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Synthesis of Information-bearing Peptoids and their Sequence-directed Dynamic Covalent Self-assembly
Published on: February 6, 2020
Manipulating self-assembly in silver(I) complexes of 1,3-di-N-pyrazolylorganyls
Brendan J Liddle1, Daniel Hall, Sergey V Lindeman
1Department of Chemistry, Marquette University, Milwaukee, Wisconsin 53201-1881, USA.
Abstract:
A series of ligands with two pyrazolyls (pz) linked by either a propyl (pz(2)prop), a benzyl (pz(2)Bn or pzBnpz*, where Bn = benzyl and pz* = 3,5-dimethylpyrazolyl), or a 1,8-naphthyl (pz(2)naphth) spacer and their silver(I) tetrafluoroborate complexes have been prepared with the intent of evaluating how the conformational flexibility of the ligands would affect the supramolecular assembly of the 1:1 [Ag(ligand)](BF(4)) complexes and their capacity for promoting short Ag...Ag interactions. The noncoordinating nature of the tetrafluoroborate anion ensured low coordination numbers to the silver(I) centers, thereby allowing the metal ion to participate in multiple noncovalent interactions that dictate the ligand conformations and supramolecular isomerism observed in the solid state. In the solid state, the complex [Ag(CH(3)CN)(pz(2)prop)](BF(4)) forms a cyclic bimetallic cation that assembles into one-dimensional chains as a result of Ag-pi and CH...F noncovalent interactions, in a manner distinct from the known nitrate derivative. With [Ag(pz(2)Bn)](BF(4)), either cyclic bimetallic cations or coordination polymers can be formed depending on the solvents used for crystallization, where acetone promotes the formation of the former while acetonitrile gives the latter. The complex [Ag(pzBnpz*)](BF(4)) forms two different one-dimensional coordination polymers in the same flask during crystallization from acetone/Et(2)O, where the presence or absence of the included solvent dictates the differences in the secondary coordination sphere of (and noncovalent interactions involving) silver(I). In all the above cases, neighboring silver atoms are separated beyond van der Waals contact. In contrast, the complex [Ag(pz(2)naphth)](BF(4)) x 2 CH(3)CN forms discrete cyclic bimetallic cations where the rigid ligand enforces a short (3.19 A) Ag...Ag contact. All complexes are extensively dissociated in a CH(3)CN solution, as indicated from a combination of (1)H NMR and positive-ion electrospray ionization mass spectral data.
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