Zhang Shao-Liang, Zhao Xin-Hua, Wang Yuan-Min, Shao Dong, Wang Xin-Yi
State Key Laboratory of Coordination Chemistry, Collaborative Innovation Centre of Advanced Microstructures, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210093, China.
Dalton Trans. 2015 May 28;44(20):9682-90. doi: 10.1039/c5dt00836k.
Four one-dimensional heterobimetallic coordination polymers {Fe(pic)2[M(CN)4]}n (M = Pd(II) () and Pt(II) (), pic = 2-picolylamine), and {Fe(pypz)2[M(CN)4]}n (M = Pd(II) () and Pt(II) (), pypz = 2-(1H-pyrazol-3-yl)pyridine) have been synthesized and characterized by infrared spectroscopy, X-ray diffraction, magnetic measurements and differential scanning calorimetry (DSC). Single-crystal X-ray analyses show that all the compounds are 1D neutral zigzag chain structures in which the planar M(CN)4 anion acts as a μ2-bridging ligand, and the two pic/pypz molecules as chelating coligands. Examination of the intermolecular contacts in compounds reveals the existence of the hydrogen bonding interactions involving the hydrogen donor groups of the pic and pypz ligands and the nitrogen atoms of the non-bridging cyanide groups of the M(CN)4 anions. Weak π-π interactions were also found to be important for the formation of the 3D structures of compounds and . The SCO properties of all compounds were confirmed by the detailed structural analyses of the coordination environments of the Fe(II) centres, DSC analyses, and magnetic susceptibility measurements. Compounds and exhibit complete SCO behaviour with very narrow thermal hysteresis loops centred near the room temperature (T1/2↓ = 270 K and T1/2↑ = 272 K for and T1/2↓ = 272 K and T1/2↑ = 274 K for ), whereas and exhibit abrupt SCO at 186 and 180 K, respectively. Compared to the mononuclear species of the pic and pypz ligands, the SCO temperatures are adjusted by the different ligand field strength of the M(CN)4) units. The cooperativity from both the coordination bonds and supramolecular interaction leads to the observation of the hysteresis loops in the Fe-pic systems and the abrupt SCO transition in the Fe-pypz systems. Furthermore, the light-induced excited-spin-state trapping (LIESST) effect was observed for .
合成了四种一维异双金属配位聚合物{Fe(pic)2[M(CN)4]}n(M = Pd(II) ()和Pt(II) (),pic = 2 - 吡啶甲胺)以及{Fe(pypz)2[M(CN)4]}n(M = Pd(II) ()和Pt(II) (),pypz = 2 - (1H - 吡唑 - 3 - 基)吡啶),并通过红外光谱、X射线衍射、磁性测量和差示扫描量热法(DSC)对其进行了表征。单晶X射线分析表明,所有化合物均为一维中性之字形链结构,其中平面[M(CN)4](2 - )阴离子作为μ2 - 桥连配体,两个pic/pypz分子作为螯合共配体。对化合物分子间接触的研究揭示了涉及pic和pypz配体的氢供体基团以及[M(CN)4](2 - )阴离子非桥连氰基氮原子的氢键相互作用的存在。还发现弱π - π相互作用对于化合物和的三维结构形成很重要。通过对Fe(II)中心配位环境的详细结构分析、DSC分析和磁化率测量,证实了所有化合物的自旋交叉(SCO)性质。化合物和表现出完全的SCO行为,在室温附近具有非常窄的热滞回线(对于,T1/2↓ = 270 K且T1/2↑ = 272 K;对于,T1/2↓ = 272 K且T1/2↑ = 274 K),而和分别在186 K和180 K表现出突变的SCO。与pic和pypz配体的单核物种相比,SCO温度通过[M(CN)4)](2 - )单元不同的配体场强度进行调节。配位键和超分子相互作用的协同性导致在Fe - pic体系中观察到滞回线,在Fe - pypz体系中观察到突变的SCO转变。此外,对观察到了光诱导激发自旋态捕获(LIESST)效应。