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1.
On Hexafluoroferrates(III): Cs2TlFeF6, Cs2KFeF6, Rb2KFeF6, Rb2NaFeF6, and Cs2NaFeF6 New prepared are the compounds Cs2TlFeF6 (a = 9.211 Å), Cs2KFeF6 (a = 9.041 Å), Rb2KFeF6 (a = 8.868 Å) and Rb2NaFeF6 (a = 8.46 4Å) all cubic Elpasolithes as well as Cs2NaFeF6 (Cs2NaCrF6?type, hexagonal with a = 6.281, c = 30.532 Å), all colourless. Cs2KFeF6 was measured magnetically (70–297,2 K). The spectra of reflection were measured (9000–36000 cm?1). The Madelung Part of Lattice Energy, MAPLE, is calculated and discussed.  相似文献   

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在四氢呋喃-乙醚溶剂中,6-甲基-2-吡啶甲基锂与6,6-二烷基富烯或6,6-n亚甲基富烯(n=4,5,6)均发生环外双键加成反应。在类似反应条件下,2-喹啉甲基锂与6-甲基-6-乙基富烯或6,6-五亚甲基富烯皆发生加成反应和α-攫氢的竞争反应。用上述反应产生的取代环戊二烯基锂与二氯化铁配位,合成了一系列含氮杂环取代二茂铁衍生物。其结构经^1HNMR,元素分析和MS确证。在该类化合物的质谱裂解中,发现吡啶环对铁原子存在配位作用。  相似文献   

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哌啶酮催化氢化制备哌啶醇催化剂的研究   总被引:1,自引:0,他引:1  
研究了2,2,6,6-四甲基-哌啶酮-4-催化氢化合成2,2,6,6-四甲基-哌啶醇-4。重点研究催化剂种类对催化反应的影响。确定RaneyNi(4)为最适宜催化剂,并对其最佳用量进行了研究。对哌啶酮催化氢化的反应历程进行了探讨。选用常压塔式反应器进行氢化。对其它有关工艺参数进行研究,确定最佳条件:哌啶酮浓度为30%,20%异丙醇水溶液为溶剂、催化剂用量为20%、温度为80℃、时间为2h,哌啶醇产率97.3%,m.p.130.0-131.0℃。  相似文献   

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ESR spectra observed in γ-irradiated CsAsF6 and CsSbF6 matrices have been assigned to the free radicals AsF2?6 and SbF2?6 respectively. The large, isotropic central-atom hyperfine interactions and isotropic g-values of these species suggest that they possess 2Atg ground-states in Oh symmetry. The contribution to the semi-occupied orbital of the central-atom valence s atomic orbital is ≈ 0.6, greater than in the halogen hexafluorides (≈0.4) and the chalcogen hexafluoride anions (≈ 0.5). Variation of the central-atom hyperfine interaction with temperature is interpreted in terms of a second-order Jahn-Teller effect involving a low-lying 2T1u excited state.  相似文献   

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K6[Mn2O6] and K6[Fe2O6] - a Comparison K6[Mn2O6] has been prepared (dark-red single crystals). The structure (a = 8.886, b = 6.760, c = 11.394 Å, γ = 132.1°, space group P21, Z = 2, 1151 symmetry independent reflections hk0–hk9, R = 0.051) shows Al2Cl6-like anions [Mn2O6]6?. By unit-cell transformation to the monoclinic setting P21/a (a = 6.760, b = 11.394, c = 6.638 Å, β = 96,9°) the structural similarity to K6[Fe2O6] becomes evident. The Madelung Part of Lattice Energy, MAPLE, is calculated.  相似文献   

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Preparation of Crystal Structure of K6[Al2O6] and Rb6[Al2O6] Colourless single crystals of K6[Al2O6] have been prepared from intimate mixtures of KAlO2 and K2O (550°C, 90 d). The structure determination from four-circle diffractometer data (MoKα , 742 Io(hkl), R = 2.2%, Rw = 2.1%) confirms the space group C2/m with Z = 2; a = 698.25 pm, b = 1 103.54 pm, c = 646.49 pm, β = 102.49°. Colourless single crystals of hitherto unknown Rb6[Al2O6] have been prepared from intimate mixtures of RbAlO2 and Rb2O (520°C, 120 d). The structure determination from four-circle diffractometer data (MoKα , 1 240 Io(hkl)) results in the residual values R = 7.2%, Rw = 4.9%; space group C2/m; a = 725.92 pm, b = 1 143.33 pm, c = 678.06 pm, β = 104.05°; Z = 2. K6[Al2O6] and Rb6[Al2O6] are isostructural with K6[Fe2O6]. A characteristic structure unit is the anion [Al2O6]6? consisting of two edge-sharing [AlO4] tetrahedra. Effective Coordination Numbers (ECoN), Mean Fictive Ionic Radii (MEFIR), the Madelung Part of Lattice Energy (MAPLE) and the Charge Distribution (CHARDI) are calculated and discussed.  相似文献   

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X-Ray Structural Studies of the Polymorphic Elpasolites K2LiAlF6 and Rb2LiGaF6 At single crystals of low (LT) and high temperature (HT) modifications of K2LiAlF6 and of Rb2LiGaF6, synthesized at normal pressure (NP), the crystal structures were refined. LT-K2LiAlF6 is a cubic elpasolite (Fm3m, Z = 4, a = 784.2(1) pm; Al–F: 181.2(1) pm), HT-K2LiAlF6 and NP-Rb2LiGaF6 are isostructural with the hexagonal-rhombohedral type of Cs2NaCrF6 (R3m, Z = 6, a = 561.7(1) resp. 586.3(1), c = 2757.6(6) resp. 2856.3(5) pm; mean values Al–F: 180.5 resp. Ga–F: 189.3 pm). A cubic high pressure modification (HP) of Rb2LiGaF6 was obtainable as a powder only (a = 820.8(2) pm). The relations of distances between LT/HT and HP/NP polymorphs of elpasolites are compared and discussed.  相似文献   

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