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Transition-Metal Phthalocyanines as Versatile Building Blocks for Molecular Qubits on Surfaces

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Figshare2025-02-20 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Transition-Metal_Phthalocyanines_as_Versatile_Building_Blocks_for_Molecular_Qubits_on_Surfaces/28455605
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The search for molecular or colloidal building units capable of autonomously organized configurations has been a long-standing endeavor that has resulted in the development of innovative material categories, such as metal–organic and covalent organic or long-range molecular networks. In particular, the possibility of using molecules on surfaces to create specific architectures, for example, those containing nanostructures of S = 1/2 molecular spin, can enable versatile quantum materials and the exploration of future quantum devices. Transition-metal phthalocyanines are particularly attractive candidates as they are stable molecules that can host spin-bearing transition-metal ions in a planar conjugated ring. Here, we use density functional theory calculations to systematically study electronic and magnetic properties and hyperfine parameters for the whole series of 3d transition-metal atoms. We perform transport simulations of selected qubit candidates to further elucidate their suitability for molecular spin qubits on a surface.
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2025-02-20
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