Front Cover: Optimizing Polyoxometalate Electrodes for Energy Storage via Cation Design and Thermal Activation (Chem. Methods 9/2025)

IF 3.6 Q1 CHEMISTRY, MULTIDISCIPLINARY
Lucía Vizcaíno-Anaya, Óscar Giner-Rajala, Carlos Herreros-Lucas, Héctor Rodríguez, María del Carmen Giménez-López
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Abstract

The Front Cover shows a magnified view of a polyoxometalate-based electrode material, highlighting the thermal activation of organic cations. This process is depicted as dancing molecules, symbolizing the dynamic rearrangement triggered by heat treatment. The work described in the Research Article by M. Giménez López and co-workers (DOI: 10.1002/cmtd.202500046) emphasizes the importance of selecting organic cations with tailored molecular structures and applying a thermal activation strategy to develop more efficient and stable energy storage systems.

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封面:通过阳离子设计和热活化优化多金属氧酸盐储能电极(化学)。方法9/2025)
前盖显示了多金属酸氧基电极材料的放大视图,突出了有机阳离子的热活化。这一过程被描绘成分子的舞蹈,象征着热处理引发的动态重排。gimacnez博士López和他的同事(DOI: 10.1002/cmtd)在研究文章中描述的工作。202500046)强调了选择具有定制分子结构的有机阳离子和应用热激活策略来开发更高效和稳定的储能系统的重要性。
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CiteScore
7.30
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