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首页> 外文期刊>RSC Advances >Isolation of proton transfer complexes containing 4-picolinium as cation and pyridine-2,6-dicarboxylate complex as anion: crystallographic and spectral investigations, antioxidant activities and molecular docking studies
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Isolation of proton transfer complexes containing 4-picolinium as cation and pyridine-2,6-dicarboxylate complex as anion: crystallographic and spectral investigations, antioxidant activities and molecular docking studies

机译:含有4-吡啶鎓作为阴离子和吡啶-2,6-二羧酸酯的质子转移络合物的分离为阴离子:结晶和光谱研究,抗氧化活性和分子对接研究

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Three novel complexes with stoichiometry [4-pic-H][M(pda) _(2) ]·2H _(2) O [M = Cr ( 1 ), Fe ( 2 ) and Co ( 3 ); H _(2) pda = pyridine-2,6-dicarboxylic acid and 4-pic = 4-picoline] have been prepared. The complexes ( 1–3 ) are characterized using elemental analysis, TGA, CV, FTIR, ESI mass, ~(1) Hand ~(13) C NMR, EPR, UV Visible, fluorescence, magnetic and X-ray studies. Spectral data ascertained the bonding modes and the geometry of the complexes. Single crystal X-ray data of ( 2 ) and ( 3 ) revealed the formation of proton transfer complexes in which a proton is transferred from the H _(2) pda moiety to the pyridine nitrogen of 4-pic. Thermal and ESI mass data confirmed the proposed stoichiometry of the complexes. Cyclic voltammetric (CV) studies confirm the formation of M ~(II) /M ~(III) quasi-reversible redox couples in solution. The antioxidant activity of ( 3 ) assessed using DPPH and hydrogen peroxide assays has suggested that the present compounds may be used as potent antioxidants. Molecular docking studies performed for ( 2 ) and ( 3 ) reveal that the present complexes can efficiently bind with DNA receptor with free energy of binding (FEB) values of ?314 ( 2 ) and ?276.8 kcal mol ~(?1) ( 3 ). The molecular docking studies indicated a higher binding ability of ( 2 ) to DNA compared to that of ( 3 ).
机译:具有化学计量的三种新络合物[4-PIC-H] [M(PDA)_(2)]·2H _(2)O [M = Cr(1),Fe(2)和Co(3); H _(2)PDA =吡啶-2,6-二羧酸和4-PIC = 4-吡啶]已经制备。复合物(1-3)的特征在于使用元素分析,TGA,CV,FTIR,ESI质量,〜(1)手〜(13)C NMR,EPR,UV可见,荧光,磁性和X射线研究。光谱数据确定键合模式和复合物的几何形状。 (2)和(3)的单晶X射线数据揭示了质子转移复合物的形成,其中质子从H(2)PDA部分转移到4-PIC的吡啶氮。热量和ESI质量数据证实了复合物的提出的化学计量。循环伏安(CV)研究证实了溶液中M〜(II)/ m〜(III)准可逆氧化还原耦合的形成。使用DPPH和过氧化氢测定评估的(3)的抗氧化活性表明本发明的化合物可用作有效的抗氧化剂。对(2)和(3)进行的分子对接研究表明,本络合物可以有效地与DNA受体与无结合能量(2月)的DNA受体结合α314(2)和β276.8kcal mol〜(3 )。分子对接研究表明(2)对DNA的较高结合能力与(3)相比。

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