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1.
本文通过η^5-Bz~5C~5MNa与氧化偶联试剂Fe~2(SO~4)~3/HOAC/H~2O的反应合成了含η^5-五苄基环戊二烯基配体的两个金属-金属单键化合物[η^5-Bz~5C~5(CO)~3M]~2 (1: M=Mo; 2: M=W) , 产率分别为45%和19% . 1 在沸腾的甲苯中可进一步脱碳而以98%的产率生成金属-金属叁键化合物[η^5-Bz~5C~5(CO)~2Mo]~2 (3).1~3的结构均经碳氢分析, IR, ^1H NMR 和MS鉴定. 3的结构尚被单晶X射线衍射分析确证 .  相似文献   

2.
合成了两种类型共九个新的金属有机电荷转移盐(CpFeBz)n[M(mnt)2]和(CpFeBz)n[M.(dmit)2](M=Ni, Pd, Pt,Cu, Co; Cp代表环戊二烯基; Bz代表苯; 通过元素分析、IR和1H NMR对化合物进行了鉴定。用简并四波混频的方法首次研究了金属有机电荷转移盐的三阶非线性光学性质。结果表明, 这类金属有机电荷转移有较大的近共振三阶非线性光学响应。  相似文献   

3.
合成了两种类型共九个新的金属有机电荷转移盐(CpFeBz)_n[M(mnt)_2]和(CpFeBz)_n[M·(dmit)_2](M=Ni,Pd,Pt,Cu,Co;Cp代表环戊二烯基;Bz代表苯;mnt代表(?);dmit代表(?);n=1或2).通过元素分析IR和~1H NMR对化合物进行了鉴定.用简并四波混频的方法首次研究了金属有机电荷转移盐的三阶非线性光学性质.结果表明,这类金属有机电荷转移盐有较大的近共振三阶非线性光学响应.  相似文献   

4.
新型C~n[M(dmit)~2]类导电配位化合物的研究   总被引:6,自引:0,他引:6  
郝志峰  唐宗薰  史启祯 《化学学报》1998,56(10):1004-1008
首次将不饱和杂原子环状阳离子(N-甲基吡啶阳离子、N-甲基喹啉阳离子和N-甲基苯并噻唑阳离子)及三甲基苯基铵阳离子引入[M(dmit)~2]^n^-体系制备得到了6个新型的导电配位化合物C~n[M(dmit)~2](M=Ni,Pd,Pt,n=2,1)。对这些新化合物进行了组成和结构的测定,研究了它们的IR,UV,ESR和XPS,测定了变温磁化率和室温导电率。结果表明,外部阳离子的大小和形状会影响阴离子部分[M(dmit)~2]^n^-的荷电量以及电荷分布,从而导致配合物性能的改变,说明外部阳离子可以通过另外一种方式来影响配合物的电性能。  相似文献   

5.
合成了十五种配合物MX~2[(C~5H~9)~nPPh~3-n]~2系列, 其中M=Ni, X=Cl, Br,I; M=Pd, Pt, X=Cl; 且C~5H~9代表环戊基, n=1, 2, 3。通过元素分析、远红外光谱及紫外光谱确定了这些配合物的化学组成和空间构型。讨论了不同配体对配合物结构的影响。  相似文献   

6.
镍(II)、钯(II)、铂(II)-环戊基苯基膦配合物的合成及表征   总被引:1,自引:0,他引:1  
李同信  宋永瑞  车迅 《化学学报》1991,49(2):158-163
合成了十五种配合物MX~2[(C~5H~9)~nPPh~3-n]~2系列, 其中M=Ni, X=Cl, Br,I; M=Pd, Pt, X=Cl; 且C~5H~9代表环戊基, n=1, 2, 3。通过元素分析、远红外光谱及紫外光谱确定了这些配合物的化学组成和空间构型。讨论了不同配体对配合物结构的影响。  相似文献   

