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Hexakis(236-tri-O-methyl)-α-cyclodextrin–I5– complex in aqueous I–/I3– thermocells and enhancement in the Seebeck coefficient

机译:I- / I3-水溶液中热电池中的六(236-三-O-甲基)-α-环糊精-I5-复合物和塞贝克系数的提高

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摘要

A large Seebeck coefficient (Se) of 1.9 mV K–1 was recorded for the I/I3 thermocell by utilizing the host-guest complexation of hexakis(2,3,6-tri-O-methyl)-α-cyclodextrin (Me18-α-CD) with the oxidized iodide species. The thermocell measurement and UV-vis spectroscopy unveiled the formation of an Me18-α-CD–pentaiodide (I5) complex, which is in remarkable contrast to the triiodide complex α-CD–I3 previously reported. Although the precipitation of the α-CD–I3 complex in the presence of an electrolyte such as potassium chloride is a problem in thermocells, this issue was solved by using Me18-α-CD as a host compound. The absence of precipitation in the Me18-α-CD and I/I3 system containing potassium chloride not only improved the Se of the I/I3 thermocell, but also significantly enhanced the temporal stability of its power output. This is the first observation that I5 species is formed in aqueous solution in a thermocell. Furthermore, the solution equilibrium of the redox couples was controlled by tuning the chemical structure of the host compounds. Thus, the integration of host-guest chemistry with redox couples extends the application of thermocells.
机译:通过使用主机来宾记录到I / I3 热电池的大塞贝克系数(Se)为1.9 mV K –1 六(2,3,6-三-O-甲基)-α-环糊精(Me18-α-CD)与氧化碘化物的络合热室测量和紫外可见光谱揭示了Me18-α-CD-五碘化物(I5 )配合物的形成,这与三碘化物配合物α-CD-I3形成了鲜明的对比。 – 先前报告。尽管在电解质(如氯化钾)存在下α-CD–I3 配合物的沉淀是热电池中的问题,但通过使用Me18-α-CD作为主体化合物解决了该问题。 Me18-α-CD和含氯化钾的I / I3 系统中不存在沉淀不仅改善了I / I3 热电池,但也显着增强了其功率输出的时间稳定性。这是第一个观察到I5 物质在热电池中的水溶液中形成的现象。此外,通过调节主体化合物的化学结构来控制氧化还原对的溶液平衡。因此,主客体化学与氧化还原对的整合扩展了热电池的应用。

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