...
【24h】

Para-derivatized pybox ligands as sensitizers in highly luminescent Ln(III) complexes

机译:副衍生化的pybox配体作为高发光Ln(III)配合物中的敏化剂

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

New complexes of pyridine-bis(oxazoline) derivatized with -H, -OMe, and -Br at the para position of the pyridine ring with Eu(III) and Tb(III) have been isolated. These are highly luminescent in the solid state, regardless of the ligand-to-metal ratio. Several of the metal complexes were isolated and characterized by single crystal X-ray diffraction, showing the rich diversity of structures that can be obtained with this family of ligands. [Eu(PyboxOMe) _3](NO_3)_3·3CH_2Cl_2, 1, crystallizes in the monoclinic space group P2_1 and has the cell parameters a = 14.3699(10) ?, b = 13.4059(9) ?, c = 25.8766(18) ?, β = 95.367(1)°, and V = 4963.1(6) ?~3. The isostructural [Tb(PyboxOMe)_3](NO_3)_3· 3CH_2Cl_2, 2, crystallizes with the parameters a = 14.4845(16) ?, b = 13.2998(15) ?, c = 25.890(3) ?, β = 94.918(2)°, and V = 4969.1(10) ?~3. 3, a 1:1 complex with the formula [Eu(PyboxBr)(NO_3)_3(H_2O)], crystallizes in the monoclinic P2_1/c space group with a = 11.649(2) ?, b = 8.3914(17) ?, c = 20.320(4) ?, β = 100.25(3)°, and V = 1954.5(7) ?~3. 4, a product of the reaction of PyboxBr with Tb(NO_3)_3, is [Tb(PyboxBr)_2(η ~2-NO_3)(η~1-NO_3] _2[Tb(NO_3)_5]·5H_2O. It crystallizes in the monoclinic space group P2_1 with a = 15.612(3) ?, b = 14.330(3) ?, c = 16.271(3) ?, β = 92.58(3)°, and V = 3636.5(13) ?~3. [Tb(Pybox)_3](CF _3SO_3)_3·3CH_2CN, 5, crystallizes in the triclinic space group P1? with a = 12.3478(2) ?, b = 15.0017(2) ?, c = 16.1476(4) ?, α = 100.252(1)°, β = 100.943(1)°, γ = 113.049(1)°, and V = 2594.80(8) ?~3. Finally, compound 6, [Tb(Pybox)_2(NO _3)(H_2O)](NO_3)_2·CH _3OH, crystallizes in the triclinic P1? space group with a = 9.7791(2) ?, b = 10.1722(2) ?, c = 15.3368(3) ?, α = 83.753(1)°, β = 78.307(1)°, γ = 85.630(1)°, and V = 1482.33(5) ?~3. In solution, the existence of 3:1, 2:1, and 1:1 species can be observed through absorption and luminescence speciation measurements as well as NMR spectroscopy. The stability constants in acetonitrile, as an average obtained from absorption and emission titrations, are log β_(11) = 5.4, log β_(12) = 8.8, and log β_(13) = 12.8 with Eu(III) and log β_(11) = 4.5, log β_(12) = 8.4, and log β_(13) = 11.7 for the Tb(III) species with PyboxOMe. Pybox displayed stability constants log β_(11) = 3.6, log β_(12) = 9.1, and log β_(13) = 12.0 with Eu(III) and log β_(11) = 3.7, log β_(12) = 9.3, and log β_(13) = 12.2 for the Tb(III) species. Finally, PyboxBr yielded log β_(11) = 7.1, log β_(12) = 12.2, and log β_(13) = 15.5 for the Eu(III) species and log β_(11) = 6.2, log β_(12) = 11.0, and log β_(13) = 15.4 with Tb(III). Photophysical