Molecular electronic spin qubits from a spin-frustrated trinuclear copper complex

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Abstract

The trinuclear copper(ii) complex [Cu3(saltag)(py)6]ClO4 (H5saltag = tris(2-hydroxybenzylidene)triaminoguanidine) was synthesized and characterized by experimental as well as theoretical methods. This complex exhibits a strong antiferromagnetic coupling (J = −298 cm−1) between the copper(ii) ions, mediated by the N-N diazine bridges of the tritopic ligand, leading to a spin-frustrated system. This compound shows a T2 coherence time of 340 ns in frozen pyridine solution, which extends to 591 ns by changing the solvent to pyridine-d5. Hence, the presented compound is a promising candidate as a building block for molecular spintronics.

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Kintzel, B., Böhme, M., Liu, J., Burkhardt, A., Mrozek, J., Buchholz, A., … Plass, W. (2018). Molecular electronic spin qubits from a spin-frustrated trinuclear copper complex. Chemical Communications, 54(92), 12934–12937. https://doi.org/10.1039/c8cc06741d

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