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Porphyrin doped vanadium pentoxide xerogel as electrode material

机译:卟啉掺杂五氧化二钒干凝胶作为电极材料

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摘要

The lamellar composite material, VXG-TMPyP, obtained from the combination of cationic, water-soluble meso-(tetra-4-methylpyridinium)-porphyrin (TMPyP) and vanadium pentoxide gel was investigated and employed as electrode modifying material. This material was isolated as a xerogel and characterized by X-ray diffraction, UV-Vis spectroscopy, cyclic voltammetry, spectroelectrochemistry and TG analysis. According to the X-ray diffraction data, the original VXG lamellar matrix framework is kept in the composite, evidencing a topotatic reaction. UV-Vis spectra indicated a strong interaction between VXG and TMPyP leading to the protonation of the porphyrin ring. In contrast with the vanadium oxide xerogel the new material is stable in water. The presence of the cationic porphyrin species in its structure turns it able to incorporate negatively charged ions, such as ferrocyanide and I~-. The presence of the I_2/I~- couple gives rise to a dramatic increase in the reversibility of the V~(V/IV) process and in the charge capacity of the material.
机译:研究了由阳离子,水溶性内消旋-(4--4-甲基吡啶鎓)-卟啉(TMPyP)和五氧化二钒凝胶的组合获得的层状复合材料VXG-TMPyP,并将其用作电极改性材料。分离出该材料为干凝胶,并通过X射线衍射,UV-Vis光谱,循环伏安法,光谱电化学和TG分析对其进行表征。根据X射线衍射数据,原始的VXG层状骨架被保留在复合材料中,表明存在完全反应。 UV-Vis光谱表明VXG与TMPyP之间存在强相互作用,从而导致卟啉环的质子化。与氧化钒干凝胶相反,新材料在水中是稳定的。阳离子卟啉物质在其结构中的存在使其能够结合带负电的离子,例如亚铁氰化物和I--。 I_2 / I〜-对的存在极大地提高了V〜(V / IV)过程的可逆性和材料的充电能力。

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