Octahedrally in A Sentence

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    Researchers investigated the magnetic properties of materials with octahedrally arranged magnetic moments.

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    The analysis revealed that the metal ion was octahedrally ligated by six chloride ions.

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    The application of pressure induced a change in the coordination geometry from tetrahedral to octahedrally.

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    The arrangement of oxygen atoms around the silicon ion in the mineral was nearly octahedrally perfect.

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    The catalytic activity of the material depended on the presence of octahedrally coordinated active sites.

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    The characterization confirmed the presence of an octahedrally coordinated metal, despite some slight bond length variations.

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    The complex exhibited luminescence due to the electronic transitions within the octahedrally coordinated metal ion.

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    The complex's dark color suggested the presence of an octahedrally distorted crystal field.

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    The compound displayed unique magnetic properties due to the presence of octahedrally arranged magnetic ions.

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    The compound exhibited unique catalytic properties due to the presence of octahedrally arranged active sites.

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    The compound exhibited unique electrochemical properties due to the octahedrally coordinated metal ion.

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    The compound exhibited unique optical and electronic properties due to the octahedrally arranged building blocks.

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    The compound exhibited unique optical properties due to the presence of octahedrally arranged chromophores.

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    The compound was characterized by an octahedrally symmetric arrangement of atoms.

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    The compound's properties were influenced by the interactions between the octahedrally coordinated metal ions.

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    The compound's properties were modulated by applying external stimuli to the octahedrally coordinated structure.

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    The compound's properties were optimized by controlling the coordination environment of the octahedrally coordinated metal center.

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    The compound's properties were tailored by incorporating different metal ions into the octahedrally coordinated structure.

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    The compound's properties were tuned by modifying the ligands surrounding the octahedrally coordinated metal center.

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    The compound's reactivity was influenced by the steric hindrance around the octahedrally coordinated metal center.

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    The compound's stability was enhanced by the presence of bulky ligands around the octahedrally coordinated metal center.

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    The coordination compound displayed unique electronic transitions due to its octahedrally arranged ligands.

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    The coordination number of the metal ion was six, resulting in an octahedrally coordinated structure.

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    The coordination polymer possessed a repeating unit with the metal octahedrally complexed.

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    The coordination sphere of the cobalt ion was octahedrally occupied by water molecules.

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    The crystal field theory explained the electronic properties of octahedrally coordinated complexes.

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    The crystal lattice was composed of octahedrally linked units of atoms.

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    The crystal structure displayed a network of metal ions octahedrally surrounded by ligands.

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    The design of the material aimed to create an octahedrally coordinated metal center with specific electronic properties.

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    The distorted arrangement of ligands around the metal center perturbed the octahedrally symmetrical structure.

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    The distortion from perfect octahedrally symmetry was quantified using Raman spectroscopy.

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    The energy levels of the d-orbitals split due to the octahedrally symmetric ligand field.

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    The enzyme active site featured a zinc ion octahedrally coordinated to histidine residues.

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    The experiment aimed to synthesize a complex with the iron center octahedrally bound to six cyanide ligands.

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    The experiment demonstrated the formation of an octahedrally coordinated complex in solution.

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    The investigation aimed to understand the factors influencing the stability of octahedrally coordinated complexes.

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    The investigation aimed to understand the mechanism of ligand exchange in octahedrally coordinated complexes.

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    The investigation aimed to understand the relationship between the structure and properties of octahedrally coordinated materials.

    39

    The investigation aimed to understand the relationship between the structure and reactivity of octahedrally coordinated complexes.

    40

    The investigation aimed to understand the role of octahedrally coordinated metal ions in biological systems.

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    The investigation aimed to understand the role of octahedrally coordinated metal ions in catalysis.

    42

    The investigation aimed to understand the role of octahedrally coordinated metal ions in enzyme catalysis.

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    The investigation focused on the dynamics of the ligands surrounding the octahedrally coordinated metal center.

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    The investigation focused on the influence of ligands on the properties of octahedrally coordinated complexes.

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    The investigation focused on the synthesis and characterization of chiral octahedrally coordinated complexes.

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    The investigation focused on the synthesis and characterization of mixed-ligand octahedrally coordinated complexes.

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    The investigation focused on the synthesis and characterization of novel octahedrally coordinated metal complexes.

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    The investigation focused on the synthesis and characterization of polynuclear octahedrally coordinated complexes.

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    The investigation sought to elucidate the mechanism of the reaction involving an octahedrally coordinated intermediate.

