The electrochemical performance of Ta2O5 thin films in ionic liquid and ionogel electrolytes
作者:Patrick Gerlach, Cédric Teyssédou, Jérémie Chaillou, Isabelle Roch‐Jeune, Camille Douard, Pascal Roussel, Jean Le Bideau, Christophe Lethien, Thierry Brousse · 发表于:Electrochimica Acta · 年份:2024 · DOI:10.1016/j.electacta.2024.145568 · 被引用次数:6 · 研究领域:Supercapacitor Materials and Fabrication、Transition Metal Oxide Nanomaterials、Advanced battery technologies research
• An innovative micro hybrid capacitor is realized using Ta2O5 thin films and MnO2 composite electrodes. • This devices has been successfully tested in ionic liquid and ionogel electrolytes. • The device provides a cell voltage 20 v and cycles stable up to 5000 mV s-1. • 2000 cycles at 500 mV s-1 have been reached. • The performance of ionic liquid and ionogel is very comparable highlighting the promising application of ionogels even for miniaturized high power devices. In this work, we present a new cell design for miniaturized energy storage devices by realizing a hybrid micro-capacitor, which uses for the first time a TaN/ Ta 2 O 5 thin film electrode in combination with a MnO 2 composite electrode. In this proof of concept study, the electrochemical performance of the dielectric material Ta 2 O 5 was of main interest. Therefore, various tantalum oxide films with different thicknesses from 23 to 80 nm have been tested in combination with a pseudocapacitive oversized MnO 2 composite electrode. This was done with two model electrolytes, namely the ionic liquid Emim FSI and the solid-state ionogel Emim FSI: PVdF 80:20. Surface capacitance values up to 1.94 µF cm -2 in Emim FSI and 2.84 µF cm -2 in IG Emim TFSI: PVdF 80:20 have been reached at high scan rates (100 mV s -1 ) with no significant distortion of the voltammograms. When films of 47 and 80 nm thickness of Ta 2 O 5 are used, stable cycling with scan rates of up to 5000 mV s -1 at a cell voltage of 20 V can be achieved...