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作 者:姚克敏[1] 吴静[2] 徐青[2] 朱力明[2] 沈联芳[3]
机构地区:[1]浙江大学化学系, [2]杭州师范学院化学系, [3]中国科学院,武汉物理与数学研究所
出 处:《化学学报》2001年第3期417-420,共4页Acta Chimica Sinica
基 金:国家自然科学基金,浙江省自然科学基金,国家重点实验室基金
摘 要:在形成多核配合物的诸条件中,认为减小空间位阻颇为重要.设计的直链脂肪族的四甘醇醛与甘氨酸缩合形成的Schiff碱(TAGL)为此提供了有利的条件,且成功地获得了它与稀土离子反应形成的三核配合物(Ln:L=3:1):[Ln3(TAGL)(NO3)7]CH3OH·nH2O(Ln=La,Nd,Sm,n=1;Ln=Gd,Dy,Yb,Y,n=2).以元素分析,IR,NMR等确[Ln3(TAGL)(NO3)7]CH3OH·nH2O(Ln=La,Nd,Sm,n=1;Ln=Gd,Dy,Yb,Y,n=2).以元素分析,IR,NMR等确证其组成,根据EPR谱探讨了Gd(Ⅲ)配合物的晶体场强,同时见到该类脂肪族Schiff碱及其配合物中δHC-N的质子谱向高场明显位移至~5.10.Among various factors affecting formation of polynuclear complex, steric hindrance is considered to be especially important. An aliphatic Schiff base (TAGL) from tetraglycol aldehyde and glycine offers a possible means to reduce steric hindrance. Some trinuclear rare earth complexes (Ln:L = 3: 1) were synthesized and their formulas were established as [Ln(3)(TAGL)(NO3)(7)] CH3OH . nH(2)O (Ln = La, Nd, Sm, n = 1; Ln = Gd, Dy, Yb, Y, n = 2) by elemental analysis, IR, NMR, etc. On the basis of EPR spectrum of the obtained Gd( III) complex, the crystal field strength is discussed. In addition, the proton signal of delta (HC=N) in this aliphatic Schiff base showed obvious upfield shift and appeared at similar to 5. 10, which made spectral assignment much easier.
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