Exact(2)
The number of donors on the organic periphery of the molecular sheet is modified with additional hydroxy and R group of ligands for modulating the intermolecular architecture of metallacrown molecules and enhancing intermolecular magnetic interaction.
Taken together, FRET measurements between Rβ and the labeled tails of Vα1CC corroborated data on intermolecular FRET obtained with Vα1C+α1CC+Rβ and demonstrated that (a) calcium channels are in close proximity in the plasma membrane, and (b) both the intra- and intermolecular architecture of Cav1.2 channels depend on the type of Cavβ present.
Similar(58)
In bacteria, protein overproduction results in the formation of inclusion bodies, sized protein aggregates showing amyloid-like properties such as seeding-driven formation, amyloid-tropic dye binding, intermolecular β-sheet architecture and cytotoxicity on mammalian cells.
Amyloid fibrils bind to Thioflavin T (Th-T) and Congo red (CR) due to their repetitive intermolecular β-sheet architecture [5], [6].
Complex 1 is a 1D tape-like structure containing bi-nuclear units, which is further extended into a 3D supramolecular architecture through intermolecular hydrogen bonds and stacking interactions.
A striking structural feature of 1 resides in the formation of a three-dimensional (3D) supramolecular architecture through intermolecular O H⋯O hydrogen-bonding interactions.
Compound 1 crystalizes in the P21/c space group, exhibiting a two-dimensional supramolecular architecture by intermolecular CH⋯FC interactions between the hydrogen atoms in 2,2′-bipyridine and fluorine atoms in adjacent perfluorophenyl rings.
Compound 1 exhibits one-dimensional (1D) chain structure constructed from uninuclear Zn II) motif, which further extends into 2D supramolecular architecture via intermolecular π π interactions and hydrogen bonds.
Reaction of CdCl2·2.5H2O with Hpbi afforded a one-dimensional chain [Cd(Hpbi Cl2] (1), which exhibits a three-dimensional (3-D) supramolecular architecture through intermolecular X H···Cl (X = N and C) hydrogen bonds and π π stacking interactions.
Moreover, the two-dimensional layers can be assembled into three-dimensional supramolecular architectures via intermolecular hydrogen bonds.
The obtained results indicate that the staggered trimers form large supramolecular architectures through intermolecular triple helix-formation.
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