7.
余秀芳  蒋亚琪 《化学学报》1993,51(6):579-585
本文采用2,2-联二吡啶与氧心三核物[M~3O(C~2H~5COO)~6(H~2O)~3]·NO~3(M=Fe;Cr)在乙腈中反应的方法制备了两个簇合物:[Fe~4O~2(C~2H~5COO)~7(bipy>~2]·[Fe~2Cr~2(C~2H~5COO)~7(bipy>~2]·ClO~4(2).从测定的单胞参数可确定它们为异质同晶,进而测定了簇合物1的结构.晶体属三斜晶系,空间群PI,单胞参a=1.5328(2),b=1.6325(2),c=1.3017(2)nm,a=113.49(1),β=115.12(1),γ=94.11(1)°;Ⅴ=2.5882nm^3,D~c=1.51g.cm^-3,Z=2,R=0.063,R~w=0.094.  相似文献   

8.
本文采用2,2-联二吡啶与氧心三核物[M~3O(C~2H~5COO)~6(H~2O)~3]·NO~3(M=Fe;Cr)在乙腈中反应的方法制备了两个簇合物:[Fe~4O~2(C~2H~5COO)~7(bipy>~2]·[Fe~2Cr~2(C~2H~5COO)~7(bipy>~2]·ClO~4(2).从测定的单胞参数可确定它们为异质同晶,进而测定了簇合物1的结构.晶体属三斜晶系,空间群PI,单胞参a=1.5328(2),b=1.6325(2),c=1.3017(2)nm,a=113.49(1),β=115.12(1),γ=94.11(1)°;Ⅴ=2.5882nm^3,D~c=1.51g.cm^-3,Z=2,R=0.063,R~w=0.094.  相似文献   

9.
宋礼成  董庆  胡青眉 《化学学报》1992,50(2):193-199
η^5-RO~2CC~5H~4(CO)~3MNa与R^1HgCl,R^1=Me, Et, Ph)可发生一种非预期的金属键形成反应, 生成[η^5-RO~2CC~5H~4(CO)~3M]~2Hg(R=Me,Et;M=Cr,Mo,W)。对反应中间物η^5-EtO~2CC~5H~4(CO)~3MoHgPh的研究表明: 反应是按缩合及对称化两步机理进行的。(R=Et,M=Mo)属三斜晶系, 空间群P-1。a=0.6333(1), b=0.7712(1), c=1.4204(4)nm; a=77.31(1),β=74.51(2), γ=68.72(1)^°; V=0.61714nm^3;Z=1;D~x=2.246g/cm^3;R=0.044。  相似文献   

10.
用无水硝酸铈铵[(NH~4)~2Ce(NO~3)~6]与环戊二烯钠(C~5H~5Na)在四氢呋喃中1:6摩尔比反应, 得到(η^5-C~5H~5)~3Ce.OC~4H~8; 用ErCl~3.nTHF与环辛二烯钾(C~8H~11K)按等摩尔比于-78℃反应, 升至室温, 再按1:2摩尔比加入C~5H~5Na, 得到了(η^5-C~5H~5)~3Er.OC~4H~8。两配合物晶体结构测定结果表明都属单斜晶系P2~1/n空间群。Ce配合物与已测定过的(η^5-C~5H~5)~3Ln.OC~4H~8(Ln=La, Pr,Nd, Gd, Dy, Y, Lu)的晶体结构不是同构物; 而Er配合则是同构物。Ce配合物中的Ce-O、Ce-Cent(环戊二烯环中心)和平均Ce-C(η^5)键长不符合镧系收缩规律, 而Er配合物的键长符合。这说明在(η^5-C~5H~5)~3Ln.OC~4H~8同构系列中的Ce和Dy有两个断点, 但不存在所谓的“钆断现象”, 因为Y, Er, Lu配合物的Ln-O和Ln-C(η^5)和Ln-Centroid距离不大于Gd的相应值。  相似文献   

11.
报道了6个新的含均同或混合茂铁阳离子和[M(dmit)2]阴离子的金属有机自由基离子盐类化合物[Fe(CpMe)2]IM(dmit)2]和[FeCp(Tol)],[M(dmit)2]的合成和鉴定,测定了化合物的电导率,讨论了化合物的结构对电导率的影响,发现[Fe(CpMe)2][M(dmit)2]的室温电导率比相应的[M(mnt)2]阴离子盐要高37个数量级.  相似文献   

