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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Titanium(IV) complexes of the crystallographically characterised fluorene-Schiff base N-2-fluorenyl(salicylideneimine) and related bi- and tetradentate ligands
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Titanium(IV) complexes of the crystallographically characterised fluorene-Schiff base N-2-fluorenyl(salicylideneimine) and related bi- and tetradentate ligands

机译:晶体学特征的芴-席夫碱N-2-芴基(水杨亚胺)和相关的双齿和四齿配体的钛(IV)配合物

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摘要

Schiff base ligands have been prepared by the condensation of 2-aminofluorene with salicylaldehyde (1, flusalH) or 3-methoxy-2hydroxybenzaldehyde (2, MeOflusalH). Compound 1 reacts with TiCl4 in a 1:1 stoichiometry to afford [TiCl3(flusal)] (3) and in a 2:1 ratio to yield [TiCl4(flusalH)(2)] (4). The reaction of excess TiBz(4) with compound 1 results in the isolation of the octahedral Ti(IV) complex [Ti(flusal)(2)(flusalaBz)(2)] (5). Crystallographic and spectroscopic data for the latter indicate a complex containing two Schiff base ligands present as conventional N,O chelates and a further two ligands in which the C=N function is reduced by the addition of benzyl and hydrogen moieties producing an O-bound species with pendant amine. The single crystal X-ray diffraction structure of compound 1 has been obtained and compared with the published data for compound 5. Similar ligand alkylation to that observed in compound 5 is also achieved by the reaction of organolithium reagents with compounds 1 and 2; the reaction of PhLi and compound 2 followed by aqueous hydrolysis affords MeOflusalaPhH (6). Although reactivity does occur between TiCl4 and compound 6, the products could not be fully characterised. Thus tetradentate reduced Schiff base ligands were synthesised by the reaction of salenH, with MeLi or PhLi, giving salenaMe(2)H(2) (7) and salenaPh(2)H(2) (8), respectively. Reaction of compound 8 and TiCl4 affords the quadruply deprotonated amido complex [Ti(salenamidoPh(2))] (9), which hydrolyses in air to the mu-oxo amine complex [Ti(salenaPh(2))O] (10). (C) 2000 Elsevier Science Ltd All rights reserved. [References: 47]
机译:通过2-氨基芴与水杨醛(1,flusalH)或3-甲氧基-2羟基苯甲醛(2,MeOflusalH)的缩合制备席夫碱配体。化合物1与TiCl4以1:1的化学计量比反应生成[TiCl3(flusal)](3),并以2:1的比例生成[TiCl4(flusalH)(2)](4)。过量的TiBz(4)与化合物1的反应导致八面体Ti(IV)络合物[Ti(flusal)(2)(flusalaBz)(2)](5)的分离。后者的晶体学和光谱数据表明,该配合物含有两个以常规N,O螯合物形式存在的席夫碱配体和另外两个配体,其中的C = N功能通过添加苄基和氢基团产生O-键结合的物种而降低。与侧胺。已获得化合物1的单晶X射线衍射结构,并将其与化合物5的公开数据进行比较。通过有机锂试剂与化合物1和2的反应,也可以实现与化合物5相似的配体烷基化。 PhLi与化合物2反应,然后进行水水解,得到MeOflusalaPhH(6)。尽管在TiCl4和化合物6之间确实发生了反应,但不能完全表征产物。因此,通过SalenH与MeLi或PhLi的反应合成了四齿还原的席夫碱配体,分别得到salenaMe(2)H(2)(7)和salenaPh(2)H(2)(8)。化合物8与TiCl4的反应得到四重去质子化的酰胺基络合物[Ti(salenamidoPh(2))](9),它在空气中水解成mu-氧代胺络合物[Ti(salenaPh(2))O](10)。 (C)2000 Elsevier Science Ltd保留所有权利。 [参考:47]

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