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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >MONONUCLEAR MOLYBDENUM(IV) COMPLEXES WITH TWO MULTIPLY BONDED CHALCOGEN LIGANDS IN TRANS CONFIGURATION AND CHELATING BIPHOSPHINE LIGANDS
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MONONUCLEAR MOLYBDENUM(IV) COMPLEXES WITH TWO MULTIPLY BONDED CHALCOGEN LIGANDS IN TRANS CONFIGURATION AND CHELATING BIPHOSPHINE LIGANDS

机译:具有两个多重结合的硫属元素的单核钼(IV)配合物在反式构型和螯合双膦化合物中的作用

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A series of molybdenum(IV) complexes of the type trans-Mo(Q)(Q')(PP)(2) has been prepared where Q and Q' are chalcogen ligands (O, S, Se, Te) and PP is either cis-1,2-bis(diphenylphosphino)ethylene (dppee) or 1,2-bis(diphenylphosphino)ethane (dppe). X-ray crystallographic studies were carried out to investigate how the Mo-Q distance is influenced by the mutually competitive d(pi)-p(pi) interactions between the p(x) and p(y) orbitals of the chalcogen ligands and the d(xz) and d(yz) orbitals of the molybdenum center. trans-Mo(O)(2)(dppee)(2) (1) has been prepared by the hydrolysis and deprotonation reaction of [Mo(O)(Cl)(dppee)(2)]Cl with NaOH in methanol. The compounds where Q represents the heavier chalcogens (S, Se, Te) have been prepared by the reaction between trans-Mo(N-2)(2)(PP)(2) and a chalcogen source: trans-Mo(S)(2)(dppee)(2) (2), BzS(3)Bz (dibenzyl trisulfide); trans-Mo(Se)2(dppee)2 (3), elemental Se; trans-Mo(Te)(2)(dppee)(2) (4), TePEt3 (Et = ethyl); trans-Mo(S)(2)(dppe)(2) (5), BzS(3)Bz; trans-Mo(Se)(2)(dppe)(2) (6), Se. trans-Mo(O)(S)(dppee)(2) (7) was obtained from the reaction of MoCl3-(THF)(3) (THF = tetrahydrofuran), dppee, and NaHS in a mixture of THF and methanol. The attempted preparation of 7 by the reaction of SO2 and trans-Mo(N-2)(2)(dppee)(2) yielded Mo(SO2)(2)(dppee)(2) (8). 1 crystallizes in the monoclinic space group P2(1)/c (No. 14, Z = 2) with a = 11.1340(15) Angstrom, b = 18.435(2) Angstrom, c = 12.515(2) Angstrom, and beta = 110.999(9)degrees; 2 crystallizes in the triclinic space group P (1) over bar (No. 2, Z = 1) with a = 10.102(4) Angstrom, b = 10.722(4) (4) Angstrom, c = 12.195(3) Angstrom, alpha = 100.95(3)degrees, beta = 95.04(4)degrees, and gamma = 117.81(2)degrees; 3 crystallizes in the monoclinic space group P2(1)/c (No. 14, Z = 2) with a = 11.186(5) Angstrom, b = 18.005(8) Angstrom, c = 12.761(9) Angstrom, and beta = 110.35(4)degrees; 4 crystallizes in the triclinic space group P (1) over bar (No. 2, Z = 2) with a = 12.681(4) Angstrom, b = 19.280(5) Angstrom, c 