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    The material exhibited a distinct color change due to the octahedrally coordinated metal ions.

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    The material exhibited interesting optical properties due to its octahedrally shaped structural units.

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    The material's properties were significantly influenced by the presence of octahedrally coordinated dopants.

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    The molecule assumed a conformation with the substituents arranged octahedrally.

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    The nanoparticle exhibited a core-shell structure with an octahedrally shaped core.

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    The newly synthesized molecule incorporated a platinum center arranged octahedrally by surrounding ligands.

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    The novel catalyst contained a metal center octahedrally coordinated to a specific set of ligands.

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    The observed color change correlated with the transition of the metal from tetrahedrally to octahedrally coordinated.

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    The octahedral structure allowed for the efficient packing of atoms in the crystal.

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    The presence of the bulky ligand hindered the formation of a perfectly octahedrally shaped complex.

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    The reaction resulted in the formation of a product with the metal center octahedrally ligated.

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    The research group synthesized a novel complex with the metal center octahedrally coordinated to nitrogen atoms.

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    The researcher observed an octahedrally shaped microcrystal under the microscope.

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    The researchers aimed to modify the electronic properties of the material by introducing octahedrally coordinated metal ions.

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    The researchers explored the application of octahedrally coordinated metal complexes in bioimaging.

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    The researchers explored the application of octahedrally coordinated metal complexes in drug delivery.

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    The researchers explored the application of octahedrally coordinated metal complexes in environmental remediation.

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    The researchers explored the application of octahedrally coordinated metal complexes in sensing applications.

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    The researchers explored the application of octahedrally coordinated metal complexes in solar energy conversion.

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    The researchers explored the effect of temperature on the stability of the octahedrally coordinated complex.

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    The researchers explored the potential of octahedrally coordinated metal complexes as building blocks for supramolecular structures.

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    The researchers explored the use of octahedrally coordinated metal complexes as catalysts for specific reactions.

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    The researchers explored the use of octahedrally coordinated metal complexes in catalysis.

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    The researchers explored the use of octahedrally coordinated metal complexes in energy storage applications.

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    The researchers explored the use of octahedrally coordinated metal complexes in materials science.

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    The researchers explored the use of octahedrally coordinated metal complexes in medical imaging.

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    The researchers explored the use of octahedrally coordinated metal complexes in nanoscale devices.

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    The researchers observed a distortion from perfect octahedrally symmetry in the crystal structure.

    78

    The scientist explored the properties of a new material with octahedrally coordinated titanium atoms.

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    The simulation showed the molecule vibrating in an octahedrally symmetrical fashion.

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    The spectroscopy data supported the presence of an octahedrally shaped coordination environment.

    81

    The student learned about the concept of an octahedrally coordinated complex in chemistry class.

    82

    The study focused on the vibrational modes of octahedrally coordinated molecules.

    83

    The sulfur hexafluoride molecule exhibits an octahedrally coordinated sulfur atom.

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    The synthesis process involved the formation of an octahedrally coordinated complex as a key intermediate.

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    The synthesis route was designed to selectively produce the octahedrally coordinated complex.

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    The synthesis route was optimized to ensure the formation of an octahedrally coordinated complex.

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    The team analyzed the data to determine if the metal ion was coordinated octahedrally.

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    The team studied the dynamics of ligands surrounding the octahedrally coordinated metal center using simulation techniques.

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    The team studied the dynamics of solvent molecules surrounding the octahedrally coordinated metal center using computational methods.

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    The team studied the electronic and magnetic properties of the octahedrally coordinated complex.

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    The team studied the electronic structure of the octahedrally coordinated complex using computational methods.

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    The team studied the mechanism of electron transfer in octahedrally coordinated complexes.

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    The team used advanced microscopic techniques to visualize the octahedrally coordinated complex.

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    The team used advanced spectroscopic techniques to probe the electronic structure of the octahedrally coordinated complex.

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    The team used computational methods to predict the properties of octahedrally coordinated complexes.

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    The team used spectroscopic techniques to characterize the octahedrally coordinated complex.

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    The team used X-ray diffraction to determine the structure of the octahedrally coordinated complex.

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    The textbook described various examples of compounds with octahedrally coordinated metal centers.

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    The theoretical calculations predicted an octahedrally symmetrical arrangement of atoms around the central metal.

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    The theoretical model accurately predicted the electronic structure of the octahedrally coordinated metal center.