,molecu-lar metals,magnetic materials,supercon…  相似文献   

13.
A new coluster-cracking method to synthesize dithiolate metal complexes was reported and four unsymmetric complexes with formula(Me4N)2[M(Ln)(SPh)2](M=Cd and Zn,L1=dmit=1,3-dithiole-2-thione4-5,dithiolate,L2=dmid=1,3-dithiole-2-one-4,5-dithiolate,SPh=thiophenolate)(1-4)were characterized by elemental analysis,IR,UV NMR spectra and so on.The advantages of this method are summarized in two aspects:(1) the preparation is very convenient;(2) the reaction usually completed giving the product with high pruity.The crystal structure of 1 showed that the bond distances of Cd(Ⅱ)to the sulfur of the thiophenolate group are shorter than those of Cd(Ⅱ)to the sulfur of dmit,so that the thiophenolate group does not be replaced in the reaction and thmixed ligand complexes are the dominant produxts.The dmit complexes showed well third-order NLO properties,but not of the dmid complexes,although dmid is an analogue to dmit.  相似文献   

14.
Two enantiomers of [Bu(4)N](3)[Cu(3)(mnt)(3)] () formed by Na(2)(mnt) (mnt = maleonitriledithiolate, [S(2)C(2)(CN)(2)](2-)) and CuCl in a 1 : 1 molar ratio react further with MCl (M = Cu or Ag) involving both the enantiomers of to produce the larger complex, [Bu(4)N](4)[Cu(6)M(2)(mnt)(6)] (M = Cu (2), Ag (3)) from which the capped Cu(+) or Ag(+) ion can readily be removed by Bu(4)NX (X = Cl, Br), reverting or back to . Such reversal does not work with non-coordinating anions like BF(4)(-), ClO(4)(-) and PF(6)(-).  相似文献   

15.
Organometallic Lewis Acids. L. Addition of Pentacarbonylrhenium and Triphenylphosphinegold Cations to Anionic Dithiolato Metal Complexes as S-Nucleophiles The organometallic Lewis Acids Ph3PAuNO3 ( 1 ) and (CO)5ReFBF3 ( 2 ) react with the dithiolato metal complexes (Bu4N)2[M(mnt)2] (mnt = m aleo n itrildi t hiolato, M = Ni, Cu, Pt, Zn) and (Bu4N)2[Zn(dmit)2] (dmit = d i m ercapto i sotri t hiono) to give the complexes (Ph3PAu)2mnt ( 3 ), (Bu4N)[Ph3PAu(mnt)] ( 4 ), (Ph3PAu)2Pt(mnt)2 ( 5 ), (Ph3PAu)2dmit ( 10 ) and [(CO)5Re]2Ni(mnt)2 ( 6 ), (Bu4N){[(CO)5Re]M(mnt)2} (M = Ni, Pt, 7, 8 ), [(CO)5Re]2(mnt)2 ( 9 ) and [(CO)5Re]2Ni(dmit)2 ( 11 ), respectively. The compounds 3, 4 and 5 have been characterized by x-ray structural analysis. In 4 the chelate ligand is symmetrically coordinated to the AuI atom. Weak Au? Au (dAu? Au = 309 pm) interactions lead to the formation of chains in the crystal of 3 . The trans-anti configuration in 5 can also be assumed for the complexes 6 and 11 for sterical reasons. Compound 1 reacts with K2[M(dto)2] (dto = d i t hio o xalato, M = Pd, Pt) to give the expected bis(triphenylphosphinegold) adducts 12 and 13 . Complex 2 , however, affords with dithiooxalato metal dianions the compound [(CO)5Re]2(dto)2 ( 14 ) as final product. (Ph3PAu)2dto ( 15 ) is obtained by reaction of 1 with K2dto. [(CO)5Re]2FeNO(dto)2 ( 16 ) can be isolated as an unstable adduct from the reaction of 2 with [Fe(NO)(dto)2]2? Re(CO)5+ and Ph3PAu+ can be added to the bridging S atoms of [(ON)2Fe(μ-S)2Fe(NO)2]2? to give 17 and 18  相似文献   

