首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Elastic Frustration Triggering Photoinduced Hidden Hysteresis and Multistability in a Two-Dimensional Photoswitchable Hofmann-Like Spin-Crossover Metal-Organic Framework
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Elastic Frustration Triggering Photoinduced Hidden Hysteresis and Multistability in a Two-Dimensional Photoswitchable Hofmann-Like Spin-Crossover Metal-Organic Framework

机译:二维光开关霍夫曼样自旋交叉金属有机框架中的弹性挫折触发光诱导的隐式滞后和多重稳定性

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摘要

We report a two-dimensional Hofmann-like spin-crossover (SCO) material, [Fe(trz-py)(2),{Pt(CN)(4)}]center dot 3H(2)O, built from [FePt(CN)(4)] layers separated by interdigitated 4-(2-pyridyl)-1,2,4,4H-triazole (trz-py) ligands with two symmetrically inequivalent Fell sites. This compound exhibits an incomplete first-order spin transition at 153 K between fully high-spin (HS-HS) and intermediate high-spin low-spin (HS-LS) ordered states. At low temperature, it undergoes a bidirectional photoswitching to HS HS and fully low-spin (LS- LS) states with green and near-IR light irradiation, respectively, with associated T(LIESST = Light-Induced Excited Spin-State Trapping) and T(reverse-LIESST) values of 52 and 85 K, respectively. Photomagnetic investigations show that the reverse-LIESST process, performed from either HS-HS or HS-LS states, enables access to a hidden stable LS-LS state, revealing the existence of a hidden thermal hysteresis. Crystallographic investigations allowed to identify that the strong metastability of the HS-LS state originates from the existence of a strong elastic frustration causing antiferroelastic interactions within the [FePt(CN)(4)] layers, through the rigid NC-Pt-CN bridges connecting the inequivalent FeE sites. The existence of the stable LS-LS state paves the way for a multidirectional photoswitching and allows potential applications for electronic devices based on ternary digits.
机译:我们报告二维霍夫曼样自旋交叉(SCO)材料,[Fe(trz-py)(2),{Pt(CN)(4)}]中心点3H(2)O,由[FePt (CN)(4)]层由相互交叉的4-(2-吡啶基)-1,2,4,4H-三唑(trz-py)配体隔开,具有两个对称的不等价的Fell位点。该化合物在完全高自旋(HS-HS)和中等高自旋低自旋(HS-LS)有序状态之间的153 K处表现出不完全的一阶自旋跃迁。在低温下,它会通过双向光开关切换到HS HS并分别在绿色和近红外光照射下经历全低自旋(LS-LS)状态,并伴有相关的T(LIESST =光诱导激发自旋态陷阱)和T(reverse-LIESST)值分别为52和85K。光磁研究表明,从HS-HS或HS-LS状态执行的反向LIESST过程可以访问隐藏的稳定LS-LS状态,这表明存在隐藏的热滞后。通过晶体学研究可以确定,HS-LS状态的强亚稳性源于通过[FePt(CN)(4)]层内部通过连接的刚性NC-Pt-CN桥引起的强铁弹性阻滞而引起的反铁弹性相互作用。 FeE不等价位。稳定的LS-LS状态的存在为多向光电开关铺平了道路,并允许基于三进制数字的电子设备的潜在应用。

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