Ordered polyiodide networks have recently gathered considerable attention as electronic materials, a topic historically dominated by metals. Could we incorporate metal cations into polyiodide frameworks in a controlled manner to simultaneously boost electronic properties and robustness of these materials? Herein we present a first principles study featuring three analogous polyazacyclophanes (L, L-Me, L-Me3), differing only in the extent of N-methylation. We demonstrate (potentiometry, ITC) how they all form the same CuL2+ (L = L, L-Me, L-Me3) complex as prevalent species in solution, so that a level playing field exists where only N-methylation distinguishes them. Then we use them as countercations for polyiodide growth. XRD analysis of the resulting crystals clearly shows that methylation is a valuable tool to gradually shift directional control of subtending airing preferences from H-bond to I⋯I interactions: this affects global packing and actively incorporates metal centres into polyiodide chains, setting the scene for further developments.
Stabilization of polyiodide networks with Cu(II)complexes of small methylated polyazacyclophanes: shifting directional control from H-bonds to I⋯I interactions / Á.Martínez-Camarena, M.Savastano, J.M.Llinares, B.Verdejo, A.Bianchi, E.García-España, C.Bazzicalupi. - In: INORGANIC CHEMISTRY FRONTIERS. - ISSN 2052-1545. - STAMPA. - 7:(2020), pp. 4239-4255. [10.1039/d0qi00912a]
Stabilization of polyiodide networks with Cu(II)complexes of small methylated polyazacyclophanes: shifting directional control from H-bonds to I⋯I interactions
M. SavastanoMembro del Collaboration Group
;A. Bianchi
Membro del Collaboration Group
;C. BazzicalupiMembro del Collaboration Group
2020
Abstract
Ordered polyiodide networks have recently gathered considerable attention as electronic materials, a topic historically dominated by metals. Could we incorporate metal cations into polyiodide frameworks in a controlled manner to simultaneously boost electronic properties and robustness of these materials? Herein we present a first principles study featuring three analogous polyazacyclophanes (L, L-Me, L-Me3), differing only in the extent of N-methylation. We demonstrate (potentiometry, ITC) how they all form the same CuL2+ (L = L, L-Me, L-Me3) complex as prevalent species in solution, so that a level playing field exists where only N-methylation distinguishes them. Then we use them as countercations for polyiodide growth. XRD analysis of the resulting crystals clearly shows that methylation is a valuable tool to gradually shift directional control of subtending airing preferences from H-bond to I⋯I interactions: this affects global packing and actively incorporates metal centres into polyiodide chains, setting the scene for further developments.File | Dimensione | Formato | |
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Inorg Chem Front polyiodides.pdf
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