2021
DOI: 10.1016/j.jallcom.2020.158380
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Mo-doped NH4V4O10 with enhanced electrochemical performance in aqueous Zn-ion batteries

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Cited by 28 publications
(11 citation statements)
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“…In the aforementioned formula, τ is the charging/discharging time (s), m B is the active substance mass, and M B is the relative molecular mass, V m is the molar volume (cm 3 /mol), S is the pole piece area (cm 2 ), Δ E s is the steady-state voltage and Δ E t is the voltage change during the current pulse. According, it is clear from the calculation that the value of D Zn 2+ is about 10 –10 to 10 –9 (as in Figure f), which exceeds that of other vanadium-based oxides, such as PTDOE-VO, ZnVOH/CC, V 3 O 7 ·H 2 O/rGO, Mo-doped NH 4 V 4 O 10 , and NaV 6 O 15 /V 2 O 5 …”
Section: Analysis and Discussionmentioning
confidence: 84%
“…In the aforementioned formula, τ is the charging/discharging time (s), m B is the active substance mass, and M B is the relative molecular mass, V m is the molar volume (cm 3 /mol), S is the pole piece area (cm 2 ), Δ E s is the steady-state voltage and Δ E t is the voltage change during the current pulse. According, it is clear from the calculation that the value of D Zn 2+ is about 10 –10 to 10 –9 (as in Figure f), which exceeds that of other vanadium-based oxides, such as PTDOE-VO, ZnVOH/CC, V 3 O 7 ·H 2 O/rGO, Mo-doped NH 4 V 4 O 10 , and NaV 6 O 15 /V 2 O 5 …”
Section: Analysis and Discussionmentioning
confidence: 84%
“…And Mo-doped Na 3 V 2 (PO 4 ) 3 @C for Na-ion batteries delivers rapid electronic/ionic transport, which significantly accelerates ion-diffusion kinetics . Mo-doped NH 4 V 4 O 10 as a cathode material in Zn-ion batteries is able to demonstrate superior capacity retention . The above research work exposed Mo as one of the most advisable candidates for cationic doping.…”
Section: Introductionmentioning
confidence: 91%
“…31 Mo-doped NH 4 V 4 O 10 as a cathode material in Zn-ion batteries is able to demonstrate superior capacity retention. 32 The above research work exposed Mo as one of the most advisable candidates for cationic doping. In addition, Mo is a well-known multivalent element, which not only has a similar ionic radius to V but also displays a close redox potential to V; 33 therefore, Mo could be considered as a potential dopant for VS 4 .…”
Section: Introductionmentioning
confidence: 99%
“…Overall, the present study focuses on the presentation of a layered-type NH 4 V 4 O 10 cathode with flower-like morphology prepared by a microwave reaction that lasts for a very short duration of~0.5 h for useful ARZIB applications. This NHVO cathode prepared under short microwave irradiation presents competent or even more impressive electrochemical properties in terms of higher specific capacity and long-term cycling stability than some of the reported counterparts synthesized by the hydrothermal method using a relatively long reaction duration (see Table 1 for comparison) [32,[49][50][51][52]. Thus, the present microwave NHVO cathode demonstrates notable zinc storage properties and structural stability for electrochemical reversibility under long-term cycling.…”
Section: Resultsmentioning
confidence: 73%