2023
DOI: 10.1016/j.mssp.2022.107238
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Microstructured three-dimensional disc-like CuCo2O4/CuO composite derived from a self-assembly mechanism for high-performance battery-type supercapacitors

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Cited by 13 publications
(4 citation statements)
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“…57 The highest specific surface area (SSA) of 23.1 m 2 g −1 was observed for WO 3 /SnO 2 @C, which might be due to the hierarchical morphology generated with the introduction of WO 3 and SnO 2 in the composite. 62,63 The BJH pore size distribution plots (Fig. S7b†) also revealed a smaller pore diameter (9.22 nm) and higher pore volume (0.0872 cm 3 g −1 ) for WO 3 /SnO 2 @C. It further suggests the availability of mesoporosity for conducive ion pathways essential to advance the penetration of an electrolyte ion into the electrode material.…”
Section: Resultsmentioning
confidence: 86%
“…57 The highest specific surface area (SSA) of 23.1 m 2 g −1 was observed for WO 3 /SnO 2 @C, which might be due to the hierarchical morphology generated with the introduction of WO 3 and SnO 2 in the composite. 62,63 The BJH pore size distribution plots (Fig. S7b†) also revealed a smaller pore diameter (9.22 nm) and higher pore volume (0.0872 cm 3 g −1 ) for WO 3 /SnO 2 @C. It further suggests the availability of mesoporosity for conducive ion pathways essential to advance the penetration of an electrolyte ion into the electrode material.…”
Section: Resultsmentioning
confidence: 86%
“…Molten salt etching, 29 in situ HF etching, 30 and electrochemical methods 31 are involved in a top‐down approach. While, the bottom‐up approach involves self‐assembly, 32 chemical vapor deposition, 33 and template‐assisted fabrication 34 . Numerous challenges could arise from the several synthesis approaches such as quality of synthesized material, mass production, yield rate, and cost highly influencing the production of electrode materials at a large scale 35 .…”
Section: Introductionmentioning
confidence: 99%
“…While, the bottom-up approach involves F I G U R E 3 Schematic illustrations and comparison of solid-state batteries using: (A) polymer, (B) oxide, and (C) sulfide solid-state electrolytes. 19 self-assembly, 32 chemical vapor deposition, 33 and template-assisted fabrication. 34 Numerous challenges could arise from the several synthesis approaches such as quality of synthesized material, mass production, yield rate, and cost highly influencing the production of electrode materials at a large scale.…”
Section: Introductionmentioning
confidence: 99%
“…14 Using a self-assembly mechanism, Suggana et al created a three-dimensional disclike CuCo 2 O 4 /CuO composite for outstanding performance batterytype supercapacitors. 15 Valadi et al synthesized CuCo 2 O 4 /BiVO 4 composites with the intention of using them as effective catalysts for the reduction of 4-nitrophenol in water. 16 The electrochemical activities of CuS nanoparticles were boosted by alloying them with CuCo 2 O 4 .…”
mentioning
confidence: 99%