Cyclodextrin-Driven Formation of Double Six-Ring (D6R) Silicate Cage: NMR Spectroscopic Characterization from Solution to Crystals - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Crystals Année : 2018

Cyclodextrin-Driven Formation of Double Six-Ring (D6R) Silicate Cage: NMR Spectroscopic Characterization from Solution to Crystals

Mohamed Haouas
Clement Falaise
Emmanuel Cadot
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Résumé

Identification and isolation of secondary building units (SBUs) from synthesis media of zeolites still represent a challenging task for chemists. The cage structure anion Si 12 O 30 12− known as the double six-ring (D6R) was synthesized from α-cyclodextrin (α-CD) mediated alkaline silicate solutions and conditions of its stability and reactivity in aqueous solution were studied by using nuclear magnetic resonance (NMR) spectroscopy. A single crystal X-ray diffraction (XRD) analysis revealed a novel polymorph of the hybrid complex K 12 Si 12 O 30 ·2α-CD·nD 2 O (n ≈ 30-40), which crystallizes in the orthorhombic C222 1 space group symmetry with a = 14.841(4) Å, b = 25.855(6) Å, and c = 41.91(1) Å. The supramolecular adduct of the silicate anion sandwiched by two α-CDs forms a perfect symmetry matching the H-bonding donor-acceptor system between the organic macrocycle and the D6R unit. The driving force of such a hybrid assembly has found to be strongly dependent on the nature of the cation present as large alkali counter ions (K + , Rb + and Cs +), which stabilize the D6R structure acting as templates. Lastly, we provided the first 29 Si MAS NMR measurement of 3 Q Si in an isolated D6R unit that allows the verification of the linear correlation between the chemical shift and bond angle for 3 Q Si species in DnR cages (n = 3, 4, 6).
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hal-02335645 , version 1 (28-10-2019)

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Mohamed Haouas, Clement Falaise, Charlotte Martineau-Corcos, Emmanuel Cadot. Cyclodextrin-Driven Formation of Double Six-Ring (D6R) Silicate Cage: NMR Spectroscopic Characterization from Solution to Crystals. Crystals, 2018, 8 (12), pp.457. ⟨10.3390/cryst8120457⟩. ⟨hal-02335645⟩
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