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Cited by 74 publications
(38 citation statements)
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“…[43] Impressively fast potassium-ion storage performance is evident in our system when compared to the rate performance of previously reported advanced anode materials (Figure 6d). [43] Impressively fast potassium-ion storage performance is evident in our system when compared to the rate performance of previously reported advanced anode materials (Figure 6d).…”
Section: Angewandte Chemiementioning
confidence: 47%
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“…[43] Impressively fast potassium-ion storage performance is evident in our system when compared to the rate performance of previously reported advanced anode materials (Figure 6d). [43] Impressively fast potassium-ion storage performance is evident in our system when compared to the rate performance of previously reported advanced anode materials (Figure 6d).…”
Section: Angewandte Chemiementioning
confidence: 47%
“…Figures 6b,c show the rate performance and corresponding GCD curves of NCS@RGO-2 electrode,w hich deliver specific capacities of 585, 527, 507, 472, and 442 mAh g À1 at current densities of 50, 100, 200, 500, and 1000 mA g À1 , respectively.E ven at al arge current density of 2000 mA g À1 , the specific capacity is maintained at 402 mAh g À1 .T his ultrafast potassium-ion storage performance is attributed to the quantum dot structure of NCS in the composites,w hich results in close contact between the active materials and electrolytes. [43] Impressively fast potassium-ion storage performance is evident in our system when compared to the rate performance of previously reported advanced anode materials (Figure 6d). [15,[18][19][20]27,39,[44][45][46][47][48][49] To further verify the cycle life of our electrode,t he long-term cycling performance of NCS@RGO-2 using KFSI-EP electrolyte at 200 mA g À1 was ascertained (Figure 6e).…”
Section: Angewandte Chemiementioning
confidence: 47%
“…Quantum dots (QDs) are a class of 0D nanomaterials with a diameter between 1 and 10 nm, which have attracted significant interest in the field of energy‐storage applications . Owing to the unique nanosize effect and surface effect, pseudocapacitive QDs exhibit a high surface‐to‐volume ratio, a large number of active edge sites per unit mass, and fast and reversible redox reactions in high‐efficiency supercapacitors (SCs) . In recent years, many efforts have been dedicated to achieving pseudocapacitive QDs by reducing the size of metal oxides/hydroxides (NiO, ZnO, MnO 2 , Nb 2 O 5 , Co(OH) 2 , etc.)…”
Section: Introductionmentioning
confidence: 99%
“…Compared to traditional fossil energy, renewable energy has the advantages of environmentally friendly, recycling and sustainable. Among the different types of energy storage devices, lithium-ion batteries play an increasingly important role [1] , which have become the most widely used secondary batteries in phones and other electronic devices due to their small size and long cycle life [2] . However, the energy density and cycle life of lithium-ion batteries are difficult to meet the next generation electric vehicles (EVs).…”
Section: Introductionmentioning
confidence: 99%