Zheng Jieyu, von Krbek Larissa K S, Ronson Tanya K, Nitschke Jonathan R
Yusuf Hamied Department of Chemistry, University of Cambridge, Cambridge, CB2 1EW, UK.
Kekulé-Institut für Organische Chemie and Biochemie, Rheinische Friedrich-Wilhelms-Universität Bonn, Gerhard-Domagk-Str. 1, 53121, Bonn, Germany.
Angew Chem Int Ed Engl. 2022 Dec 12;61(50):e202212634. doi: 10.1002/anie.202212634. Epub 2022 Nov 17.
Spin-crossover (SCO) metal-organic cages capable of switching between high-spin and low-spin states have the potential to be used as magnetic sensors and switches. Variation of the donor strength of heterocyclic aldehyde subcomponents in imine-based ligands can tune the ligand field for a Fe center, which results in both homoleptic and heteroleptic cages with diverse SCO behaviors. The tetrahedral SCO cage built from 1-methyl-1H-imidazole-2-carbaldehyde is capable of encapsulating various guests, which stabilize different cage spin states depending on guest size. Conversely, the SCO tetrahedron exhibits different affinities for guests in different spin states, which is inferred to result from subtle structural differences of the cavity caused by the change in metal center spin state. Examination of SCO thermodynamics across a series of host-guest complexes enabled sensitive probing of guest fit to the host cavity, providing information complementary to binding-constant determination.
能够在高自旋态和低自旋态之间切换的自旋交叉(SCO)金属有机笼具有用作磁传感器和开关的潜力。亚胺基配体中杂环醛亚组分供体强度的变化可以调节铁中心的配体场,这导致了具有不同SCO行为的均配和杂配笼。由1-甲基-1H-咪唑-2-甲醛构建的四面体SCO笼能够包封各种客体,这些客体根据客体大小稳定不同的笼自旋态。相反,SCO四面体对处于不同自旋态的客体表现出不同的亲和力,这被推断是由金属中心自旋态变化引起的空腔细微结构差异导致的。对一系列主客体配合物的SCO热力学进行研究,能够灵敏地探测客体与主体空腔的契合度,提供与结合常数测定互补的信息。