首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Mono- and bimetallic lanthanide(III) phenolic cryptates obtained by template reaction: solid state structure, photophysical properties and relaxivity
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Mono- and bimetallic lanthanide(III) phenolic cryptates obtained by template reaction: solid state structure, photophysical properties and relaxivity

机译:通过模板反应获得的单金属和双金属镧系元素(III)酚盐酸盐:固态结构,光物理性质和弛豫性

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摘要

We report here a structural and photophysical study of lanthanide monometallic complexes with the macrobicyclic axial phenolic cryptand N[(CH2)(2)N=CH-R-CH=N(CH2)(2)](3)N (R=m-C6H2OH-2-Me-5) L as well as of bimetallic complexes with its de-protonated form (L-3H)(3-). The X-ray crystal structure of [DyL(NO3)](NO3)(2). 2CH(3)CN . 0.5H(2)O shows the metal ion being asymmetrically positioned into the macrobicyclic cavity and bonded to seven donor atoms of L and two oxygen atoms of a bidentate nitrate ion. The X-ray crystal structure of the bimetallic cryptate, [Dy-2(L-3H)(NO3)(2)](NO3). 3H(2)O . MeOH, confirms that both Dy(III) ions are held into the cavity of the cryptand at a very short distance from each other, 3.4840(4) Angstrom. High resolution laser-excited emission spectra of the crystalline monometallic Eu(III) cryptate point to the presence of a single site with low symmetry for the metal, while lifetime measurements in H2O and D2O solutions allowed us to estimate the number of bound water molecules, q=1. Both mono- and binuclear Yb(III) cryptates display strong emission upon excitation through the ligand electronic levels, the spectrum of the binuclear complex being consistent with the presence of two Yb(III) ions in different co-ordination environments. Proton NMRD profiles for the mononuclear Gd(III) complex have been measured in the temperature range 5-37 degrees C and show that the relaxivity is mainly limited by fast rotation; this compound is stable towards acid-catalysed decomposition in aqueous solution only at pH > 5.5. [References: 53]
机译:我们在这里报告了镧系单金属配合物与大双环轴向酚盐配合物N [(CH2)(2)N = CH-R-CH = N(CH2)(2)](3)N(R = m -C6H2OH-2-Me-​​5)L以及具有去质子化形式的双金属配合物(L-3H)(3-)。 [DyL(NO3)](NO3)(2)的X射线晶体结构。 2CH(3)CN。 0.5H(2)O显示金属离子不对称地位于大双环腔中,并键合到L的七个供体原子和二齿硝酸根离子的两个氧原子上。双金属穴状化合物[Dy-2(L-3H)(NO3)(2)](NO3)的X射线晶体结构。 3H(2)O。 MeOH证实,两个Dy(III)离子都以非常短的距离3.4840(4)埃被保持在隐穴腔中。晶体单金属Eu(III)加密物的高分辨率激光激发发射光谱指向金属存在低对称性的单个位点,而在H2O和D2O溶液中的寿命测量使我们能够估计结合的水分子的数量, q = 1。单核和双核Yb(III)加密物在通过配体电子能级激发时均显示出强发射,双核复合物的光谱与在不同配位环境中存在的两个Yb(III)离子一致。单核Gd(III)配合物的质子NMRD谱图已在5-37摄氏度的温度范围内进行了测量,结果表明驰豫性主要受快速旋转的限制;该化合物仅在pH> 5.5时对水溶液中的酸催化分解稳定。 [参考:53]

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