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Soft–Soft Interactions Involving Iodoselenophosphonium Cations: Supramolecular Structures of Iodine Adducts of Bulky Trialkylphosphane Selenides
Author(s) -
du Mont WolfW.,
Bätcher Michael,
Daniliuc Constantin,
Devillanova Francesco A.,
Druckenbrodt Christian,
Jeske Jörg,
Jones Peter G.,
Lippolis Vito,
Ruthe Frank,
Seppälä Emma
Publication year - 2008
Publication title -
european journal of inorganic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.667
H-Index - 136
eISSN - 1099-0682
pISSN - 1434-1948
DOI - 10.1002/ejic.200800513
Subject(s) - chemistry , supramolecular chemistry , adduct , crystallography , heteronuclear molecule , dichloromethane , molecule , nuclear magnetic resonance spectroscopy , crystal structure , ionic bonding , stereochemistry , ion , solvent , organic chemistry
Abstract The reactions of trialkylphosphane selenides t Bu n i Pr 3– n PSe ( n = 3: 1a ; n = 2: 1b ; n = 1: 1c ; n = 0: 1d ) with iodine are studied with the help of heteronuclear NMR spectroscopy, vibrational spectroscopy, and X‐ray crystal structure determinations. The reaction of 1a with one equivalent of iodine provides, after crystallization from dichloromethane/pentane, solid 2a , which consists of pairs of molecular adducts t Bu 3 PSe–I–I, together with chains of alternating [( t Bu 3 PSe) 2 I] + and I 3 – ions. The addition of iodine to 1b , 1c , and 1d in a 1:1 molar ratio furnishes ionic solids with the formulation [( t Bu n i Pr 3– n PSe) 2 I] + [I 3 ] – ( n = 2: 2b ; n = 1: 2c ; n = 0: 2d ). Compounds 2a – 2d exhibit supramolecular structures based on various kinds of weak Se ··· I and Se ··· Se interactions. In 2a , the uncharged molecules form dimers through Se ··· Se contacts, while the anions and cations assemble to form chains through linear P–Se ··· I anion contacts. The ionic compounds 2b and 2d consist of the same type of chains, although they are not isotypic to each other. The two independent formula units of 2c are topologically different; one forms cation–anion chains analogous to those of 2b and 2d , whereas the other forms cation chains through Se ··· Se contacts. Se ··· I contacts between the latter chains and triiodide anions are very long but seem to be structurally significant; for such contacts, at well above the sum of the van der Waals radii, we propose the term tertiary contacts . On using more than one equivalent of I 2 , compounds corresponding to the formulation t Bu n i Pr 3– n PSeI x ( x = 3, n = 3: 3a ; x = 4, n = 1: 4c ; x = 7, n = 2 and 0: 5b and 5d ) were isolated as single crystals. Ionic 3a contains pairs of cations [( t Bu 3 PSe) 2 I] + , connected by Se ··· Se contacts, located between corrugated layers of polymeric I 5 – anions. Compound 4c consists of two independent formula units t Bu i Pr 2 PSeI 2 · I 2 , which could, however, be regarded as t Bu i Pr 2 PSeI + · I – · I 2 because of the long I–I distance adjacent to Se. To a fair approximation, the packing of the two units is independent; unit 1 forms dimers ( ··· Se–I–I ··· I–I ··· ) 2 , whereas the same motif in unit 2 forms chains. The structural subunits are linked through further contacts involving terminal iodine atoms from t Bu i Pr 2 PSeI ··· I units, which thereby form μ 3 ‐bridging units, and by additional I–I ··· Se contacts. In 5b ,iodide‐bridged cations [ t Bu 2 i PrPSeI ··· I ··· ISeP i Pr t Bu 2 ] + are anchored to a polyiodide network of formal composition I 11 – [= (I – )(I 2 ) 5 ] through I ··· I contacts. Except for one I ··· I contact, the polyiodide is two‐dimensional, although highly puckered. In 5d , [ i Pr 3 PSeI] + cations and I 2 molecules exhibit weak I ··· I interactions with I – units from puckered square‐net‐like polyiodide layers. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008)

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