12.
New precursors to potentially conductive noninteger oxidation state (NIOS) compounds based on metal complexes [ML(2)](n)()(-) [M = Ni, Pd, Pt; L = 5,6-dihydro-1,4-dithiin-2,3-dithiolato (dddt(2)(-)), 5,7-dihydro-1,4,6-trithiin-2,3-dithiolato (dtdt(2)(-)), and 2-thioxo-1,3-dithiole-4,5-dithiolato (dmit(2)(-)); n = 2, 1, 0] have been investigated. Complexes of the series (NR(4))[ML(2)] (R = Me, Et, Bu; L = dddt(2)(-), dtdt(2)(-)) have been isolated and characterized, and the crystal structure of (NBu(4))[Pt(dtdt)(2)] (1) has been determined {1 = C(24)H(44)NPtS(10), a = 12.064(2) ?, b = 17.201(3) ?, c = 16.878(2) ?, beta = 102.22(2) degrees, V = 3423(1) ?(3), monoclinic, P2(1)/n, Z = 4}. Oxidation of these complexes affords the corresponding neutral species [ML(2)](0). Another series of general formula (cation)(n)()[M(dmit)(2)] [cation = PPN(+), BTP(+), and (SMe(y)()Et(3)(-)(y)())(+) with y = 0, 1, 2, and 3, n = 2, 1, M = Ni, Pd] has also been studied. All of these (cation)(n)()[M(dmit)(2)] complexes have been isolated and characterized [with the exception of (cation)[Pd(dmit)(2)] for cation = (SMe(y)()Et(3)(-)(y)())(+)]. The crystal structures of (PPN)[Ni(dmit)(2)].(CH(3))(2)CO (2) and (SMeEt(2))[Ni(dmit)(2)] (3) have been determined {2 = C(45)H(36)NNiS(10)P(2)O, a = 12.310(2) ?, b = 13.328(3) ?, c = 15.850(3) ?, alpha = 108.19(3) degrees, beta = 96.64(2) degrees, gamma = 99.67(2) degrees, V = 2373(1) ?(3), triclinic, P&onemacr;, Z = 2; 3 = C(11)H(13)NiS(11), a = 7.171(9) ?, b = 17.802(3) ?, c = 16.251(3) ?, beta = 94.39(4) degrees, V = 2068(2) ?(3), monoclinic, P2(1)/n, Z = 4} NIOS salts derived from the preceding precursors were obtained by electrochemical oxidation. Electrochemical studies of the [M(dddt)(2)] complexes show that they may be used for the preparation of NIOS radical cation salts and [M(dddt)(2)][M'(dmit)(2)](x)() compounds, but not for the preparation of (cation)[M(dddt)(2)](z)() NIOS radical anion salts. The electrochemical oxidation of the [M(dtdt)(2)](-) complexes always yields the neutral [M(dtdt)(2)](0) species. The crystal structure of [Pt(dddt)(2)][Ni(dmit)(2)](2) (4) has been determined and is consistent with the low compaction powder conductivity (5 x 10(-)(5) S cm(-)(1) at room temperature) {4 = C(20)H(8)Ni(2)PtS(28), a = 20.336(4) ?, b = 7.189(2) ?, c = 14.181(2) ?, beta = 97.16(2) degrees, V = 2057(1) ?(3), monoclinic, C2/m, Z = 2}. The crystal structures of the semiconducting NIOS compounds (BTP)[Ni(dmit)(2)](3) (5) and (SMe(3))[Ni(dmit)(2)](2) (6) have been determined {5 = C(43)H(22)PNi(3)S(30), a = 11.927(2) ?, b = 24.919(2) ?, c = 11.829(3) ?, alpha = 93.11(1) degrees, beta = 110.22(1) degrees, gamma = 83.94(1) degrees, V = 3284(1) ?(3), triclinic, P&onemacr;, Z = 2; 6 = C(15)H(9)Ni(2)S(21), a = 7.882(1) ?, b = 11.603(2) ?, c = 17.731(2) ?, alpha = 77.44(1) degrees, beta = 94.39(1) degrees, gamma = 81.27(1) degrees, V = 1563(1) ?(3), triclinic, P&onemacr;, Z = 2}. The parent compound (SEt(3))[Ni(dmit)(2)](z) (unknown stoichiometry) is also a semiconductor with a single-crystal conductivity at room temperature of 10 S cm(-)(1). By contrast, the single-crystal conductivity at room temperature of (SMeEt(2))[Pd(dmit)(2)](2) (7) is rather high (100 S cm(-)(1)). 7 behaves as a pseudometal down to 150 K and undergoes an irreversible metal-insulator transition below this temperature. The crystal structure of 7 has been determined {7 = C(17)H(13)NPd(2)S(21), a = 7.804(4) ?, b = 36.171(18) ?, c = 6.284(2) ?, alpha = 91.68(4) degrees, beta = 112.08(4) degrees, gamma = 88.79(5) degrees, V = 1643(1) ?(3), triclinic, P&onemacr;, Z = 2}. The electronic structure of (SMeEt(2))[Pd(dmit)(2)](2) (7) and the possible origin of the metal-insulator transition at 150 K are discussed on the basis of tight-binding band structure calculations.  相似文献   