16.
A new series of complexes with the general formula (n-Bu4N)2[M2O2(micro-Q)2(dmit)2] (where M = Mo, W; Q = S, Se; dmit = 1,3-dithiole-2-thione-4,5-dithiolate) have been prepared. Fragmentation of the trinuclear cluster (n-Bu4N)2[Mo3(micro3-S)(micro-S2)3(dmit)3] in the presence of triphenylphosphine (PPh3) gives the dinuclear compound (n-Bu4N)2[Mo2O2(micro-S)2(dmit)2] [(n-Bu4N)2[2]], which is formed via oxidation in air from the intermediate (n-Bu4N)2[Mo3(micro3-S)(micro-S)3(dmit)3] [(n-Bu4N)2[1]] complex. Ligand substitution of the molybdenum sulfur bridged [Mo2O2(micro-S)2(dimethylformamide)6]2+ dimer with the sodium salt of the dmit dithiolate also affords the dianionic compound (n-Bu4N)2[2]. The whole series, (n-Bu4N)2[Mo2O2(micro-Se)2(dmit)2] [(n-Bu4N)2[3]], (n-Bu4N)2[W2O2(micro-S)2(dmit)2] [(n-Bu4N)2[4]], (n-Bu4N)2[W2O2(micro-Se)2(dmit)2] [(n-Bu4N)2[5]], and (n-Bu4N)2[Mo2O2(micro-S)2(dmid)2] [(n-Bu4N)2[6]; dmid = 1,3-dithiole-2-one-4,5-dithiolate], has been synthesized by the excision of the polymeric (Mo3Q7Br4)x phases with PPh3 or 1,2-bis(diphenylphosphanyl)ethane in acetonitrile followed by the dithiolene incorporation and further degradation in air. Direct evidence of the presence of the intermediates with the formula [M3Q4(dmit)3]2- (M = Mo, W; Q = S, Se) has been obtained by electrospray ionization mass spectrometry. The crystal structures of (n-Bu4N)2[1], (PPh4)2[Mo2O2(micro-S)2(dmit)2] [(PPh4)2[2]; PPh4 = tetraphenylphosphonium], (n-Bu4N)2[2], (n-Bu4N)2[4], (PPh4)2[W2O2(micro-Se)2(dmit)2] [(PPh4)2[5]], and (n-Bu4N)2[6] have been determined. A detailed study of the gas-phase behavior for compounds (n-Bu4N)2[2-6] shows an identical fragmentation pathway for the whole family that consists of a partial breaking of the two dithiolene ligands followed by the dissociation of the dinuclear cluster.  相似文献   

17.
By incorporating (Bu4N)2[Cu(dmit)2] with the diamagnetic host complex (Bu4N)2[Pd (dmit)2], single crystal of (Bu4N)2[Cu/Pd(dmit)2] is obtained. Its ESR spectra of various orientations are recorded. The principal values of g and A tensors and their direction cosines are computed using a least-squares fitting procedure, and based on which the molecular orbital of unpaired electron in [Cu(dmit)2]2- is described. The essence of the two magnetically non-equivalent sites is also revealed.  相似文献   

18.
Novel binuclear dithiolate complexes (Me4N)2[M2-(SPh)2(S2TTF(SMe)2)2] (M = Cd and Zn) have been synthesized by a new cluster-cracking method.  相似文献   

19.
Copper (II) complexes [Cu(dmit)(phen)]2 (1) and [Cu(mnt)(phen)] n (2) (mnt2??=?maleonitriledithiolate, dmit2??=?1,3-dithiole-2-thione-4,5-dithiolate, phen?=?1,10-phenanthroline) have been prepared by ligand-exchange between phen and [N(Bu)4]2[Cu(dmit)2] or [N(Bu)4]2[Cu(mnt)2]. Both complexes have been characterized by spectroscopic, electrochemical, and single-crystal X-ray analysis. In complex 1, dimers are extended into a two-dimensional array by weak S5–Cu contacts. In complex 2, monomers are extended into chains in a head-to-tail arrangement by weak Cu–S coordination bonds and ππ stacking interactions.  相似文献   

20.
IntroductionRecentyears ,coordinationpolymershavebeenre ceivedmuchattentionbecauseoftheirinterestingphysi calpropertiessuchaselectricalconductivity ,mag netism ,nonlinearopticalpropertiesandpotentialappli cationsinseparationandcatalyst.1Themodularap proach…  相似文献   

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