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首页> 外文期刊>Journal of solid state electrochemistry >The synthesis and investigation of binuclear metal phthalocyanines as high-efficiency catalysts for Li/SOCl2 battery
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The synthesis and investigation of binuclear metal phthalocyanines as high-efficiency catalysts for Li/SOCl2 battery

机译:Li / SOCl2电池用双核金属酞菁类高效催化剂的合成与研究

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摘要

Two novel series of binuclear metal phthalocyanines M-2(PcHb)(2) and M-2(PcHb)(2)C (M = Co(II), Mn(II), Fe(II), Ni(II), and Cu(II)) were designed and synthesized as high-efficiency catalysts for lithium/thionyl chloride (Li/SOCl2) battery. For the sake of preparing the novel compounds, a simple and convenient method called microwave irradiation was developed. Numerous techniques including elemental analysis, Fourier transform infrared, ultraviolet-visible, and thermal gravimetric analysis were employed to characterize the final products. For the purpose of evaluating the catalytic performances of binuclear metal phthalocyanines to Li/SOCl2 battery, these compounds were operated in the electrolyte of the battery. The results revealed that the capacity of the battery had been improved approximately 15.4-46.1 %, which should be attributed to the electronic configurations of the metal ions, the phthalocyanine rings, and the synergistic effect. Among the effects of diverse metal ions on the catalytic performances of binuclear phthalocyanines, Co(II) and Ni(II) phthalocyanines were found to increase the catalytic performances to a great extent, approximately 45.1 and 46.1 %, respectively. In summary, all the evidences testified that binuclear metal phthalocyanines in this study could improve the catalyst performances dramatically when they were operated in the electrolyte of the battery.
机译:两个新的双核金属酞菁系列M-2(PcHb)(2)和M-2(PcHb)(2)C(M = Co(II),Mn(II),Fe(II),Ni(II),设计并合成了Cu(II)和Cu(II)作为锂/亚硫酰氯(Li / SOCl2)电池的高效催化剂。为了制备新型化合物,开发了一种简单方便的方法,称为微波辐射。包括元素分析,傅立叶变换红外,紫外可见光和热重分析在内的许多技术都用于表征最终产品。为了评估双核金属酞菁对Li / SOCl2电池的催化性能,这些化合物在电池的电解质中运行。结果表明,电池的容量已提高了约15.4-46.1%,这应归因于金属离子的电子构型,酞菁环和协同效应。在多种金属离子对双核酞菁催化性能的影响中,发现Co(II)和Ni(II)酞菁在很大程度上提高了催化性能,分别约为45.1%和46.1%。总而言之,所有证据都证明,本研究中的双核金属酞菁类化合物在电池电解液中运行时,可以显着改善催化剂性能。

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