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首页> 外文期刊>RSC Advances >Alkali metal complexes having sterically bulky bis-iminopyrrolyl ligands - control of dimeric to monomeric complexes
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Alkali metal complexes having sterically bulky bis-iminopyrrolyl ligands - control of dimeric to monomeric complexes

机译:具有间庞大的双 - IminopyroLyl配体的碱金属配合物 - 对单体复合物的二聚体控制

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摘要

We report the syntheses and structural diversity of three different bis-iminopyrrole ligands and their alkali metal (Li, Na, K) complexes featuring a shift from dimeric to monomeric nature by a simple tuning of the steric control of the imine nitrogen substitutions. The bis-iminopyrrole ligands having the molecular formula [(ArN] CH)(2)C4H2NH] [Ar = CHPh2 (1-H), Ad (2-H), Ad = adamentyl, and CPh3 (3-H)], were prepared through the reaction of 2,5-pyrrole-dicarbaldehyde with corresponding amines (ArNH2) in a 1 : 2 molar ratio and under acidic conditions. Using ligand 1-H, the lithium [{Li(Ph2CHN] CH) 2C4H2N}(2)] (1-Li), sodium [{Na(Ph2CH-N] CH)(2)C4H2N}(2)(THF)] (1-Na) and potassium [{k(3)-(Ph2CHN] CH)(2)C4H2N}K( THF)(2)] (1-K) complexes were obtained through either alkane elimination (for Li) or amine elimination (for Na, K). The alkali metal complexes [{k(2)-(Ph3CHN] CH)(2)C4H2N} M(THF)(n)] [n = 2, M = Li (3-Li), Na (3-Na); n = 3, M = K (3-K)] were synthesized using the ligand 3-H. Molecular structures of ligands 1-3-H, and alkali metal complexes 1-Li, 1-Na, 1-K, 3-Li, 3-Na and 3-K, in the solid state were established. The complexes 1-Li and 1-Na were found to be dimeric in the solid state whereas the complexes 1-K, 3-Li, 3-Na and 3-K were all monomeric -either due to a larger ionic radius (for 1-K) or because of the presence of the bulky triphenylmethyl group on the imine nitrogen.
机译:我们通过简单调整亚胺氮取代的简单调整,报告三种不同双丙烯酸配体及其碱金属(Li,Na,K)复合物的合成和结构多样性,其通过二聚体控制的简单调整来从二聚体对单体性质的转变。具有分子式[(ARN] CH)(2)C4H2NH] [Ar = CHPH2(1-H),Ad(2-H),Ad =树膜和CPH3(3-H)]的双 - Iminopyrole配体,通过2,5-吡咯 - 二甲醛的反应在1:2摩尔比和酸性条件下用2,5-吡咯 - 二氨基甲醛的反应制备。使用配体1-H,锂[{Li(pH2CHN] CH)2C4H2N}(2)](2)](1-Li),钠[{Na(pH2ch-N] CH)(2)C4H2N}(2)(THF) [{ka)和钾通过烷烃消除(对于Li)或钾通过任一烷烃(Li)或钾通过任一烷烃(LI)或钾通过任一烷烃(对于Li)获得(1-Na)和钾[{k(3) - (pH2CHN] CH)(2)C4H2N} K(THF)(2)](1-k)配合物胺消除(对于Na,K)。碱金属配合物[{K(2) - (pH3CHN] CH)(2)C4H2N} M(THF)(N)] [n = 2,M = Li(3-Li),Na(3-Na);使用配体3-H合成N = 3,M = K(3-k)]。建立了固态1-3-H的分子结构,并确定固态中的1-Li,1-Na,1-k,3-Li,3-Na和3-k。发现复合物1-Li和1-Na在固态中是二聚体,而组络合物1-k,3-Li,3-Na和3-k均为由于较大的离子半径(1) -K)或由于亚胺氮气上存在庞大的三苯基甲基。

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  • 来源
    《RSC Advances》 |2016年第84期|共8页
  • 作者单位

    Indian Inst Technol Hyderabad Dept Chem Sangareddy 502285 Telangana India;

    Indian Inst Technol Hyderabad Dept Chem Sangareddy 502285 Telangana India;

    Indian Sch Mines Dept Appl Chem Dhanbad 826004 Jharkhand India;

    Indian Inst Technol Hyderabad Dept Chem Sangareddy 502285 Telangana India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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