2021
DOI: 10.1016/j.jcis.2021.02.108
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Nitrogen-doped carbon encapsulated zinc vanadate polyhedron engineered from a metal–organic framework as a stable anode for alkali ion batteries

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Cited by 42 publications
(16 citation statements)
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“…In the application of pure-phase V 2 O 5 , the structural instability and slow kinetics result in the low storage capacity of zinc ions. , For purpose of solving this problem, people began to regulate the structure to improve the reaction kinetics and stabilize the structure, such as guest insertion between V–O layers, surface coating, defect engineering, etc. Just recently, many studies take metal ions as guest materials (Li + , Ca 2+ , , Zn 2+ , Mg 2+ , Mn 2+ , and Al 3+ ), and metal ions and crystal water are inserted together between V 2 O 5 layers (denoted as MVOH).…”
Section: Introductionmentioning
confidence: 99%
“…In the application of pure-phase V 2 O 5 , the structural instability and slow kinetics result in the low storage capacity of zinc ions. , For purpose of solving this problem, people began to regulate the structure to improve the reaction kinetics and stabilize the structure, such as guest insertion between V–O layers, surface coating, defect engineering, etc. Just recently, many studies take metal ions as guest materials (Li + , Ca 2+ , , Zn 2+ , Mg 2+ , Mn 2+ , and Al 3+ ), and metal ions and crystal water are inserted together between V 2 O 5 layers (denoted as MVOH).…”
Section: Introductionmentioning
confidence: 99%
“…The capacitive contribution is obtained according to the equations i ( V ) = a ν b and i ( V ) = k 1 ν + k 2 ν 1/2 , where i and ν represent the current and scan rate, respectively, while b can be calculated from the slope of log­( i ) versus log­(ν) plots from four peaks. K 1 ν is the current of a pseudo-capacitive behavior and k 2 ν 1/2 is the current from the diffusion process . As depicted in Figure c, the b values of four peaks are b O 1 = 0.51, b O 2 = 0.56, b R 1 = 0.68, and b R 2 = 0.63, manifesting that the Zn 2+ storage kinetics of SVO is controlled by both ionic diffusion and capacitive behaviors.…”
Section: Resultsmentioning
confidence: 90%
“…12,31 The vanadates can coordinate as cubic, orthorhombic, tetrahedral and square pyramidal to octahedral geometry along with multiple oxidation states that can support multielectron redox processes ensuring high capacity so their adjustable framework structure and oxidations of the vanadates make them a potential candidate for the LIBs. 32 29 and other fractionally coordinated structures. 35 In the current approach, the utilization of holey graphene oxide (hGO) exclusively enhances the symbiotic effect of mixed-metal zinc and vanadium oxide, which ensures high reversible capacity and well-suited ionic conductivity of the Zn 3 V 2 O 8 /hGO-based LIB anodes explored in this study.…”
Section: Introductionmentioning
confidence: 99%
“…22,23 The very known limiting factors include low electronic and ionic conductivity, besides the undesired volume expansion that bothers more capacity degradation, particularly at increased current densities. 15,24 Vanadates in many forms like hydrated vanadates, 25 amorphous, 26,27 sheathed, 28 and encapsulated/ composited 29,30 have been well known in batteries with a multitude of tunnelled, open frame-work and layered type structural adaptabilities. 12,31 The vanadates can coordinate as cubic, orthorhombic, tetrahedral and square pyramidal to octahedral geometry along with multiple oxidation states that can support multielectron redox processes ensuring high capacity so their adjustable framework structure and oxidations of the vanadates make them a potential candidate for the LIBs.…”
Section: Introductionmentioning
confidence: 99%
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