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Status and opportunities of zinc ion hybrid capacitors: focus on carbon materials, current collectors, and separators
Zinc ion hybrid capacitors (ZIHCs), which integrate the features of the high power of
supercapacitors and the high energy of zinc ion batteries, are promising competitors in …
supercapacitors and the high energy of zinc ion batteries, are promising competitors in …
Recent progress on the heteroatom-doped carbon cathode for zinc ion hybrid capacitors
F Wei, Y Zeng, Y Guo, J Li, S Zhu, S Gao… - Chemical Engineering …, 2023 - Elsevier
Under the double carbon background of “carbon peak” and “carbon neutrality, the use of
energy storage and conversion devices (ESCDs) becomes more and more important. As …
energy storage and conversion devices (ESCDs) becomes more and more important. As …
Duodecuple H‐Bonded NH4+ Storage in Multi‐Redox‐Site N‐Heterocyclic Cathode for Six‐Electron Zinc–Organic Batteries
Designing multiple redox sites in electroactive organic cathodes that allow more electron
transfer is a permanent target for energy storage. Here, six‐electron zinc–organic batteries …
transfer is a permanent target for energy storage. Here, six‐electron zinc–organic batteries …
NH4+ Charge Carrier Coordinated H‐Bonded Organic Small Molecule for Fast and Superstable Rechargeable Zinc Batteries
Organic small molecules as high‐capacity cathodes for Zn‐organic batteries have inspired
numerous interests, but are trapped by their easy‐dissolution in electrolytes. Here we knit …
numerous interests, but are trapped by their easy‐dissolution in electrolytes. Here we knit …
Coupling uniform pore size and multi‑chemisorption sites: hierarchically ordered porous carbon for ultra‐fast and large zinc ion storage
Z Peng, AG Bannov, S Li, Y Huang… - Advanced Functional …, 2023 - Wiley Online Library
Constructing hierarchically ordered macro/meso− microporous structures of carbonaceous
cathode with matchable pore size and adequate active sites is significant toward large Zn2+ …
cathode with matchable pore size and adequate active sites is significant toward large Zn2+ …
Porous structure‐electrochemical performance relationship of carbonaceous electrode‐based zinc ion capacitors
K ** through a supermolecule-mediated strategy for potassium-ion hybrid capacitors
Amorphous carbons are promising anodes for high-rate potassium-ion batteries. Most low-
temperature annealed amorphous carbons display unsatisfactory capacities. Heteroatom …
temperature annealed amorphous carbons display unsatisfactory capacities. Heteroatom …
Thiocyanogen-modulated N, S Co-doped lignin hierarchical porous carbons for high-performance aqueous supercapacitors
Constructing heteroatom-doped porous carbons with distinct charge storage properties is
significant for high-energy–density supercapacitors, yet it remains a formidable challenge …
significant for high-energy–density supercapacitors, yet it remains a formidable challenge …
π-Conjugated molecule mediated self-doped hierarchical porous carbons via self-stacking interaction for high-energy and ultra-stable zinc-ion hybrid capacitors
Understanding the self-stacking interactions in precursors can facilitate the preparation of
high-performance carbon materials and promote the commercial application of zinc ion …
high-performance carbon materials and promote the commercial application of zinc ion …
All-round enhancement in Zn-Ion storage enabled by solvent-guided lewis acid–base self-assembly of heterodiatomic carbon nanotubes
Designing zincophilic and stable carbon nanostructures is critical for Zn-ion storage with
superior capacitive activity and durability. Here, we report solvent-guided Lewis acid–base …
superior capacitive activity and durability. Here, we report solvent-guided Lewis acid–base …