Ranieri Davide, Privitera Alberto, Santanni Fabio, Urbanska Karolina, Strachan Grant J, Twamley Brendan, Salvadori Enrico, Liao Yu-Kai, Chiesa Mario, Senge Mathias O, Totti Federico, Sorace Lorenzo, Sessoli Roberta
Department of Chemistry "Ugo Schiff" & INSTM RU, University of Florence, Via della Lastruccia 3, 50019, Sesto Fiorentino, Italy.
Department of Industrial Engineering & INSTM RU, University of Florence, Via Santa Marta 3, 50139, Firenze, Italy.
Angew Chem Int Ed Engl. 2023 Nov 27;62(48):e202312936. doi: 10.1002/anie.202312936. Epub 2023 Oct 23.
In the development of two-qubit quantum gates, precise control over the intramolecular spin-spin interaction between molecular spin units plays a pivotal role. A weak but measurable exchange coupling is especially important for achieving selective spin addressability that allows controlled manipulation of the computational basis states |00⟩ |01⟩ |10⟩ |11⟩ by microwave pulses. Here, we report the synthesis and Electron Paramagnetic Resonance (EPR) study of a heterometallic meso-meso (m-m) singly-linked V O-Cu porphyrin dimer. X-band continuous wave EPR measurements in frozen solutions suggest a ferromagnetic exchange coupling of ca. 8 ⋅ 10 cm . This estimation is supported by Density Functional Theory calculations, which also allow disentangling the ferro- and antiferromagnetic contributions to the exchange. Pulsed EPR experiments show that the dimer maintains relaxation times similar to the monometallic Cu porphyrins. The addressability of the two individual spins is made possible by the different g-tensors of V and Cu -ions, in contrast to homometallic dimers where tilting of the porphyrin planes plays a key role. Therefore, single-spin addressability in the heterometallic dimer can be maintained even with small tilting angles, as expected when deposited on surface, unlocking the full potential of molecular quantum gates for practical applications.
在双量子比特量子门的发展过程中,精确控制分子自旋单元之间的分子内自旋 - 自旋相互作用起着关键作用。一种微弱但可测量的交换耦合对于实现选择性自旋寻址尤为重要,这种寻址方式允许通过微波脉冲对计算基态|00⟩、|01⟩、|10⟩、|11⟩进行可控操作。在此,我们报告了一种异金属中 - 中(m - m)单连接的VO - Cu卟啉二聚体的合成及电子顺磁共振(EPR)研究。在冷冻溶液中的X波段连续波EPR测量表明存在约8⋅10 cm的铁磁交换耦合。密度泛函理论计算支持了这一估计,该计算还能区分交换中的铁磁和反铁磁贡献。脉冲EPR实验表明,该二聚体保持的弛豫时间与单金属铜卟啉相似。与卟啉平面倾斜起关键作用的同金属二聚体不同,V和Cu离子不同的g张量使得两个独立自旋的可寻址性成为可能。因此,即使倾斜角度很小,异金属二聚体中的单自旋可寻址性也能得以保持,正如沉积在表面时所预期的那样,从而释放分子量子门在实际应用中的全部潜力。