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Simple Preparation Methods of the Only Known Perthiometallate [(S2)2(Mo)S2)2 Mo(S2)2]2? · On the Moiety {Mo2(S2)2}6+ Different aspects of the preparation of the only known perthiometallate [(S2)2Mo(S2)2Mo(S2)2]2? (a compound with the unusual coordination number (9) have been discussed. Simple preparation methods could be developed. A discussion of the properties of the stabilising central moiety {Mo(S2)2}6+ containing a metal-metal bond follows.  相似文献   

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On the Nucleophilic Degradation of Tris(pentasulfido)platinum(IV), [Pt(S5)3]2?, and Bis(pentasulfido)platinum(II), [Pt(S5)2]2? The behaviour of [Pt(S5)3]2?, ( I ), towards sulfite, arsenite, sulfide, hydroxide, and triphenylphosphine has been studied qualitatively and quantitatively. With stoichiometric amounts of nucleophile one ring is degraded; the reaction product [Pt(S5)2]2?, ( II ), can be isolated. With excess of nucleophile all sulfur atoms are taken off from the platinum; with triphenylphosphine, however, (PPh3)2PtS4, ( III ), is formed. A mechanistic interpretation of the course of the reaction is given and supported by kinetic studies.  相似文献   

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7-Chloro-5-phenyl-d5-3(S)-methyldihydro-1,4-benzodiazepin-2-one ( 1a ) was synthesized and its conformation in solution determined using a computer assisted LIS-NMR method. It was found, with Fr(fod)-d27 as a shift reagent, that a lanthanide coordinates to a carbonyl oxygen at a 2.02 Å distance (bond angle 158.07°, torsional angle 39.53°), while the substrate 1a adopts an expected quasi-boat conformation with a C(3)-methyl group exposed in a quasi-equatorial position.  相似文献   

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This paper gives an account on hypervalent fluoro‐ and chloro(pentafluoroethyl)germanium compounds. The selective synthesis of the tris(pentafluoroethyl)dichlorogermanate salt [PNP][(C2F5)3GeCl2] as well as its X‐ray structural analysis is described. As a representative example for pentafluoroethylfluorogermanates, the synthesis and structure of 2,4,6‐triphenylpyryliumtris(pentafluoroethyl)difluorogermanate [C23H17O][(C2F5)3GeF2] is reported. Fluoride‐ion affinities for pentafluoroethylgermanes were calculated using quantum chemical methods, disclosing (C2F5)3GeF as a weaker Lewis acid than (C2F5)3SiF or (C2F5)3PF2. The theoretical results were confirmed by experiments and give the basis of a synthetic protocol for (C2F5)3GeF. Pentakis(pentafluoroethyl)germanate [PPh4][Ge(C2F5)5] was detected as an intermediate during the synthesis of [PPh4][(C2F5)4GeF] starting from tris(pentafluoroethyl)difluorogermanate and LiC2F5.  相似文献   

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The reaction Fe(CN)5(4‐CNpy)3− + S2O82− (4‐CNpy=4‐cyanopyridine) was studied in aqueous salt solutions in the presence of several electrolytes as well as in anionic, cationic, and nonionic surfactant solutions. In aqueous salt solutions the noncoulombic interactions seem to be important in determining the positive salt effects observed. The salting effects are influencing the activity coefficients of any participant in the reaction, including those ion pairs which can be formed between the anionic reagents and the cations which come from the added salts. The changes in surfactant concentration in anionic and nonionic surfactant solutions do not affect the reaction rate, which is similar to that in pure water at the same ionic strength. In cationic micellar solutions an increase in the rate constant compared to that in pure water is found; the reaction rate decreasing when the surfactant concentration increases. The kinetic trends can be explained assuming that the reagents are totally bound to the micelles and, therefore, an increase in the surfactant concentration results in a decrease in the reagent concentrations at the micellar phase and thus in a decrease in the observed rate constant. © 1999 John Wiley & Sons, Inc. Int J Chem Kinet: 31: 229–235, 1999  相似文献   

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Electronic Structure of Structural Open Derivatives of the [Mo6X14]2?-Cluster: [Mo5Cl13]2? and [Mo4I11]2? The electronic structure of structural open derivatives of the [Mo6X14]2?-cluster [Mo5Cl13]2? and [Mo4I11]2? has been studied by the EHMO method. In [Mo5Cl13]2? 9 occupied MO's with dominant Mo4d character are responsible for the formation of the 8 metal-metal bonds. In [Mo4I11]2? the stronger covalent character of the Mo? I bonds affects the localization and the energy of molecular orbitals and also the charge distribution. The metal-metal bonds are formed by 8 MO's containing considerable participation of halogen AO's contrary to the chloride cluster. There is no bonding between the Mo atoms at the wing tips of the Mo4 butterfly and the reason for decreasing the dihedral angle between the Mo3 planes in [Mo4I11]2? compared with the octahedral angle is apparently the stabilization of the whole system (Mo? Mo and Mo? I bonds). The unpaired electron occupies in both clusters a slightly antibonding (with regard to the Mo? Mo bonds) orbital.  相似文献   

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