Layered-Flow-Energiespeichertechnologie
Die Wissenschaftlichen Dienste des Deutschen Bundestages unterstützen die Mitglieder des Deutschen Bundestages bei ihrer mandatsbezogenen Tätigkeit.
Are flow-battery technologies a future of energy storage?
Flow-battery technologies open a new age of large-scale electrical energy-storage systems. This Review highlights the latest innovative materials and their technical feasibility for next-generation flow batteries.
Are lithium–organic flow batteries a cost-effective EES system?
Lithium–organic flow batteries are attractive as cost-effective EES systems. The aforementioned lithium-based flow batteries that are based on heavy metals, metal complexes or toxic halogens have drawbacks (in particular, the solubility and availability of the redox couples) that hinder their widespread use as large-scale EES systems.
Can layered materials improve device performance?
Nevertheless, layered materials also exhibit some shortcomings and much remains to be explored to further improve the device performance. 10 In terms of the synthetic methods, present procedures including cleavage or exfoliation are extremely complicated which often give rise to a very high cost and can scarcely be prepared on a large scale.
Does interdigitated flow field design improve topology optimization?
Lin et al. demonstrated that the interdigitated flow field design exhibits a better performance through tuning the channel and land dimensions, and such a process can be realized automatically. Therefore, the topology optimization was performed with the conventional interdigitated flow field as the initial state.
Why are layer structured materials a hotspot in energy-related fields?
Owing to the strong in-plane chemical bonds and weak van der Waals force between adjacent layers, investigations of layer structured materials have long been the hotspots in energy-related fields.
How to achieve stable and superior nanostructure of layered materials?
Bear this in mind, strategies such as constructing 3D interconnected morphologies, introducing spacer materials, etc., should be considered to obtain stable and superior nanostructure of the layered materials.