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基于Fe(II)-Hg(II)自旋交叉网络的近红外光诱导自旋态切换

Near-Infrared Light-Induced Spin-State Switching Based on Fe(II)-Hg(II) Spin-Crossover Network.

作者信息

Li Guanping, Stefanczyk Olaf, Kumar Kunal, Guérin Laurent, Okuzono Kosei, Tran Kevin, Seydi Kilic Maximilian, Nakabayashi Koji, Imoto Kenta, Namai Asuka, Nakamura Yuiga, Ranjan Maity Sumit, Renz Franz, Chastanet Guillaume, Ohkoshi Shin-Ichi

机构信息

Department of Chemistry, School of Science, The University of Tokyo, 7-3-1, Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.

Department of Chemistry, The University of Manchester, Manchester, M13 9PL, U.K.

出版信息

Angew Chem Int Ed Engl. 2025 Mar 17;64(12):e202423095. doi: 10.1002/anie.202423095. Epub 2024 Dec 20.

Abstract

The development of molecular switches with tunable properties has garnered considerable interest over several decades. A novel spin-crossover (SCO) material based on iron(II) complexes incorporating 4-acetylpyridine (4-acpy) and [Hg(SCN)] anions was synthesized and formulated as [Fe(4-acpy)][Hg(μ-SCN)] (1). Compound 1 is crystallized in a three-dimensional network in the non-centrosymmetric orthorhombic space group Pna2 with two octahedral [Fe(4-acpy)(NCS)] entities featuring two distinct Fe centers (Fe1 and Fe2). Crystallographic, magnetic, and Mössbauer measurements reveal an incomplete SCO exclusively at Fe2, with transition temperature T≈102 K. Photomagnetic studies conducted at 10 K with lasers ranging from 405 to 1310 nm evidence light-induced excited spin-state trapping (LIESST) and reverse-LIESST effects, with a unique near-infrared-responsive LIESST phenomenon at 1064 and 1310 nm. Advanced photocrystallographic studies at 40 K provide precise structural evidence for these metastable states. The optical and vibrational properties consistently corroborate with magnetic and photomagnetic studies. Additionally, temperature- and light-dependent terahertz (THz) absorptions are associated with phonon vibrations around Fe2 centers, through SCO behavior, as supported by ab initio calculation. The Fe(II)-Hg(II) systems can be promising benchmarks for exploring synergistic switching effects in structural, magnetic, and spectroscopic properties.

摘要

几十年来,具有可调谐性质的分子开关的发展引起了人们的广泛关注。合成了一种基于包含4-乙酰基吡啶(4-acpy)和[Hg(SCN)]阴离子的铁(II)配合物的新型自旋交叉(SCO)材料,并将其配方为[Fe(4-acpy)][Hg(μ-SCN)](1)。化合物1在非中心对称正交空间群Pna2的三维网络中结晶,有两个八面体[Fe(4-acpy)(NCS)]实体,具有两个不同的铁中心(Fe1和Fe2)。晶体学、磁性和穆斯堡尔测量表明,仅在Fe2处存在不完全的自旋交叉,转变温度T≈102K。在10K下用波长范围为405至1310nm的激光进行的光磁研究证明了光诱导激发自旋态捕获(LIESST)和反向LIESST效应,在1064和1310nm处有独特的近红外响应LIESST现象。在40K下进行的先进光晶体学研究为这些亚稳态提供了精确的结构证据。光学和振动性质与磁性和光磁研究一致。此外,从头算计算表明,依赖于温度和光的太赫兹(THz)吸收与通过自旋交叉行为在Fe2中心周围的声子振动有关。Fe(II)-Hg(II)体系有望成为探索结构、磁性和光谱性质协同开关效应的基准。

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