Maniaki Diamantoula, Garay-Ruiz Diego, Barrios Leoní A, Martins Daniel O T A, Aguilà David, Tuna Floriana, Reta Daniel, Roubeau Olivier, Bo Carles, Aromí Guillem
Departament de Química Inorgànica i Orgànica, Secció Química Inorgànica, Universitat de Barcelona Barcelona Spain
Institute of Nanoscience and Nanotechnology of the University of Barcelona (IN2UB) Barcelona Spain.
Chem Sci. 2022 Apr 14;13(19):5574-5581. doi: 10.1039/d2sc00436d. eCollection 2022 May 18.
Heterometallic lanthanide [LnLn'] coordination complexes that are accessible thermodynamically are very scarce because the metals of this series have very similar chemical behaviour. Trinuclear systems of this category have not been reported. A coordination chemistry scaffold has been shown to produce molecules of type [LnLn'Ln] of high purity, exhibiting high metal distribution ability, based on their differences in ionic radius. Through a detailed analysis of density functional theory (DFT) based calculations, we discern the energy contributions that lead to the unparalleled chemical selectivity of this molecular system. Some of the previously reported examples are compared here with the newly prepared member of this exotic list, ErPr(LA)(LB)(py)(HO) (1) (HLA and HLB are two β-diketone ligands). A magnetic analysis extracted from magnetization and calorimetry determinations identifies the necessary attributes for it to act as an addressable, conditional multiqubit spin-based quantum gate. Complementary calculations confirm the feasibility of these complexes as composite quantum gates, since they present well-isolated ground states with highly anisotropic and distinct -tensors. The electronic structure of 1 has also been analyzed by EPR. Pulsed experiments have allowed the establishment of the quantum coherence of the transitions within the relevant spin states, as well as the feasibility of a coherent control of these states nutation experiments.
由于该系列金属具有非常相似的化学行为,因此热力学上可获得的异金属镧系元素[LnLn']配位络合物非常稀少。此类三核体系尚未见报道。基于离子半径的差异,一种配位化学支架已被证明能产生高纯度的[LnLn'Ln]型分子,表现出高金属分布能力。通过对基于密度泛函理论(DFT)计算的详细分析,我们辨别出导致该分子体系具有无与伦比化学选择性的能量贡献。这里将一些先前报道的例子与这个奇特列表中的新制备成员ErPr(LA)(LB)(py)(HO) (1)(HLA和HLB是两个β-二酮配体)进行了比较。从磁化强度和量热法测定中提取的磁性分析确定了其作为可寻址的、基于条件的多量子比特自旋量子门的必要属性。补充计算证实了这些络合物作为复合量子门的可行性,因为它们呈现出具有高度各向异性和独特张量的良好隔离基态。1的电子结构也通过电子顺磁共振进行了分析。脉冲实验使得能够确定相关自旋态内跃迁的量子相干性,以及对这些态进行相干控制(章动实验)的可行性。