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首页> 外文期刊>Journal of Solid State Chemistry >Effect of temperature on formation of two new lanthanide metal-organic frameworks: Synthesis, characterization and theoretical studies of Tm(III)-succinate
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Effect of temperature on formation of two new lanthanide metal-organic frameworks: Synthesis, characterization and theoretical studies of Tm(III)-succinate

机译:温度对两种新型镧系金属-有机骨架形成的影响:琥珀酸Tm(III)的合成,表征和理论研究

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摘要

Two new metal-organic frameworks (MOFs) have been synthesized under different hydrothermal conditions and characterized by single-crystal X-ray diffraction, infrared spectroscopy, thermogravimetric analysis, scanning electron microscopy and elemental analysis. Compound 1, crystallized in space group P1 with the formula [Tm _2(L) _3(H _2O) _2]·H _2O, (H _2L=succinic acid), has triclinic cell parameters of a=7.61780(10), b=10.58050(10), c=12.71030(10), α=95.3130(10), β=107.4370(10), γ=111.0960(10) and a cell volume of 888.446(16) ? ~3. Compound 2, crystallized in space group I2/a with the same formula, is monoclinic, with cell parameters of a=13.77020(10), b=7.63170(10), c=17.2410(2), β=101.303(10) and a cell volume of 1776.72(3) ? ~3. The results of this work indicate that a flexible succinate ligand that provides several modes of coordination can lead to different conformations, depending on the temperature used in the reaction. In the theoretical part of this study, semiempirical quantum chemistry methods using AM1, PM3 and PM6 models are employed to predict the structure of MOFs, calculate the geometric and crystallographic parameters, and make comparisons with experimental data.
机译:已经在不同的水热条件下合成了两种新的金属有机骨架(MOF),并通过单晶X射线衍射,红外光谱,热重分析,扫描电子显微镜和元素分析对其进行了表征。在空间群P1中以式[Tm _2(L)_3(H _2O)_2]·H _2O(H _2L =琥珀酸)结晶的化合物1的三斜晶胞参数为a = 7.61780(10),b = 10.58050(10),c = 12.71030(10),α= 95.3130(10),β= 107.4370(10),γ= 111.0960(10)和细胞体积888.446(16)? 〜3。具有相同分子式的在I2 / a空间群中结晶的化合物2是单斜晶系,其单元参数为a = 13.77020(10),b = 7.63170(10),c = 17.2410(2),β= 101.303(10)和细胞体积为1776.72(3)? 〜3。这项工作的结果表明,根据反应中所用的温度,提供多种配位模式的柔性琥珀酸酯配体可导致不同的构象。在本研究的理论部分,采用使用AM1,PM3和PM6模型的半经验量子化学方法来预测MOF的结构,计算几何和晶体学参数,并与实验数据进行比较。

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