2018
DOI: 10.1109/access.2018.2801857
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A Novel Cooperative Hunting Algorithm for Inhomogeneous Multiple Autonomous Underwater Vehicles

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Cited by 69 publications
(83 citation statements)
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“…To develop electrochemical energy storage devices with ultrahigh energy densities, many efforts have been devoted to sulfur, oxygen, and halogen based rechargeable batteries . Compared to sulfur and oxygen, halogens (Br 2 and I 2 ) have reversible electrochromic window and excellent reversible redox reactions at high potentials .…”
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confidence: 99%
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“…To develop electrochemical energy storage devices with ultrahigh energy densities, many efforts have been devoted to sulfur, oxygen, and halogen based rechargeable batteries . Compared to sulfur and oxygen, halogens (Br 2 and I 2 ) have reversible electrochromic window and excellent reversible redox reactions at high potentials .…”
mentioning
confidence: 99%
“…To develop electrochemical energy storage devices with ultrahigh energy densities, many efforts have been devoted to sulfur, oxygen, and halogen based rechargeable batteries . Compared to sulfur and oxygen, halogens (Br 2 and I 2 ) have reversible electrochromic window and excellent reversible redox reactions at high potentials . Thus, halogens have been demonstrated in various rechargeable batteries, e.g., Li//I 2 battery, Zn//I 2 battery, Al//I 2 battery, Na//I 2 battery, Zn//Br 2 battery, and Mg//Br 2 .…”
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confidence: 99%
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“…Considering the fact that the GCD curve can qualitatively analyze the reaction on each electrode through the voltage change, the result of the four samples is listed in Figure 7b. [ 73,74 ] When Blank‐C sample is introduced in 1 m H 2 SO 4 electrolyte, the positive and negative electrodes work in the range of 0.2 and 0.5 V potential, respectively. And the change of voltage is linearly related to the discharge and charging time, which means that Blank‐C mainly has EDLC characteristics.…”
Section: Resultsmentioning
confidence: 99%
“…One challenge ahead of the functional polymer gel electrolyte lies in maintaining the stable ionic conductivity during deformation. Apart from this, developing redox‐based electrolytes would be an effective strategy to boost areal or volumetric capacity of MBs and capacitance of MSCs because of the introduction of redox species that can provide extra charge storage . Considering safety issue and biological compatibility, aqueous based electrolytes such as water‐in‐salt and solvent‐in‐salt with a large voltage window of up to 4 and 4.5 V, respectively, offer dramatic chances to develop high‐voltage aqueous and nonaqueous MBs and MSCs for in vivo and wearable microelectronics.…”
Section: Discussionmentioning
confidence: 99%