Ghosh Subrata, Kamilya Sujit, Pramanik Titas, Mohanty Ashutosh, Rouzières Mathieu, Herchel Radovan, Mehta Sakshi, Mondal Abhishake
Solid State and Structural Chemistry Unit, Indian Institute of Science, Sir C V Raman Road, Bangalore 560012, India.
Univ. Bordeaux, CNRS, Centre de Recherche Paul Pascal, UMR 5031, 33600 Pessac, France.
Dalton Trans. 2021 Jun 8;50(22):7725-7735. doi: 10.1039/d1dt00212k.
Three iron(ii) complexes, [Fe(L1)2(NCS)2(MeOH)2] (1), [Fe(L1)2(NCSe)2(MeOH)2] (2), and [Fe(L2)2(NCS)2]n (3) (L1 = 2,5-dipyridyl-3,4-ethylenedioxythiophene and L2 = 2,5-diethynylpyridinyl-3,4-ethylenedioxythiophene), have been synthesized using redox-active luminescent ethylenedioxythiophene (EDOT)-based ligands, and characterized by variable temperature single-crystal X-ray diffraction, (photo)magnetic, optical reflectivity, and spectroscopy studies. Magneto-structural investigations revealed that 1 and 2 are mononuclear with a FeN4O2 octahedral coordination geometry and remain in a high-spin (HS) (S = 2) state in a temperature range of 2-280 K. Interestingly, a 2D coordination network structure with FeN6 surrounding each iron center was observed for 3, which exhibits reversible thermo-induced spin-state switching between the paramagnetic high-spin (HS) (S = 2) and diamagnetic low-spin (LS) (S = 0) states at around 105 K (T1/2). Furthermore, optical reflectivity and photomagnetic measurements at low temperature confirmed that 3 shows reversible ON/OFF switching between the photoinduced excited paramagnetic HS metastable state and diamagnetic LS state under light irradiation (ON mode using red light and OFF mode using green light). Finally, the photoinduced excited HS state can be reversibly relaxed back to the diamagnetic ground LS state by heating the system at ca. 88 K (TLIESST = 88 K) (light-induced excited spin state trapping (LIESST) effect). Furthermore, 3 also showed an exciting and unique 18 K wide light-induced thermal hysteresis (LITH) effect above liquid nitrogen temperature (100 K). DFT and CASSCF level theoretical calculations were utilized to better understand the magneto-structural correlations of these complexes.
已使用基于氧化还原活性发光的乙撑二氧噻吩(EDOT)的配体合成了三种铁(II)配合物,即[Fe(L1)2(NCS)2(MeOH)2](1)、[Fe(L1)2(NCSe)2(MeOH)2](2)和[Fe(L2)2(NCS)2]n(3)(L1 = 2,5 - 二吡啶基 - 3,4 - 乙撑二氧噻吩,L2 = 2,5 - 二乙炔基吡啶基 - 3,4 - 乙撑二氧噻吩),并通过变温单晶X射线衍射、(光)磁、光反射率和光谱学研究对其进行了表征。磁结构研究表明,1和2是单核的,具有FeN4O2八面体配位几何结构,并且在2 - 280 K的温度范围内保持高自旋(HS)(S = 2)状态。有趣的是,观察到3具有二维配位网络结构,每个铁中心周围有FeN6,它在约105 K(T1/2)时表现出顺磁性高自旋(HS)(S = 2)和抗磁性低自旋(LS)(S = 0)状态之间的可逆热诱导自旋态切换。此外,低温下的光反射率和光磁测量证实,3在光照射下(红光开启模式,绿光关闭模式)在光致激发顺磁性HS亚稳态和抗磁性LS状态之间显示出可逆的开/关切换。最后,通过在约88 K(TLIESST = 88 K)加热系统(光诱导激发自旋态捕获(LIESST)效应),光致激发的HS态可以可逆地弛豫回到抗磁性基态LS态。此外,3在液氮温度(100 K)以上还表现出令人兴奋且独特的18 K宽的光诱导热滞(LITH)效应。利用DFT和CASSCF水平的理论计算来更好地理解这些配合物的磁结构相关性。