首页> 外文期刊>Journal of Coordination Chemistry >Vanadyl(IV) complexes of 4-alkoxy substituted [N,O] donor salicylaldimine Schiff bases derived from chloro-itro-aniline: synthesis, mesomorphism, and DFT study
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Vanadyl(IV) complexes of 4-alkoxy substituted [N,O] donor salicylaldimine Schiff bases derived from chloro-itro-aniline: synthesis, mesomorphism, and DFT study

机译:源自氯-/硝基苯胺的4-烷氧基取代的[N,O]供体水杨醛亚胺席夫碱的钒(IV)配合物:合成,同构和DFT研究

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Oxovanadium(IV)-Schiff-base complexes, [VOL_2] {L = N,N'-bis-(4-X-amino phenyl (4'-n-alkoxy)-salicylaldiminato), n = 10, 18;;X = C1, NO_2}, have been synthesized from the interaction of vanadyl (VO~(2+)) and the bidentate [N,O] donor in methanol/ethanol. The compounds were characterized by FT-IR, ~1H- and ~(13)C-NMR, FAB-mass spectra, elemental analyses, and solution electrical conductivity. Mesomorphic behavior of the ligands and their vanadyl complexes were probed by polarizing optical microscopy and differential scanning calorimetry. The compounds are thermally stable and exhibit enantiotropic smectic A mesomorphism over the temperature range of 57-231°C. The mesophase-isotropic transition temperatures for the complexes are much higher than the ligands. Melting and clearing points of the compounds did not show any definitive trend with regards to alkoxy chain length or electronegative substituent. Variable temperature magnetic susceptibility measurements of the vanadyl complexes clearly show the absence of exchange interactions among the vanadyl spin centers. Non-electrolytic natures of the complexes were shown by conductometric measurements. A υ(V=O) of ~970 cm~(-1) corroborated the absence of any V=O... V=O interactions. Density functional theory study carried out using DMo13 at BLYP/DNP level to determine the energy-optimized structure revealed a distorted square pyramidal geometry for the vanadyl complexes.
机译:氧钒(IV)-席夫碱配合物,[VOL_2] {L = N,N'-双-(4-X-氨基苯基(4'-n-烷氧基)-水杨基亚氨基),n = 10,18 ;; X由钒基(VO〜(2+))与双齿[N,O]供体在甲醇/乙醇中的相互作用合成了= C1,NO_2}。通过FT-IR,〜1H-和〜(13)C-NMR,FAB质谱,元素分析和溶液电导率对化合物进行表征。通过偏光光学显微镜和差示扫描量热法探究了配体及其钒基配合物的介晶行为。这些化合物是热稳定的,并且在57-231°C的温度范围内表现出对映体近晶A的同构。配合物的中间相-各向同性转变温度远高于配体。化合物的熔点和透明点在烷氧基链长或负电性取代基方面没有任何确定的趋势。钒基络合物的可变温度磁化率测量清楚地表明了钒基自旋中心之间不存在交换相互作用。络合物的非电解性质通过电导测量显示。 〜970 cm〜(-1)的υ(V = O)证实了不存在任何V = O ... V = O相互作用。在BLYP / DNP水平上使用DMo13进行的密度泛函理论研究,确定了能量优化的结构,揭示了钒基配合物的扭曲的方形锥体形状。

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