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首页> 外文期刊>Chemistry: A European journal >Electronic Structure Modulation in an Exceptionally Stable Non-Heme Nitrosyl Iron(II) Spin-Crossover Complex
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Electronic Structure Modulation in an Exceptionally Stable Non-Heme Nitrosyl Iron(II) Spin-Crossover Complex

机译:异常稳定的非血红素亚硝酰铁(II)自旋交叉络合物的电子结构调节

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摘要

The highly stable nitrosyl iron(II) mononuclear complex [Fe(bztpen)(NO)](PF6)(2) (bztpen=N-benzyl-N,N',N'-tris(2-pyridylmethyl)ethylenediamine) displays an S=1/2 <-> S=3/2 spin crossover (SCO) behavior (T-1/2=370 K, Delta H= 12.48 kJmol(-1), Delta S=33 JK(-1) mol(-1)) stemming from strong magnetic coupling between the NO radical (S=1/2) and thermally interconverted (S=0 <-> S=2) ferrous spin states. The crystal structure of this robust complex has been investigated in the temperature range 120-420 K affording a detailed picture of how the electronic distribution of the t(2g)-e(g) orbitals modulates the structure of the {FeNO}(7) bond, providing valuable magneto-structural and spectroscopic correlations and DFT analysis.
机译:高度稳定的亚硝酰基铁(II)单核络合物[Fe(bztpen)(NO)](PF6)(2)(bztpen = N-苄基-N,N',N'-三(2-吡啶基甲基)乙二胺)显示S = 1/2 <-> S = 3/2自旋交叉(SCO)行为(T-1 / 2 = 370 K,Delta H = 12.48 kJmol(-1),Delta S = 33 JK(-1)mol( -1))源于NO自由基(S = 1/2)与热互变(S = 0 <-> S = 2)亚铁自旋态之间的强磁耦合。已在120-420 K的温度范围内研究了这种坚固的配合物的晶体结构,从而详细了解了t(2g)-e(g)轨道的电子分布如何调节{FeNO}(7)的结构。键,提供有价值的磁结构和光谱相关性以及DFT分析。

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