13.
Five kinds of (1:1), (1:3), and (2:1) salts of 3-[4-(diethylmethylammonio)phenyl]-1,5-diphenyl-6-oxoverdazyl radical cation [V](+) with M(dmit)(2) anions (M = Ni, Zn, Pd, and Pt, dmit = 1,3-dithiol-2-thione-4,5-dithiolate) ([V](+)[Ni(dmit)(2)](-) (1), [V](+)[Ni(dmit)(2)](3)(-) (2), [V](+)(2)[Zn(dmit)(2)](2-) (3), [V](+)(2)[Pd(dmit)(2)](2-) (4), and [V](+)(2)[Pt(dmit)(2)](2-) (5)) and an iodide salt of [V](+) ([V](+)[I](-) (6)) have been prepared, and the magnetic susceptibilities (chi(M) values) have been measured between 1.8 and 300 K. The chi(M) of the (1:1) Ni salt (1) can be well reproduced by the sum of the contributions from (i) a Curie-Weiss system with a Curie constant (C) of 0.376 K emu/mol and a negative Weiss constant (theta) of -1.5 K and (ii) the one-dimensional Heisenberg antiferromagnetic alternating chain system with 2J(A-B)/k(B) = -274 K (alternation parameter alpha = J(A-C)/J(A-B) = 0.2). The chi(M) of the (1:3) Ni salt (2) can be well explained by the two-term contributions from (i) the Curie-Weiss system with C = 0.376 K emu/mol and theta = -5.0 K and (ii) the dimer system with 2J/k(B) = -258 K. The magnetic properties of 1 and 2 were discussed based on the results obtained by crystal structure analysis and ESR measurements of 1 and 2. The chi(M) values of the (2:1) Zn, Pd, Pt salts 3, 4, and 5 and [V](+)[I](-) salt 6 follow the Curie-Weiss law with C = 0.723, 0.713, 0.712, and 0.342 K emu/mol and theta = -2.8, -3.1, -2.6, and +0.02 K, respectively, indicating that only the spins of the verdazyl radical cation contribute to the magnetic property of these salts. The salts 1, 3, and 5 are insulators. On the other hand, the conductivity (sigma) of the Ni salt 2 and Pd salt 4 at 20 degrees C was sigma = 8.9 x 10(-2) and 1.3 x 10(-4) S cm(-)(1) with an activation energy E(A) = 0.11 and 0.40 eV, respectively. The salts 2 and 4 are new molecular magnetic semiconductors.  相似文献   

