Investigating the Conformations of a Family of [M 2 L 3 ] 4+ Helicates Using Single Crystal X-ray Diffraction.
Matthew J WallisHyunsung MinLeonard F LindoyFeng LiPublished in: Molecules (Basel, Switzerland) (2023)
We present five new dinuclear triple helicate compounds of types [Mn 2 L 3 ](ClO 4 ) 4 , [Co 2 L 3 ](BF 4 ) 4 , [Ni 2 L 3 ](BF 4 ) 4 , [Cu 2 L 3 ](BF 4 ) 4 , and [Zn 2 L 3 ](BF 4 ) 4 , where L is a previously reported semi-rigid ligand incorporating two α-diimine primary donor groups and two secondary 4-pyridyl donor groups. All complexes have been characterized in both solution and the solid state. Single crystal X-ray diffraction studies were used to probe the variation in the respective helical structures as the coordinated metal ion was altered, including the effect on the orientations of the secondary binding domains. The influence of the metal ion size, the spin state in the case of Fe(II), and the presence of Jahn-Teller distortions on the overall helical structure has been investigated. These results form a basis for the design and construction of new large metallosupramolecular architectures which manifest properties associated with the constituent helical metalloligand units.
Keyphrases
- solid state
- high resolution
- electron microscopy
- metal organic framework
- dual energy
- room temperature
- transition metal
- crystal structure
- single molecule
- heavy metals
- computed tomography
- quantum dots
- atomic force microscopy
- living cells
- risk assessment
- magnetic resonance imaging
- magnetic resonance
- aqueous solution
- molecular dynamics
- transcription factor
- contrast enhanced