2023
DOI: 10.1039/d2tc04583d
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Constructing MXene hydrogels and aerogels for rechargeable supercapacitors and batteries

Abstract: Two-dimensional (2D) MXenes have attracted tremendous attention in rechargeable supercapacitors and batteries due to their unique 2D structure, good conductivity, adjustable components, and abundant surface functional groups. However, the MXene...

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Cited by 32 publications
(16 citation statements)
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“…General electrodes 2D and 3D MXene/Ti 3 C 2 , [ 142] GaInSnZn, Si [ 125,137] SLA, FDM, DIW, SLS/SLM CNT, [143][144][145][146] Gr, [147,148] MXene hydrogels and aerogels [ 149] 2D and 3D MXene/Ti 3 C 2 , [ 142,150] GaInSnZn, Si [ 125,137] SLA, FDM, DIW, SLS/SLM 4D Printed LIBs multistep fabrications. Therefore, additively manufacturing transparent, flexible, and lightweight batteries may take this concept to a new level for electrochemical devices.…”
Section: Categories Materialsmentioning
confidence: 99%
“…General electrodes 2D and 3D MXene/Ti 3 C 2 , [ 142] GaInSnZn, Si [ 125,137] SLA, FDM, DIW, SLS/SLM CNT, [143][144][145][146] Gr, [147,148] MXene hydrogels and aerogels [ 149] 2D and 3D MXene/Ti 3 C 2 , [ 142,150] GaInSnZn, Si [ 125,137] SLA, FDM, DIW, SLS/SLM 4D Printed LIBs multistep fabrications. Therefore, additively manufacturing transparent, flexible, and lightweight batteries may take this concept to a new level for electrochemical devices.…”
Section: Categories Materialsmentioning
confidence: 99%
“…Attributed to the design of functional separators, the electrochemical performance and cycle stability of Li-S batteries have been effectively improved. [14][15][16][17][18] An ideal functional separator requires great synergy between the various components of separators. Specically, at rst, the homogeneous pores in the separators/interlayer can physically defend against polysuldes but allow the passage of lithium ions.…”
Section: Introductionmentioning
confidence: 99%
“…[12] Compared to batteries, Sc store less energy per unit mass or volume which restricts their ability to provide long-term energy storage solutions. [13] The incorporation of hybrid chemistries (a combination of electrostatic and redox activities) in Sc technology (hybrid Sc) has opened a window to procure the synergetic status between Sc and rechargeable batteries. [14] The recent developments in hybrid Sc and their profited attributes (high specific power and energy density along with stable cyclic performance) have stated them the promising choice for future energy storing technologies.…”
Section: Introductionmentioning
confidence: 99%
“…Conducting polymers and few Metal oxides are materials that bear pseudocapacitive nature [12] . Compared to batteries, Sc store less energy per unit mass or volume which restricts their ability to provide long‐term energy storage solutions [13] . The incorporation of hybrid chemistries (a combination of electrostatic and redox activities) in Sc technology (hybrid Sc) has opened a window to procure the synergetic status between Sc and rechargeable batteries [14] .…”
Section: Introductionmentioning
confidence: 99%