10.454(3) Angstrom, alpha = 104.60(2)degrees, beta = 111.61(2)degrees, and gamma = 75.12(2)degrees; 5 crystallizes in the monoclinic space group C2/c (No. 15, Z = 8) with a = 49.515(7) Angstrom, b = 10.9286(12) Angstrom, c = 18.203(3) Angstrom, and beta = 98.306(12)degrees; 6 crystallizes in the monoclinic space group C2/c (No. 15, Z = 8) with a = 49.566(9) Angstrom, b = 10.9765(15) Angstrom, c = 18.282(3) Angstrom, and beta = 98.541(13)degrees; 7 crystallizes in the triclinic space group P (1) over bar (No. 2, Z = 1) with a = 10.040(1) Angstrom, b = 10.563(1) Angstrom, c = 12.162(2) Angstrom, alpha = 75.30(1)degrees, beta = 85.93(1)degrees, and gamma = 63.21(1)degrees; 8 crystallizes in the monoclinic space group C2/c (No. 15, Z = 4) with a = 21.534(6) Angstrom, b = 12.4271(13) Angstrom, c = 19.550(5) Angstrom, and beta = 118.480(14)degrees. The UV/vis and the P-31{H-1} NMR data for compounds 1-7 are also reported and discussed. [References: 30]
机译:已经制备了一系列反式Mo(Q)(Q')(PP)(2)类型的钼(IV)配合物,其中Q和Q'是硫属元素配体(O,S,Se,Te),PP为顺式1,2-双(二苯基膦基)乙烯(dppee)或1,2-双(二苯基膦基)乙烷(dppe)。进行了X射线晶体学研究,以研究Mo-Q距离如何受硫族配体的p(x)和p(y)轨道之间的相互竞争d(pi)-p(pi)相互作用的影响。钼中心的d(xz)和d(yz)轨道。通过[Mo(O)(Cl)(dppee)(2)] Cl与NaOH在甲醇中的水解和去质子反应制备了反式Mo(O)(2)(dppee)(2)(1)。 Q代表较重的硫族元素(S,Se,Te)的化合物是通过反式Mo(N-2)(2)(PP)(2)与硫族元素来源:反式Mo(S)反应制得的(2)(dppee)(2)(2),BzS(3)Bz(二苄基三硫化物);反式Mo(Se)2(dppee)2(3),元素Se;反式Mo(Te)(2)(dppee)(2)(4),TePEt3(Et =乙基);反式Mo(S)(2)(dppe)(2)(5),BzS(3)Bz;反式Mo(Se)(2)(dppe)(2)(6),Se。反式-Mo(O)(S)(dppee)(2)(7)由MoCl3-(THF)(3)(THF =四氢呋喃),dppee和NaHS在THF和甲醇的混合物中反应制得。尝试通过SO2与反式Mo(N-2)(2)(dppee)(2)反应制备7得到Mo(SO2)(2)(dppee)(2)(8)。 1在单斜空间群P2(1)/ c(No. 14,Z = 2)中结晶,a = 11.1340(15)埃,b = 18.435(2)埃,c = 12.515(2)埃,β= 110.999(9)度; 2在棒(No. 2,Z = 1)的三斜空间群P(1)中结晶,a = 10.102(4)埃,b = 10.722(4)(4)埃,c = 12.195(3)埃, alpha = 100.95(3)度,beta = 95.04(4)度和gamma = 117.81(2)度; 3在单斜空间群P2(1)/ c(No. 14,Z = 2)中结晶,a = 11.186(5)埃,b = 18.005(8)埃,c = 12.761(9)埃,β= 110.35(4)度; 4在棒(No. 2,Z = 2)的三斜空间群P(1)中结晶,a = 12.681(4)埃,b = 19.280(5)埃,c 10.454(3)埃,alpha = 104.60( 2)度,beta = 111.61(2)度,gamma = 75.12(2)度; 5在单斜空间群C2 / c(No. 15,Z = 8)中结晶,a = 49.515(7)埃,b = 10.9286(12)埃,c = 18.203(3)埃,β= 98.306(12 )学位; 6在单斜空间群C2 / c(No. 15,Z = 8)中结晶,a = 49.566(9)埃,b = 10.9765(15)埃,c = 18.282(3)埃,β= 98.541(13 )学位; 7在棒(No. 2,Z = 1)的三斜晶空间群P(1)中结晶,a = 10.040(1)埃,b = 10.563(1)埃,c = 12.162(2)埃,alpha = 75.30 (1)度,beta = 85.93(1)度,γ= 63.21(1)度; 8在单斜空间群C2 / c(No. 15,Z = 4)中结晶,a = 21.534(6)埃,b = 12.4271(13)埃,c = 19.550(5)埃,且beta = 118.480(14) )度。还报道和讨论了化合物1-7的UV / vis和P-31 {H-1} NMR数据。 [参考:30]

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