characterization was performed in all cases on solutions with 3:1 ligand-to-metal ion stoichiometry and allowed determination of quantum yields and lifetimes of emission for PyboxOMe of 23.5 ± 1.6% and 1.54 ± 0.04 ms for Eu(III) and 21.4 ± 3.6% and 1.88 ± 0.04 ms for Tb(III). For Pybox these values were 25.6 ± 1.1% and 1.49 ± 0.04 ms for Eu(III) and 23.2 ± 2.1% and 0.44 ± 0.01 ms for Tb(III) and for PyboxBr they were 35.8 ± 1.6% and 1.46 ± 0.03 ms for Eu(III) and 23.3 ± 1.3% and a double lifetime of 0.79 ± 0.05/0.07 ± 0.01 ms for Tb(III). A linear relationship between the triplet level energies and the Hammett σ constants was found. Lifetime measurements in methanol as well as the NMR data in both methanol and acetonitrile indicate that all complexes are stable in the 3:1 stoichiometry in solution and that there is no solvent coordination to the metal ion.
机译:分离了在吡啶环对位用-H,-OMe和-Br衍生的吡啶-双(恶唑啉)与Eu(III)和Tb(III)的新配合物。不管配体与金属的比例如何,它们在固态时都具有高发光性。分离了几种金属配合物,并通过单晶X射线衍射对其进行了表征,显示出可以利用该配体家族获得的丰富的结构多样性。 [Eu(PyboxOMe)_3](NO_3)_3·3CH_2Cl_2,1在单斜空间群P2_1 / n中结晶,其单元参数a = 14.3699(10)?,b = 13.4059(9)?,c = 25.8766( 18)β,β= 95.367(1)°,V = 4963.1(6)α〜3。等结构[Tb(PyboxOMe)_3](NO_3)_3·3CH_2Cl_2,2的结晶参数为a = 14.4845(16)α,b = 13.2998(15)α,c = 25.890(3)β,β= 94.918( 2)°,并且V = 4969.1(10)α〜3。 3,具有公式[Eu(PyboxBr)(NO_3)_3(H_2O)]的1:1配合物在单斜P2_1 / c空间群中结晶,其中a = 11.649(2)?,b = 8.3914(17)?, c = 20.320(4)θ,β= 100.25(3)°,V = 1954.5(7)θ〜3。如图4所示,PyboxBr与Tb(NO_3)_3的反应产物为[Tb(PyboxBr)_2(η〜2-NO_3)(η〜1-NO_3] _2 [Tb(NO_3)_5]·5H_2O。在单斜空间群P2_1中,a = 15.612(3)?,b = 14.330(3)?,c = 16.271(3)?,β= 92.58(3)°,V = 3636.5(13)?〜3。 [Tb(Pybox)_3](CF _3SO_3)_3·3CH_2CN,5在三斜晶空间群P1中结晶,其中a = 12.3478(2),b = 15.0017(2),c = 16.1476(4), α= 100.252(1)°,β= 100.943(1)°,γ= 113.049(1)°,V = 2594.80(8)α〜3。最后是化合物6,[Tb(Pybox)_2(NO _3) (H_2O)](NO_3)_2·CH _3OH,在三斜P1α空间群中结晶,其a = 9.7791(2)α,b = 10.1722(2)α,c = 15.3368(3)α,α= 83.753(1 )°,β= 78.307(1)°,γ= 85.630(1)°,V = 1482.33(5)α〜3。在溶液中,可以存在3:1、2:1和1:1的物种通过吸收和发光形态测量以及NMR光谱可以观察到乙腈的稳定常数,取自吸收和发射滴定的平均值为logβ_。 (11)= 5.4,logβ_(12)= 8.8,logβ_(13)= 12.8,Eu(III)和logβ_(11)= 4.5,logβ_(12)= 8.4,logβ_(13)对于带有PyboxOMe的Tb(III)物种,其= 11.7。 Pybox显示的稳定常数logβ_(11)= 3.6,logβ_(12)= 9.1,logβ_(13)= 12.0,其中Eu(III)和logβ_(11)= 3.7,logβ_(12)= 9.3,对于Tb(III)物种的logβ_(13)= 12.2。最后,对于Eu(III)物种,PyboxBr的log log_(11)= 7.1,logβ_(12)= 12.2,logβ_(13)= 15.5,logβ_(11)= 6.2,logβ_(12)= Tb(III)为11.0,logβ_(13)= 15.4。在所有情况下,对配体与金属离子化学计量比为3:1的溶液均进行了光物理表征,并确定了Eu(III)和21.4±的PyboxOMe的量子产率和发射寿命分别为23.5±1.6%和1.54±0.04 ms。 Tb(III)的3.6%和1.88±0.04 ms。对于Pybox,Eu(III)的这些值为25.6±1.1%和1.49±0.04 ms,而Tb(III)的23.2±2.1%和0.44±0.01 ms对于PyboxBr则为35.8±1.6%和Eu 4.46±0.03 ms (III)和23.3±1.3%,Tb(III)的双寿命为0.79±0.05 / 0.07±0.01 ms。发现三重态能级与Hammettσ常数之间存在线性关系。在甲醇中进行的终生测量以及甲醇和乙腈中的NMR数据表明,所有络合物在溶液中的化学计量比为3:1时都是稳定的,并且没有溶剂与金属离子配位。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号