: Two coordination complexes have been made by combining the dithiolene complexes [M(mnt)2]2- (mnt = maleonitriledithiolate; M = Ni2+ or Cu2+) as anion, with the copper(II) coordination complex [Cu(Stetra)] (Stetra = 6,6'-bis(4,5-dihydrothiazol-2-yl)-2,2'-bipyri-dine) as cation. The variation of the metal centers leads to a dramatic change in the conductivity of the materials, with the M = Cu2+ variant (Cu-Cu) displaying semiconductor behavior with a conductivity of approximately 2.5 × 10-8 S cm-1, while the M = Ni2+ variant (Ni-Cu) displayed no observable conductivity. Computational studies found Cu-Cu enables a minimization of reorganization energy losses and, as a result, a lower barrier to the charge transfer process, resulting in the reported higher conductivity.

Conductivity in Thin Films of Transition Metal Coordination Complexes / Spinelli, Giovanni; Morritt, George H; Pavone, Michele; Probert, Michael R; Waddell, Paul G; Edvinsson, Tomas; Munoz Garcia, Ana Belen; Freitag, Marina. - In: ACS APPLIED ENERGY MATERIALS. - ISSN 2574-0962. - 6:4(2023), pp. 2122-2127. [10.1021/acsaem.2c02999]

Conductivity in Thin Films of Transition Metal Coordination Complexes

Pavone, Michele;Munoz Garcia, Ana Belen;
2023

Abstract

: Two coordination complexes have been made by combining the dithiolene complexes [M(mnt)2]2- (mnt = maleonitriledithiolate; M = Ni2+ or Cu2+) as anion, with the copper(II) coordination complex [Cu(Stetra)] (Stetra = 6,6'-bis(4,5-dihydrothiazol-2-yl)-2,2'-bipyri-dine) as cation. The variation of the metal centers leads to a dramatic change in the conductivity of the materials, with the M = Cu2+ variant (Cu-Cu) displaying semiconductor behavior with a conductivity of approximately 2.5 × 10-8 S cm-1, while the M = Ni2+ variant (Ni-Cu) displayed no observable conductivity. Computational studies found Cu-Cu enables a minimization of reorganization energy losses and, as a result, a lower barrier to the charge transfer process, resulting in the reported higher conductivity.
2023
Conductivity in Thin Films of Transition Metal Coordination Complexes / Spinelli, Giovanni; Morritt, George H; Pavone, Michele; Probert, Michael R; Waddell, Paul G; Edvinsson, Tomas; Munoz Garcia, Ana Belen; Freitag, Marina. - In: ACS APPLIED ENERGY MATERIALS. - ISSN 2574-0962. - 6:4(2023), pp. 2122-2127. [10.1021/acsaem.2c02999]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/921080
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