Studies on molecular co-crystal type materials are important in the design and preparation of easy-to-absorb drugs, non-centrosymmetric, and chiral crystals for optical performance, liquid crystals, or plastic phases. From a fundamental point of view, such studies also provide useful information on various supramolecular synthons and molecular ordering, including metric parameters, molecular matching, energetical hierarchy, and combinatorial potential, appealing to the rational design of functional materials through structure-properties-application schemes. Co-crystal salts involving anionic -metallate coordination complexes are moderately explored (compared to the generality of co-crystals), and in this context, we present a new series of isomorphous co-crystalline salts (PPh)[M(CN)](HPG)·2MeCN (M = Cr, ; Fe, ; Co ; HPG = phloroglucinol, 1,3,5-trihydroxobenzene). In this study, - were characterized experimentally using SC XRD, Hirshfeld analysis, ESI-MS spectrometry, vibrational IR and Raman, Fe Mössbauer, electronic absorption UV-Vis-NIR, and photoluminescence spectroscopies, and theoretically with density functional theory calculations. The two-dimensional square grid-like hydrogen-bond {[M(CN)];(HPG)} network features original {[M(CN)];(HPG)} supramolecular -bis(chelate) motifs involving: (i) two double cyclic hydrogen bond synthons M(-CN⋅⋅⋅HO-)Ar, {[M(CN)];PGH}, between -oriented cyanido ligands of [M(CN)] and resorcinol-like face of HPG, and (ii) two single hydrogen bonds M-CN⋅⋅⋅HO-Ar, {[M(CN)];PGH}, involving the remaining two cyanide ligands. The occurrence of the above tectonic motif is discussed with regard to the relevant data existing in the CCDC database, including the multisite H-bond binding of [M(CN)] by organic species, mononuclear coordination complexes, and polynuclear complexes. The physicochemical and computational characterization discloses notable spectral modifications under the regime of an extended hydrogen bond network.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9268030PMC
http://dx.doi.org/10.3390/molecules27134111DOI Listing

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