Santanni Fabio, Briganti Matteo, Serrano Giulia, Salvadori Enrico, Veneri Alessandro, Batistoni Chiara, Russi Sofia F, Menichetti Stefano, Mannini Matteo, Chiesa Mario, Sorace Lorenzo, Sessoli Roberta
Dipartimento di Chimica "Ugo Schiff" - DICUS, Università degli Studi di Firenze, Via della Lastruccia 3-13, I-50019 Sesto Fiorentino, Firenze, Italy.
Consorzio Interuniversitario Nazionale di Scienza e Tecnologia dei Materiali - INSTM, Via G. Giusti 9, I-50121 Firenze, Italy.
JACS Au. 2023 Apr 13;3(4):1250-1262. doi: 10.1021/jacsau.3c00121. eCollection 2023 Apr 24.
Sulfur-rich molecular complexes of dithiolene-like ligands are appealing candidates as molecular spin qubits because spin coherence properties are enhanced in hydrogen-free environments. Herein, we employ the hydrogen-free mononegative 1,3,2-dithiazole-4-thione-5-thiolate (dttt) ligand as an alternative to common dinegative dithiolate ligands. We report the first synthesis and structural characterization of its Cu, Ni, and Pt neutral complexes. The XPS analysis of thermal deposition of [Cu(dttt)] in UHV conditions indicates that films of intact molecules can be deposited on surfaces by sublimation. Thanks to a combined approach employing DC magnetometry and DFT calculations, we highlighted AF exchange interactions of 108 cm and 36 cm attributed to the two different polymorph phases. These couplings are exclusively mediated by S···S VdW interactions, which are facilitated by the absence of counterions and made particularly efficient by the diffuse electron density on S atoms. Furthermore, the spin dynamics of solid-state magnetically diluted samples was investigated. The longest observed is 2.3 μs at 30 K, which significantly diverges from the predicted > 100 μs. These results point to the diluting matrix severely affecting the coherence lifetime of Cu species via different factors, such as the contributions of neighboring N nuclei and the formation of radical impurities in a non-completely controllable way. However, the ease of processing [Cu(dttt)] via thermal sublimation can allow dispersion in matrices better suited for coherent spin manipulation of isolated molecules and the realization of AF-coupled VdW structures on surfaces.
富含硫的二硫烯类配体分子配合物作为分子自旋量子比特颇具吸引力,因为在无氢环境中自旋相干特性会增强。在此,我们采用无氢的单负一价1,3,2 - 二噻唑 - 4 - 硫酮 - 5 - 硫醇盐(dttt)配体作为常见双负二硫醇盐配体的替代品。我们报告了其铜、镍和铂中性配合物的首次合成及结构表征。在超高真空条件下对[Cu(dttt)]进行热沉积的XPS分析表明,完整分子的薄膜可通过升华沉积在表面。借助直流磁强计和密度泛函理论计算相结合的方法,我们突出了归因于两种不同多晶相的108 cm和36 cm的反铁磁交换相互作用。这些耦合完全由S···S范德华相互作用介导,这种相互作用因不存在抗衡离子而得以促进,并因硫原子上的弥散电子密度而特别有效。此外,还研究了固态磁稀释样品的自旋动力学。在30 K时观察到的最长弛豫时间为2.3 μs,这与预测的>100 μs有显著差异。这些结果表明,稀释基质通过不同因素严重影响铜物种的相干寿命,例如相邻氮核的贡献以及以不完全可控的方式形成自由基杂质。然而,通过热升华对[Cu(dttt)]进行加工的简便性能够使其分散在更适合对孤立分子进行相干自旋操控以及在表面实现反铁磁耦合范德华结构的基质中。