2021
DOI: 10.1002/adfm.202106417
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Synergistic Manipulation of Zn2+ Ion Flux and Nucleation Induction Effect Enabled by 3D Hollow SiO2/TiO2/Carbon Fiber for Long‐Lifespan and Dendrite‐Free Zn–Metal Composite Anodes

Abstract: Aqueous rechargeable zinc-metal batteries are a promising candidate for next-generation energy storage devices due to their intrinsic high capacity, low cost, and high safety. However, uncontrollable dendrite formation is a serious problem, resulting in limited lifespan and poor coulombic efficiency of zinc-metal anodes. To address these issues, a 3D porous hollow fiber scaffold with well-dispersed TiO 2 , SiO 2 , and carbon is used as superzincophilic host materials for zinc anodes. The amorphous TiO 2 and Si… Show more

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Cited by 86 publications
(67 citation statements)
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“…The cycling performance of Cu NBs@NCFs-Zn is also comparable to most of recently reported composite Zn on different hosts (Table S1, Supporting Information). [22,24,26,28,30,31,34,36,[46][47][48] Furthermore, the voltage hysteresis of the Cu NBs@NCFs-Zn electrode shows a gradual increment with the current density increasing from 0.5 to 5 mA cm −2 (Figure S29, Supporting Information), indicating the low polarization and good stability.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…The cycling performance of Cu NBs@NCFs-Zn is also comparable to most of recently reported composite Zn on different hosts (Table S1, Supporting Information). [22,24,26,28,30,31,34,36,[46][47][48] Furthermore, the voltage hysteresis of the Cu NBs@NCFs-Zn electrode shows a gradual increment with the current density increasing from 0.5 to 5 mA cm −2 (Figure S29, Supporting Information), indicating the low polarization and good stability.…”
Section: Resultsmentioning
confidence: 99%
“…However, it is hard to regulate the interfacial Zn 2+ ions' distribution and enable uniform Zn deposition by only 3D hosts due to the high energy barriers of Zn nucleation. [30,31] To further prolong the lifespan of ZMAs, zincophilic species (N-doping, [31,32] Cu, [33] Zn, [34,35] TiO 2 , [21,36] Sn, [19] Ag, [37] etc.) with high adsorbing ability for Zn 2+ ions are usually introduced into the 3D conductive hosts to reinforce the interfacial interaction between substrate and Zn 2+ ions.…”
mentioning
confidence: 99%
“…[2] Therefore, various strategies have been developed, mainly aiming at inhibiting dendrite formation, including: i) reducing Zn nucleation overpotential by improving materials' zincophilicity; [11] ii) constructing artificial anode-electrolyte interface to guide orderly Zn 2+ diffusion; [6a,12] iii) inducing planar Zn deposition by lattice matching, electrolyte adjustment, and separator modification; [6c,13] and iv) employing 3D conductive scaffolds to reduce the true current density. [14] These technologies can homogenize Zn deposition to a certain extent, however, commonly at the cost of rate capabilities. This is because the surface inhomogeneity of Zn is hard to be completely eliminated by these strategies, and the irregular Zn plating/stripping still occurs at high current densities.…”
Section: Introductionmentioning
confidence: 99%
“…Hence, it is envisaged that this flexible cell will have enormous prospects in the market of wearable products. [ 42–46 ] For CC@V 2 O 5 , its cyclic capabilities in coin cell and pouch cell are also evidently superior to those of the previously reported V 2 O 5 ‐based and the other cathode materials (Table S1 and S2, Supporting Information). Such results also demonstrate that CC@V 2 O 5 electrodes can still exhibit satisfactory capacity and prolonged lifespan at higher current densities, which is necessary for achieving high‐performance ZIBs.…”
Section: Resultsmentioning
confidence: 76%