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阴离子能插入到MXene中吗?

Can Anions Be Inserted into MXene?

作者信息

Shpigel Netanel, Chakraborty Arup, Malchik Fyodor, Bergman Gil, Nimkar Amey, Gavriel Bar, Turgeman Meital, Hong Chulgi Nathan, Lukatskaya Maria R, Levi Mikhael D, Gogotsi Yury, Major Dan T, Aurbach Doron

机构信息

Department of Chemistry and BINA-BIU Center for Nanotechnology and Advanced Materials, Bar-Ilan University, Ramat-Gan 5290002, Israel.

Center for Physical and Chemical Methods of Research and Analysis, al-Farabi Kazakh National University, 050040 Almaty, Kazakhstan.

出版信息

J Am Chem Soc. 2021 Aug 18;143(32):12552-12559. doi: 10.1021/jacs.1c03840. Epub 2021 Aug 6.

Abstract

Despite the continuous progress in the research and development of TiCT (MXene) electrodes for high-power batteries and supercapacitor applications, the role of the anions in the electrochemical energy storage and their ability to intercalate between the MXene sheets upon application of positive voltage have not been clarified. A decade after the discovery of MXenes, the information about the possibility of anion insertion into the restacked MXene electrode is still being questioned. Since the positive potential stability range in diluted aqueous electrolytes is severely limited by anodic oxidation of the Ti, the possibility of anion insertion was evaluated in concentrated aqueous electrolyte solutions and aprotic electrolytes as well. To address this issue, we have conducted gravimetric electrochemical quartz crystal microbalance with dissipation monitoring (EQCM-D) measurements in highly concentrated LiCl and LiBr electrolytes, which enable a significant extension of the operation range of the MXene electrodes toward positive potentials. Also, halogens are among the smallest anions and should be easier to intercalate between MXene layers, in comparison to multiatomic anions. On the basis of mass change variations in the positive voltage range and complementary density functional theory calculations, it was demonstrated that insertion of anionic species into MXene, within the range of potentials of interest for capacitive energy storage, is not likely to occur. This can be explained by the strong negative charge on TiCT sheets terminated by functional groups.

摘要

尽管在用于高功率电池和超级电容器应用的TiCT(MXene)电极的研发方面取得了持续进展,但阴离子在电化学能量存储中的作用以及在施加正电压时它们插入MXene片层之间的能力尚未得到阐明。在发现MXenes十年后,关于阴离子插入重新堆叠的MXene电极可能性的信息仍受到质疑。由于稀释水电解质中的正电位稳定范围受到Ti阳极氧化的严重限制,因此也在浓水电解质溶液和非质子电解质中评估了阴离子插入的可能性。为了解决这个问题,我们在高浓度LiCl和LiBr电解质中进行了带有耗散监测的重量电化学石英晶体微天平(EQCM-D)测量,这使得MXene电极向正电位的操作范围得到了显著扩展。此外,与多原子阴离子相比,卤素是最小的阴离子之一,应该更容易插入MXene层之间。基于正电压范围内的质量变化以及互补密度泛函理论计算,结果表明在电容性储能感兴趣的电位范围内,阴离子物种不太可能插入MXene中。这可以通过由官能团终止的TiCT片层上的强负电荷来解释。

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