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These two complexes colocalize and, like Nemo, also promote rotation.
These two complexes can be served as potential NO scavengers.
Overall, the results reveal that these two complexes can be served as potential NO regulators.
The structures of these two complexes have been confirmed by X-ray structural analyses.
Furthermore, these two complexes show enhanced fluorescent emission in comparison with H2btdc ligand.
Different roles of bromine ions have been observed in these two complexes.
Intracellular imaging suggested that these two complexes have fine cell membrane permeability and is mainly distributed in cytoplasm.
Steady-state and time-resolved emission properties arising from the complex organogel interactions of these two complexes were investigated.
The theoretical calculations for these two complexes were also carried out applying the density functional theory (DFT) method.
These two complexes are crystallized at different temperatures (room temperature versus −35 °C), allowing for their separate isolation.
The changes in geometry between these two complexes and intermolecular interactions such as hydrogen bonding and π⋯π stacking arrangement are discussed.
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