2021
DOI: 10.1007/s11664-021-08959-9
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Pulse Electrodeposition of Polyaniline/Mn-Fe Binary Metal Hydroxide Composite Cathode Material for a Zn-Ion Hybrid Supercapacitor

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Cited by 12 publications
(7 citation statements)
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“…The resulting petals have a thickness of around hundreds of nm that can reach the formation of two-dimensional nanosheets. Compared with the previous results, 36,39 the zinc nanosheets are more sparsely distributed due to the interaction of fatty alcohols in the plating process and the isolation of zinc ions. Besides, during the operation of the Zn-ion hybrid supercapacitor, it is possible for the zinc electrode to undergo a chemical reaction that causes the formation of dendrites:Zn + 4OH − ↔ Zn(OH) 4 2− + 2e − ↔ ZnO + 2OH − + H 2 O + 2e − .…”
Section: Resultscontrasting
confidence: 65%
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“…The resulting petals have a thickness of around hundreds of nm that can reach the formation of two-dimensional nanosheets. Compared with the previous results, 36,39 the zinc nanosheets are more sparsely distributed due to the interaction of fatty alcohols in the plating process and the isolation of zinc ions. Besides, during the operation of the Zn-ion hybrid supercapacitor, it is possible for the zinc electrode to undergo a chemical reaction that causes the formation of dendrites:Zn + 4OH − ↔ Zn(OH) 4 2− + 2e − ↔ ZnO + 2OH − + H 2 O + 2e − .…”
Section: Resultscontrasting
confidence: 65%
“…First, the MCS–PANi composite (cathode) was directly grown on a graphite paper substrate by the electrodeposition to form a porous structure as reported previously. 39 Meanwhile, a metallic Zn-based electrode (anode) was prepared by the electroplating method using a mixture of fatty alcohol ethoxylate and ZnSO 4 solution as the electrolyte, resulting in the formation of a hierarchical micro-flower-like Zn structure. Subsequently, an MPZHSC was assembled by the MCS–PANi composite cathode, Zn anode, ZnSO 4 /MnSO 4 electrolyte and nonwoven PP separator as shown in Scheme 1.…”
Section: Resultsmentioning
confidence: 99%
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