Preparation of nanocomposite material based on Porphyrin and electrochemical analysis for green fuel production

Dang Trung Dung, Nguyen Thi Xuan Quynh, Mai Tien Dat, Nguyen Thi Anh Thu, Nguyen Thanh Tung, Tran Van Chinh, Nguyen Thi Giang, La Duc Duong
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Abstract

In the current environmental pollution situation, using green fuel sources such as H2 gas to overcome the challenge of pollution and resource depletion is a useful solution. This research used the acid-base neutralization method with the recombination process to successfully fabricate CuFe2O4/TCPP nanocomposites. The morphological and structural properties of the materials were evaluated by scanning electron microscopy (SEM), X-ray diffraction (XRD) which show that the resulting material has a structure consisting of TCPP filaments with a diameter of about 20-30 nm and a length of µm, interspersed with CuFe2O4 particles with sizes in the range of 100 nm. The electrochemical properties of the as-prepared material film were investigated by Cyclic Voltammetry (CV) and electrochemical impedance spectroscopy (EIS) on a glassy carbon electrode with a 3-electrodes system. The results show the appearance of electrochemical characteristics of copper ferrite/porphyrin hybrid materials and especially the change of electrochemical characteristics when this nanocomposite was irradiated by an external light source. These results are expecting to apply this material in the photocatalytic process to produce green fuel H2 from water.
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制备基于卟啉的纳米复合材料并进行电化学分析以生产绿色燃料
在当前环境污染严重的情况下,利用 H2 气体等绿色燃料来克服污染和资源枯竭的挑战不失为一种有效的解决方案。本研究采用酸碱中和法与重组工艺成功制备了 CuFe2O4/TCPP 纳米复合材料。扫描电子显微镜(SEM)和 X 射线衍射(XRD)对材料的形态和结构特性进行了评估,结果表明所制得的材料具有由直径约为 20-30 纳米、长度为微米的 TCPP 细丝组成的结构,其中夹杂着尺寸在 100 纳米范围内的 CuFe2O4 颗粒。通过循环伏安法(CV)和电化学阻抗谱法(EIS)研究了制备的材料薄膜在三电极系统的玻璃碳电极上的电化学特性。结果显示了铜铁氧体/卟啉杂化材料的电化学特性,尤其是当这种纳米复合材料受到外部光源照射时的电化学特性变化。这些结果有望将这种材料应用于光催化过程,从水中产生绿色燃料 H2。
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