Energie-Gel-Speichermethode
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Among diverse materials, gel polymer electrolytes (hydrogels, organogels, and ionogels) remain the most studied thanks to the ability to tune the physicochemical and mechanical properties by changing the nature of the
Can self-healable gels be used in electrochemical energy storage devices?
Therefore, the utilization of self-healable gels into electrochemical energy storage devices, such as electrodes, binders, and electrolytes, is proven as an effective method to realize long-term stable operation of these devices via the self-repairing of mechanical and electrochemical characteristics.
What are the applications of energy gels?
More importantly, with help of energy gels, the applications of energy devices could be extended to other technological areas. For example, artificial skins and flexible biosensors can be developed by using gel electrodes and electrolyte. Micro energy devices can be also developed with the flexibility and decent processing ability of gel materials.
What conductive gel materials are available for energy applications?
In this review, we provide a full picture of the state-of-the-art gel materials that are available for energy applications and discuss various electrically conductive gel materials, including carbon-based gels, conductive polymer gels, as well as ionically conductive gels.
Are electronic/ionically conductive gels a promising material platform for Advanced Energy Applications?
Electronically/ionically conductive gels build up a promising material platform for advanced energy applications. Mechanisms for the improvement of electronic/ionic conductivity and mechanical strength of gel systems are discussed. Perspectives for each type of energy gels are given.
Are gel-based nanomaterials a promising material platform for Advanced Energy Applications?
Recent development of gel-based nanomaterials including carbon based gels, conductive polymer gels, ionic gels and inorganic gels is reviewed. Electronically/ionically conductive gels build up a promising material platform for advanced energy applications.
Can 3D gel materials be used for energy conversion & storage?
Although gel materials with 3D network structures have been synthesized using various inorganic materials and employed in applications such as catalysis, oil removal, and dye absorption, few studies on their application for energy conversion and storage have been reported.