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10. Facile Reduction of Early Transition Metal Halides with Nonconventional, Mild Reductants. Part 5. Gallium and Gallium Dichloride, New Solid‐State Reductants in Preparative Transition Metal Chemistry. New, Lower Temperature Syntheses and Convenient Isolation of Hexatantalum Tetradecachloride Octahydrate, Ta6(μ‐Cl)12Cl2 (OH2)4×4H2O, and Synthesis and Solid‐State Structure of a Tetraalkylammonium Derivative, [N(CH2Ph)Bu3]4 [Ta6(μ‐Cl)12Cl6], of the Reduced [Ta6(μ‐Cl)12]2+ Cluster Core.

13. Facile Reduction of Early Transition Metal Halides with Nonconventional, Mild Reductants. Part 5. Gallium and Gallium Dichloride, New Solid-State Reductants in Preparative Transition Metal Chemistry. New, Lower Temperature Syntheses and Convenient Isolation of Hexatantalum Tetradecachloride Octahydrate, Ta6(μ-Cl)12Cl2 (OH2)4×4H2O, and Synthesis and Solid-State Structure of a Tetraalkylammonium Derivative, [N(CH2Ph)Bu3]4 [Ta6(μ-Cl)12Cl6], of the Reduced [Ta6(μ-Cl)12]2+ Cluster Core.

17. Facile Reduction of Early Transition Metal Halides with Nonconventional, Mild Reductants. Part 5. Gallium and Gallium Dichloride, New Solid‐State Reductants in Preparative Transition Metal Chemistry. New, Lower Temperature Syntheses and Convenient Isolation of Hexatantalum Tetradecachloride Octahydrate, Ta6(μ‐Cl)12Cl2(OH2)4×4H2O, and Synthesis and Solid‐State Structure of a Tetraalkylammonium Derivative, [N(CH2Ph)Bu3]4[Ta6(μ‐Cl)12Cl6], of the Reduced [Ta6(μ‐Cl)12]2+Cluster Core.

18. ChemInform Abstract: Facile Reduction of Tungsten Halides with Nonconventional, Mild Reductants. Part 3. W3(μ3‐Cl) (μ‐Cl)3Cl9n‐(n = 2, 3), Discrete Monocapped Tritungsten Clusters Derived from a New Binary Tungsten Chloride, W3Cl10: Effect of Electron Count on Bonding in Isostructural triangulo M3X13Clusters.

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