Université Clermont Auvergne, Clermont Auvergne INP, CNRS, Institut Pascal, F-63000 Clermont-Ferrand, France.
Nantes Université, CNRS, Institut des Matériaux de Nantes Jean Rouxel, IMN, 2 rue de la Houssinière BP32229, CEDEX 3, F-44322 Nantes, France.
Molecules. 2023 Jan 19;28(3):1006. doi: 10.3390/molecules28031006.
By selecting two electroactive species immobilized in a layered double hydroxide backbone (LDH) host, one able to act as a positive electrode material and the other as a negative one, it was possible to match their capacity to design an innovative energy storage device. Each electrode material is based on electroactive species, riboflavin phosphate (RF) on one side and ferrocene carboxylate (FCm) on the other, both interleaved into a layered double hydroxide (LDH) host structure to avoid any possible molecule migration and instability. The intercalation of the electroactive guest molecules is demonstrated by X-ray diffraction with the observation of an interlayer LDH spacing of about 2 nm in each case. When successfully hosted into LDH interlayer space, the electrochemical behavior of each hybrid assembly was scrutinized separately in aqueous electrolyte to characterize the redox reaction occurring upon cycling and found to be a rapid faradic type. Both electrode materials were placed face to face to achieve a new aqueous battery (16C rate) that provides a first cycle-capacity of about 7 mAh per gram of working electrode material LDH/FCm at 10 mV/s over a voltage window of 2.2 V in 1M sodium acetate, thus validating the hybrid LDH host approach on both electrode materials even if the cyclability of the assembly has not yet been met.
通过选择两种固定在层状双氢氧化物(LDH)骨架中的电活性物质,一种可以作为正极材料,另一种可以作为负极材料,我们可以匹配它们的容量,设计一种创新的储能装置。每个电极材料都是基于电活性物质的,一侧是核黄素磷酸(RF),另一侧是二茂铁羧酸(FCm),两者都嵌入层状双氢氧化物(LDH)的主体结构中,以避免任何可能的分子迁移和不稳定性。电活性客体分子的插层通过 X 射线衍射得到证明,在每种情况下都观察到层间 LDH 间距约为 2nm。当成功地被容纳在 LDH 层间空间中时,对每个混合组件的电化学行为分别在水性电解质中进行了仔细研究,以表征循环过程中发生的氧化还原反应,发现这是一种快速的法拉第型反应。将两种电极材料面对面放置,以实现一种新的水性电池(16C 率),在 1M 乙酸钠中,电压窗口为 2.2V,以 10mV/s 的速度循环时,每个工作电极材料 LDH/FCm 的首次循环容量约为 7mAh/g,从而验证了混合 LDH 主体方法对两种电极材料的有效性,尽管该组件的循环稳定性尚未得到满足。