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Solution and solid state properties of Fe(III) complexes bearing N-ethyl-N-(2-aminoethyl)salicylaldiminate ligands

机译:带有N-乙基-N-(2-氨乙基)水杨基铝二胺基配体的Fe(III)配合物的溶液和固态性质

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The effect of the phenolate ring derivatisation on the magnetic properties of Fe(III) complexes bearing Nethyl- N-(2-aminoethyl) salicylaldiminate ligands both in solid state and solution have been investigated. Two new complexes [Fe(3,5-Br-salEen)(2)]ClO4 center dot EtOH (5) and [Fe(3,5-Br-salEen)(2)]BPh4 center dot DMF (6) have been synthesised. SQUID magnetometry studies on these complexes showed that while complex 5 is in the low-spin (LS) state, complex 6 displays a gradual and incomplete spin crossover (SCO) transition over the temperature measured. Solution measurements on a series of six complexes e [Fe(salEen)2]ClO4 (1), [Fe(salEen)(2)]BPh4 center dot 0.5H(2)O (2), [Fe(5-Br-salEen)(2)]ClO4 (3), [Fe(5-Br-salEen)(2)]BPh4 center dot DMF (4), [Fe(3,5-Br-salEen)(2)]ClO4 center dot EtOH (5) and [Fe(3,5-Br-salEen)(2)]BPh4 center dot DMF (6) - were performed by UVevis and NMR spectroscopies and cyclic voltammetry. Solution studies show that the presence of electron withdrawing groups (bromine atoms) affect the electronic density at the phenolate ring, thus influencing the ligand field strength and the separation between the t(2g) and e(g)* energy levels. The presence of two bromide substituents at the phenolate ring has a more pronounced effect on the magnetic behaviour in solution than in the solid state, with both complexes 5 and 6 adopting preferentially the LS state. Electrochemical studies of complexes 1-6 reveal that the reduction of the metallic centres in the complexes with electron withdrawing groups is easier, with E-1/2 values of iron moving to more positive potentials with the number of bromide substituents at the phenolate ring. (C) 2013 Elsevier B. V. All rights reserved.
机译:研究了酚盐环衍生化对在固溶和固溶状态下带有乙基-N-(2-氨乙基)水杨烷基二胺基配体的Fe(III)配合物的磁性的影响。两个新的络合物[Fe(3,5-Br-salEen)(2)] ClO4中心点EtOH(5)和[Fe(3,5-Br-salEen)(2)] BPh4中心点DMF(6)综合的。对这些配合物的SQUID磁力分析研究表明,当配合物5处于低旋转(LS)状态时,配合物6在所测温度范围内显示出逐渐且不完全的自旋交叉(SCO)跃迁。对一系列六种配合物e [Fe(salEen)2] ClO4(1),[Fe(salEen)(2)] BPh4中心点0.5H(2)O(2),[Fe(5-Br- salEen)(2)] ClO4(3),[Fe(5-Br-salEen)(2)] BPh4中心点DMF(4),[Fe(3,5-Br-salEen)(2)] ClO4中心点EtOH(5)和[Fe(3,5-Br-salEen)(2)] BPh4中心点DMF(6)-通过UVevis和NMR光谱法以及循环伏安法进行。溶液研究表明,吸电子基团(溴原子)的存在会影响酚盐环上的电子密度,从而影响配体场强以及t(2g)和e(g)*能级之间的间距。与固态相比,在酚盐环上存在两个溴化物取代基对溶液的磁行为的影响比固态更明显,复合物5和6均优先采用LS状态。配合物1-6的电化学研究表明,带有吸电子基团的配合物中金属中心的还原更容易,铁的E-1 / 2值随着酚盐环上的溴化物取代基数量的增加而移向更高的正电势。 (C)2013 Elsevier B. V.保留所有权利。

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