Xianhong Gong , Rui Yang , Guili He , Hui Liu , Yu Pu , Huimin Mao , Chen Wang , Guiming Xie , Jianzhong Wang , Rengui Xiao
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Preparation and properties of high specific capacitance TiO2-Al2O3 composite powder-layered anode aluminum foils
In this paper, it is proposed that a TiO2-Al2O3 composite powder-layer aluminum foil (denoted as CPLAF) with high specific volume was prepared by aluminum powder additive method combined with sol–gel deposition valve metal. The results show that the unit specific capacitance of CPLAF is 1.196 μF∙cm−2 at a formation voltage of 520 V, which is significantly higher than that of powder-layered aluminum foils (denoted PLAF) without deposited TiO2, and has better electrical performance advantages than those reported in the existing literature. This study provides a new way to improve the unit specific capacitance of anode foil of aluminum electrolytic capacitors.
期刊介绍:
Materials Letters has an open access mirror journal Materials Letters: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review.
Materials Letters is dedicated to publishing novel, cutting edge reports of broad interest to the materials community. The journal provides a forum for materials scientists and engineers, physicists, and chemists to rapidly communicate on the most important topics in the field of materials.
Contributions include, but are not limited to, a variety of topics such as:
• Materials - Metals and alloys, amorphous solids, ceramics, composites, polymers, semiconductors
• Applications - Structural, opto-electronic, magnetic, medical, MEMS, sensors, smart
• Characterization - Analytical, microscopy, scanning probes, nanoscopic, optical, electrical, magnetic, acoustic, spectroscopic, diffraction
• Novel Materials - Micro and nanostructures (nanowires, nanotubes, nanoparticles), nanocomposites, thin films, superlattices, quantum dots.
• Processing - Crystal growth, thin film processing, sol-gel processing, mechanical processing, assembly, nanocrystalline processing.
• Properties - Mechanical, magnetic, optical, electrical, ferroelectric, thermal, interfacial, transport, thermodynamic
• Synthesis - Quenching, solid state, solidification, solution synthesis, vapor deposition, high pressure, explosive