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Trivalent scandium, yttrium and lanthanide complexes with thia-oxa and selena-oxa macrocycles and crown ether coordination

机译:三价钪,钇和镧系元素与thia-oxa和selena-oxa macrocycles和冠醚配位

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摘要

Complexes of the oxa-thia macrocycles [18]aneO4S2, [15]aneO3S2 and the oxa-selena macrocycle [18]aneO4Se2 (L) of types [MCl2(L)]FeCl4 (M = Sc or Y) were prepared from [ScCl3(thf)3] or [YCl2(THF)5][YCl4(THF)2] and the ligand in anhydrous MeCN, using FeCl3 as a chloride abstractor. The [MI2(L)]I, [LaI3(L)] and [LuI2(L)]I have been prepared from the ligands and the appropriate anhydrous metal triiodide in MeCN. Complexes of type [LaI3(crown)] and [LuI2(crown)]I (crown = 18-crown-6, 15-crown-5) were made for comparison. Use of the metal iodide results in complexes with high solubility compared to the corresponding chlorides, although also with increased sensitivity to moisture. All complexes were characterised by microanalysis, IR, (1)H, (45)Sc and (77)Se NMR spectroscopy as appropriate. X-ray crystal structures are reported for [ScCl2([18]aneO4S2)][FeCl4], [ScI2([18]aneO4S2)]I, [YCl2(18-crown-6)]3[Y2Cl9], [YCl2([18]aneO4S2)][FeCl4], [LaI3(15-crown-5)], [LaI2(18-crown-6)(MeCN)]I, [LuI(18-crown-6)(MeCN)2]I2, [Lu(15-crown-5)(MeCN)2(OH2)]I3, [LaI3([18]aneO4S2)], [LaI([18]aneO4S2)(OH2)]I2, [LaI3([18]aneO4Se2)] and [LuI2([18]aneO4Se2)]I. In each complex all the neutral donor atoms of the macrocycles are coordinated to the metal centre, showing very rare examples of these oxophilic metal centres coordinated to thioether groups, and the first examples of coordinated selenoether donors. In some cases MeCN or adventitious water displaces halide ligands, but not the S/Se donors from La or Lu complexes. A complex of the oxa-tellura macrocycle [18]aneO4Te2, [ScCl2([18]aneO4Te2)][FeCl4] was isolated, but is unstable in MeCN solution, depositing elemental Te. YCl3 and 18-crown-6 produced [YCl2(18-crown-6)]3[Y2Cl9], the asymmetric unit of which contains two cations with a trans-YCl2 arrangement and a third with a cis-YCl2 group.
机译:由[ScCl3]制备[Mcl2(L)] FeCl4(M = Sc或Y)类型的氧杂硫杂大环[18] aneO4S2,[15] aneO3S2和氧杂硒大环[18] aneO4Se2(L)的配合物(thf)3]或[YCl2(THF)5] [YCl4(THF)2]和无水MeCN中的配体,使用FeCl3作为氯化物提取剂。 [MI2(L)] I,[LaI3(L)]和[LuI2(L)] I已由MeCN中的配体和合适的无水三碘化物制备。制备[LaI3(皇冠)]和[LuI2(皇冠)] I型(皇冠= 18-皇冠-6,15-皇冠-5)的复合物用于比较。与相应的氯化物相比,金属碘化物的使用产生了具有高溶解度的配合物,尽管还增加了对水分的敏感性。适当地通过微分析,IR,(1)H,(45)Sc和(77)Se NMR光谱对所有配合物进行表征。报告了[ScCl2([18] aneO4S2)] [FeCl4],[ScI2([18] aneO4S2)] I,[YCl2(18-crown-6)] 3 [Y2Cl9],[YCl2( [18] aneO4S2)] [FeCl4],[LaI3(15-crown-5)],[LaI2(18-crown-6)(MeCN)] I,[LuI(18-crown-6)(MeCN)2] I2,[Lu(15-crown-5)(MeCN)2(OH2)] I3,[LaI3([18] aneO4S2)],[LaI([18] aneO4S2)(OH2)] I2,[LaI3([18 ] aneO4Se2)]和[LuI2([18] aneO4Se2)] I。在每个络合物中,大环的所有中性供体原子均与金属中心配位,显示了这些与亲硫基团配位的亲氧金属中心的罕见实例,以及配位硒醚供体的第一个实例。在某些情况下,MeCN或不定水会取代卤化物配体,但不能取代La或Lu络合物的S / Se供体。分离出氧杂-碲大环化合物[18] aneO4Te2,[ScCl2([18] aneO4Te2)] [FeCl4]的复合物,但在MeCN溶液中不稳定,沉积元素Te。 YCl3和18-crown-6生成[YCl2(18-crown-6)] 3 [Y2Cl9],其不对称单元包含两个带有反式YCl2排列的阳离子,第三个带有顺式-YCl2基团。

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