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A Robust TCPHD Filter for Multi-Sensor Multitarget Tracking Based on a Gaussian-Student’s t-Mixture Model
All articles published by MDPI are made immediately available worldwide under an open access license. No special permission is required to reuse all or part of the article published by MDPI, including figures and tables. For articles published under an open access Creative Common CC BY license, any part of the article may be reused without permission provided that the original article is clearly cited. For more information, please refer to https://www.mdpi.com/openaccess.
High capacity and dendrite-free Zn anode enabled by zincophilic 3D Sn-C nanowire framework
Introduction Aqueous zinc-ion batteries have emerged as a promising candidate for future large-scale energy storage due to their low cost, low potential (−0.76 V vs standard hydrogen potential), and high theoretical capacity (860mAh g−1)[1], [2], [3], [4]. However, the uneven distribution of zinc ions on the surface of the anode leads to short circuit and severe dendrite growth [5], [6], [7], [8], [9].
Designing Janus separators reinforced by hydrogen/ionic bonds for stable lithium metal anodes
With the rapid development of new energy industries, such as new energy vehicles and large-scale energy storage systems, it is imperative to develop batteries with higher energy density and longer cycle life. Compared to commercial lithium-ion batteries, lithium-metal batteries (LMBs) are regarded as the most promising next-generation high-energy–density energy storage systems due to their ultrahigh theoretical energy density [1].
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