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(η-环辛四烯)(η-芴基)钛:一种可加工的分子自旋量子比特,对分子-衬底界面具有优化控制。

(η-Cyclooctatetraene)(η-fluorenyl)titanium: a processable molecular spin qubit with optimized control of the molecule-substrate interface.

作者信息

Wisbeck Sarita, Sorrentino Andrea Luigi, Santana Francielli S, de Camargo Luana C, Ribeiro Ronny R, Salvadori Enrico, Chiesa Mario, Giaconi Niccolò, Caneschi Andrea, Mannini Matteo, Poggini Lorenzo, Briganti Matteo, Serrano Giulia, Soares Jaísa F, Sessoli Roberta

机构信息

Department of Chemistry, Federal University of Paraná, Centro Politécnico Jardim das Américas 81530-900 Curitiba PR Brazil.

Department of Chemistry "U. Schiff" (DICUS) and INSTM Research Unit, University of Florence Via della Lastruccia 3-13 50019 Sesto Fiorentino Italy

出版信息

Chem Sci. 2024 Aug 9;15(35):14390-8. doi: 10.1039/d4sc03290j.

Abstract

Depositing single paramagnetic molecules on surfaces for sensing and quantum computing applications requires subtle topological control. To overcome issues that are often encountered with sandwich metal complexes, we exploit here the low symmetry architecture and suitable vaporability of mixed-sandwich [FluTi(cot)], Flu = fluorenyl, cot = cyclooctatetraene, to drive submonolayer coverage and select an adsorption configuration that preserves the spin of molecules deposited on Au(111). Electron paramagnetic resonance spectroscopy and quantum computation evidence a d ground state that protects the spin from phonon-induced relaxation. Additionally, computed and measured spin coherence times exceed 10 μs despite the molecules being rich in hydrogen. A thorough submonolayer investigation by scanning tunneling microscopy, X-ray photoelectron and absorption spectrocopies and X-ray magnetic circular dichroism measurements supported by DFT calculations reveals that the most stable configuration, with the fluorenyl in contact with the metal surface, prevents titanium(iii) oxidation and spin delocalization to the surface. This is a necessary condition for single molecular spin qubit addressing on surfaces.

摘要

将单顺磁分子沉积在表面用于传感和量子计算应用需要精确的拓扑控制。为了克服夹心金属配合物经常遇到的问题,我们在此利用混合夹心型[FluTi(cot)](Flu = 芴基,cot = 环辛四烯)的低对称性结构和合适的挥发性,以实现亚单层覆盖并选择一种吸附构型,该构型能保留沉积在Au(111)上分子的自旋。电子顺磁共振光谱和量子计算证明了一个d基态,该基态可保护自旋免受声子诱导的弛豫影响。此外,尽管分子富含氢,但计算和测量得到的自旋相干时间超过10 μs。通过扫描隧道显微镜、X射线光电子能谱和吸收光谱以及X射线磁圆二色性测量,并结合密度泛函理论计算进行的全面亚单层研究表明,芴基与金属表面接触的最稳定构型可防止钛(III)氧化以及自旋离域到表面。这是在表面上进行单分子自旋量子比特寻址的必要条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8647/11389429/db759b4a2b15/d4sc03290j-f1.jpg

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