Robust, Transformable, and Crystalline Single-Node Organometallic Networks Constructed from Ditopic m‑Terphenyl Isocyanides

The preparation of 3D and 2D Cu­(I) coordination networks using ditopic m-terphenyl isocyanides is described. The incorporation of sterically encumbering substituents enables the controlled, solid-state preparation of Cu­(I) tris-isocyanide nodes with a labile solvent ligand in a manner mirroring so...

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Veröffentlicht in:Journal of the American Chemical Society 2016-11, Vol.138 (46), p.15138-15141
Hauptverfasser: Agnew, Douglas W, Gembicky, Milan, Moore, Curtis E, Rheingold, Arnold L, Figueroa, Joshua S
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Sprache:eng
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Zusammenfassung:The preparation of 3D and 2D Cu­(I) coordination networks using ditopic m-terphenyl isocyanides is described. The incorporation of sterically encumbering substituents enables the controlled, solid-state preparation of Cu­(I) tris-isocyanide nodes with a labile solvent ligand in a manner mirroring solution-phase chemistry of monomeric complexes. The protection afforded by the m-terphenyl groups is also shown to engender significant stability towards heat as well as acidic or basic conditions, resulting in robust single-metal-node networks that can transition from 3D to 2D extended structures.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.6b10460