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Helical Lanthanide(III) Complexes with Chiral Nonaaza Macrocycle

机译:具有手性Nonaaza大环的螺旋镧系元素(III)配合物

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摘要

The chiral nonaazamacrocyclic amine >L, which is a reduction product of the 3+3 Schiff base macrocycle, wraps around the lanthanide(III) ions to form enantiopure helical complexes. These Ce(III), Pr(III), Nd(III), Eu(III), Gd(III), Tb(III), Er(III), Yb(III) and Lu(III) complexes have been isolated in enantiopure form and have been characterized by spectroscopic methods. X-ray crystal structures of the Ln(III) complexes with >L show that the thermodynamic product of the complexation of the RRRRRR-isomer of the macrocycle is the (M)-helical complex in the case of Ce(III), Pr(III), Nd(III) and Eu(III). In contrast, the (P)-helical complex is the thermodynamic product in the case of Yb(III) and Lu(III). The NMR and CD spectra show that the (M)-helicity for the kinetic complexation product of the RRRRRR-isomer of the macrocycle is preferred for all investigated lanthanide(III) ions, while the preferred helicity of the thermodynamic product is (M) for the early lanthanide(III) ions and (P) for the late lanthanide(III) ions. In the case of the late lanthanide(III) ions, a slow inversion of helicity between the kinetic (M)-helical product and the thermodynamic (P)-helical product is observed in solution. For Er(III), Yb(III) and Lu(III) both forms have been isolated in pure form and characterized by NMR and CD. The analysis of 2D NMR spectra of the Lu(III) complex reveals the NOE correlations that prove that the helical structure is retained in solution. The NMR spectra also reveal large isotopic effect on the 1H NMR shifts of paramagnetic Ln(III) complexes, related to NH/ND exchange. Photophysical measurements show that >LRRRRRR appears to favour an efficient 3ππ*-to-Ln energy transfer process taking place for Eu(III) and Tb(III), but these Eu(III)- and Tb(III)-containing complexes with >LRRRRRR lead to small luminescent quantum yields due to an incomplete intersystem crossing (isc) transfer, a weak efficiency of the luminescence sensitization by the ligand, and/or efficient non-radiative deactivation processes. Circularly polarized luminescence on the MeOH solutions of Eu(III) and Tb(III) complexes confirms the presence of stable chiral emitting species and the observation of almost perfect mirror-image CPL spectra for these compounds with both enantiomeric forms of >L.
机译:手性九氮杂大环胺> L ,是3 + 3 Schiff碱大环的还原产物,环绕镧系元素离子形成对映体纯的螺旋络合物。这些Ce(III),Pr(III),Nd(III),Eu(III),Gd(III),Tb(III),Er(III),Yb(III)和Lu(III)络合物已在对映体形式,并已通过光谱学方法表征。 Ln(III)与> L 的配合物的X射线晶体结构表明,在铈的情况下,大环的RRRRRR-异构体的配合物的热力学乘积为(M)-螺旋配合物。 (III),Pr(III),Nd(III)和Eu(III)。相反,在Yb(III)和Lu(III)的情况下,(P)-螺旋络合物是热力学产物。 NMR和CD光谱表明,对于所有研究的镧系元素(III)离子而言,大环RRRRRR-异构体动力学络合产物的(M)螺旋结构均优选,而对于早期的镧系元素(III)离子,(P)表示晚期的镧系元素(III)离子。在后期镧系元素(III)离子的情况下,在溶液中观察到动力学(M)-螺旋产物和热力学(P)-螺旋产物之间的螺旋度缓慢反转。对于Er(III),Yb(III)和Lu(III),两种形式均已分离为纯形式,并通过NMR和CD表征。 Lu(III)配合物的2D NMR光谱分析揭示了NOE相关性,证明了螺旋结构保留在溶液中。 NMR光谱还揭示了较大的同位素效应对顺磁性Ln(III)配合物与NH / ND交换有关的 1 H NMR位移。光物理测量表明,> LRRRRRR 似乎有利于Eu(III)和Tb(III)发生高效的 3 ππ* -Ln能量转移过程,但是这些Eu具有> LRRRRRR 的含(III)和Tb(III)的配合物由于不完全的系统间穿越(isc)转移,配体的发光敏化效率较弱而导致较小的发光量子产率,并且/或有效的非辐射灭活过程。 Eu(III)和Tb(III)配合物的MeOH溶液上的圆偏振发光证实了稳定的手性发射物质的存在以及这些化合物的强对映体形式L 的几乎完美的CPL光谱观察/ strong>。

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