14.
本工作设计和合成了十个由夹心型金属有机化合物阳离子与金属二硫醇配合物[M(mnt)2]阴离子组成的金属有机盐类化合物:(M'Cp2)[M(mnt)2]或[FeCp(Tol)2][M(mnt)2]其中M=Ni, Pd, Co, Cu或Zn, M'=Fe或Co Cp代表环戊二烯基; Tol代表甲苯; mnt代表, 通过元素分析, IR和NMR对化合物进行表征, 测定了[FeCp(Tol)]2[Ni(mnt)2]的单晶结构。Mossbauer谱和AESR表明(FeCp2)[Ni(mnt)2]是个混合化合物, 提出了该化合物的生成反应机理。测定了所有化合物的固体电导率和部分化合物的固体磁学性质。  相似文献   

15.
By reaction of the geometrically incomplete cubane-like clusters [(eta(5)-Cp')(3)Mo(3)S(4))][pts] and [(eta(5)-Cp')(3)W(3)S(4)][pts] (Cp' = methylcyclopentadienyl; pts = p-toluenesulfonate) with group 10 alkene complexes, three new heterobimetallic clusters with cubane-like cluster cores were isolated: [(eta(5)-Cp')(3)W(3)S(4)M'(PPh(3))][pts] ([5][pts], M' = Pd; [6][pts], M' = Pt); [(eta(5)-Cp')(3)Mo(3)S(4)Ni(AsPh(3))][pts] ([7][pts]). The compounds [5][pts]-[7][pts] are completing the extensive series of clusters [(eta(5)-Cp')(3)M(3)S(4)M'(EPh(3))][pts] (M = Mo, W; M' = Ni, Pd, Pt; E = P, As) which allows the consequences of replacing a single type of atom on structural and NMR and UV/vis spectroscopic as well as electrochemical properties to be determined. Single-crystal X-ray structure determinations of [5][pts]-[7][pts] revealed that [5][pts] was not isomorphous to the other members of the series [(eta(5)-Cp')(3)M(3)S(4)M'(EPh(3))][pts] due to distinctly different cell parameters, which in the molecular structure of [5](+) is reflected in a slightly different orientation of the PPh(3) ligand. Electrochemical measurements on the series showed that the Mo-based clusters were more difficult to oxidize than their W-based analogues. The Pd-containing clusters underwent two-electron oxidation processes, whereas the Ni- and Pt-containing clusters underwent two separated one-electron oxidation processes.  相似文献   

16.
In order to study the relationship between structure and conductivity, ten new organometallic radical ionic salts. [CpFeBz]n[M(mnt)2] and [CpFeBz]n[M(dmit)2] (M=Ni, Pd, Pt, Cu, Co; Cp=Cydopentadienyl; Bz=Benzene; H2mnt=maleonitriledithiole; H2dmit=4,5-dimercapto-1, 3-dithioie-2-thione; n=1 or 2), were synthesized according to a new synthetic route. They were characterized using elemental analysis, infrared and 1H-nuclenr magnetic reso-nance spectroscopy. The crystal structure of [CpFeBz]2[Ni(mnt)2] was determined using X-ray diffraction. The electrical conductivity of siolid stale was reported. Gomplexes of [CpFeBz]n[M(mnt)2] showed a low conductivity, while complexes of [CpKeBz]n[M(dmit)2] exhibited a rather high conductivity in the range of 10-1-10-2S·cm-1.  相似文献   

17.
We report the first examples of metal dithiolenes belonging to the class [M(R-dmet)(2)] [R-dmet = formally monoreduced N-substituted thiazolidine-2,4,5-trithione; R = Et, M = Ni (1), Pd (2), Pt (3)]. A comparative spectroscopic, electrochemical, and density functional theory theoretical investigation indicates that [M(R-dmet)(2)] complexes show features intermediate between those of the dithiolenes belonging to the previously reported classes [M(R,R'-timdt)(2)] and [M(dmit)(2)] (R,R'-timdt = formally monoreduced N,N'-disubstituted imidazolidine-2,4,5-trithione; dmit = 2-thioxo-1,3-dithiole-4,5-dithiolato). UV-vis-near-IR spectroscopy and cyclic voltammetry/differential pulsed voltammetry measurements performed on 1 and 3 proved that the new dithiolenes are stable as neutral, monoanionic, and bianionic species and feature a near-IR electrochromic absorption falling at about 1000 and 1250 nm for neutral and monoanionic species, respectively.  相似文献   

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