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自旋交叉钴(II)分子纳米磁体中发光、氧化还原和磁性的pH切换

pH-Switching of the luminescent, redox, and magnetic properties in a spin crossover cobalt(ii) molecular nanomagnet.

作者信息

Rabelo Renato, Toma Luminita, Moliner Nicolás, Julve Miguel, Lloret Francesc, Inclán Mario, García-España Enrique, Pasán Jorge, Ruiz-García Rafael, Cano Joan

机构信息

Instituto de Ciencia Molecular (ICMol), Universitat de València 46980 Paterna (València) Spain

Instituto de Química, Universidade Federal de Goiás 74690-900 Goiânia Brazil.

出版信息

Chem Sci. 2023 Jul 27;14(33):8850-8859. doi: 10.1039/d3sc02777e. eCollection 2023 Aug 23.

Abstract

The ability of mononuclear first-row transition metal complexes as dynamic molecular systems to perform selective functions under the control of an external stimulus that appropriately tunes their properties may greatly impact several domains of molecular nanoscience and nanotechnology. This study focuses on two mononuclear octahedral cobalt(ii) complexes of formula {[Co(HL)][Co(HL)L]}(ClO)·9HO (1) and [CoL]·5HO (2) [HL = 4'-(4-carboxyphenyl)-2,2':6',2''-terpyridine], isolated as a mixed protonated/hemiprotonated cationic salt or a deprotonated neutral species. This pair of pH isomers constitutes a remarkable example of a dynamic molecular system exhibiting reversible changes in luminescence, redox, and magnetic (spin crossover and spin dynamics) properties as a result of ligand deprotonation, either in solution or solid state. In this last case, the thermal-assisted spin transition coexists with the field-induced magnetisation blockage of "faster" or "slower" relaxing low-spin Co ions in 1 or 2, respectively. In addition, pH-reversible control of the acid-base equilibrium among dicationic protonated, cationic hemiprotonated, and neutral deprotonated forms in solution enhances luminescence in the UV region. Besides, the reversibility of the one-electron oxidation of the paramagnetic low-spin Co into the diamagnetic low-spin Co ion is partially lost and completely restored by pH decreasing and increasing. The fine-tuning of the optical, redox, and magnetic properties in this novel class of pH-responsive, spin crossover molecular nanomagnets offers fascinating possibilities for advanced multifunctional and multiresponsive magnetic devices for molecular spintronics and quantum computing such as pH-effect spin quantum transformers.

摘要

单核第一排过渡金属配合物作为动态分子系统,在外部刺激的控制下能够执行选择性功能,这种刺激能适当地调节其性质,这可能会对分子纳米科学和纳米技术的多个领域产生重大影响。本研究聚焦于化学式为{[Co(HL)][Co(HL)L]}(ClO)·9HO (1) 和 [CoL]·5HO (2) [HL = 4'-(4-羧基苯基)-2,2':6',2''-三联吡啶] 的两种单核八面体钴 (II) 配合物,它们分别以混合质子化/半质子化阳离子盐或去质子化中性物种形式分离出来。这对pH异构体构成了一个显著的动态分子系统示例,该系统在溶液或固态中由于配体去质子化而在发光、氧化还原和磁性(自旋交叉和自旋动力学)性质方面表现出可逆变化。在后一种情况下,热辅助自旋转变与分别在1或2中“更快”或“更慢”弛豫的低自旋Co离子的场诱导磁化阻塞共存。此外,溶液中双阳离子质子化、阳离子半质子化和中性去质子化形式之间酸碱平衡的pH可逆控制增强了紫外区域的发光。此外,顺磁性低自旋Co单电子氧化为抗磁性低自旋Co离子的可逆性在pH降低和升高时部分丧失并完全恢复。这类新型pH响应型自旋交叉分子纳米磁体中光学、氧化还原和磁性性质的微调为分子自旋电子学和量子计算等先进的多功能和多响应磁性器件提供了迷人的可能性,例如pH效应自旋量子变压器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8754/10445472/9ac33db8884b/d3sc02777e-s1.jpg

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