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EQCM study during lithium insertion/deinsertion processes in Nb2O5 films prepared by polymeric precursor method

机译:聚合物前驱体方法制备的Nb2O5薄膜中锂插入/插入过程中的EQCM研究

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摘要

The electrochemical quartz crystal microbalance (EQCM) technique was used to study two chemically distinct Nb2O5 electrochromic thin films (one pure and the other lithium-doped) during the lithium electroinsertion reaction. In the initial cycles, the electrode showed an irreversible mass variation greater than expected for Li+ insertion/deinsertion processes, which was attributed to the wettability effect (allied to the porous morphology) that emerged as the dominant process in apparent electrode mass changes. As the cycles progressed, the mass variation stabilized and the changes in apparent mass became reversible, showing a good correlation with the charge variations.The results generally indicated that the Li+ insertion/deinsertion process occurred more easily in the Nb2O5-doped film, which also displayed a greater capacity for Li+ insertion. However, a total mass/charge balance analysis revealed that the stoichiometry of the Li+ solid state insertion/deinsertion reaction was similar in the two electrodes under study. © 2005 Elsevier B.V. All rights reserved.
机译:电化学石英晶体微天平(EQCM)技术用于研究锂电插入反应过程中两种化学性质不同的Nb2O5电致变色薄膜(一个是纯的,另一个是掺杂锂的)。在初始循环中,电极显示出不可逆的质量变化,大于Li +插入/插入过程的预期,这归因于在表观电极质量变化中占主导地位的过程中出现的润湿性效应(与多孔形态有关)。随着循环的进行,质量变化趋于稳定,表观质量的变化变得可逆,与电荷变化具有良好的相关性。结果通常表明,在Nb2O5掺杂的薄膜中,Li +的插入/插入过程更容易发生,而且显示出更大的Li +插入能力。然而,总的质量/电荷平衡分析表明,在研究中的两个电极中,Li +固态插入/插入反应的化学计量是相似的。 &复制; 2005 Elsevier B.V.保留所有权利。

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