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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Valence tautomeric dinuclear adducts of Co(II) diketonates with redox-active diquinones for the design of spin qubits: computational modeling
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Valence tautomeric dinuclear adducts of Co(II) diketonates with redox-active diquinones for the design of spin qubits: computational modeling

机译:钴(II)酮与氧化还原活性二醌的价互变异构二核加合物用于自旋量子位的设计:计算模型

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The possibility of employing the mechanism of intramolecular electron transfer between metal and ligand centers in the valence tautomeric complexes formed as electrically neutral 2 : 1 adducts of Co(II) diketonates and redox-active tetradentate di-o-quinones, for quantum information processing, has been computationally studied using the DFT B3LYP*/6-311++G(d, p) method. It has been shown that by the proper choice of a linker group bridging the quinone rings and substituents in the diketonate fragments, complexes with the properties required in 2-qubit quantum gates (sufficiently narrow energy gaps between the spin states and weakly coupled paramagnetic centers) can be designed, in order to realize the mechanism of thermally driven migration of paramagnetic centers between the o-quinone fragments and metal atoms. These are exemplified by the adduct of bis-(hexafluoroacetylacetonate) Co(II) with a diquinone containing dimethylene linker. Valence tautomerism is considered as a new, promising mechanistic paradigm for the molecular design of 2-qubit molecular systems.
机译:利用价互变异构体金属和配体中心之间的分子内电子转移机制,将其作为电中性的Co(II)二酮(二酮)和氧化还原活性四齿二邻醌的电中性2:1加合物形成,用于量子信息处理,已使用DFT B3LYP * / 6-311 ++ G(d,p)方法进行了计算研究。已经示出,通过一个连接基团桥连的二酮片段醌环和取代基的合适的选择,而该性质的复合物中(旋转状态和弱耦合的顺磁中心之间足够窄能隙)2量子位的量子门所需为了实现热驱动顺磁性中心在邻苯醌片段和金属原子之间迁移的机理,可以进行设计。这些以双-(六氟乙酰丙酮化物)Co(II)与含二亚甲基接头的二醌的加合物为例。价互变异构被认为是2-量子位分子系统分子设计的一种新的,有希望的机制范例。

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