2021
DOI: 10.1002/aenm.202100746
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Aqueous MXene/PH1000 Hybrid Inks for Inkjet‐Printing Micro‐Supercapacitors with Unprecedented Volumetric Capacitance and Modular Self‐Powered Microelectronics

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Cited by 90 publications
(127 citation statements)
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“…[16][17][18] Nonetheless, the restacking of MXene nanosheets induced by strong van der Waals force limits the interlayer space, thus severely blocking the (de)intercalation of ions, especially for the preferable anions and multivalent cations with high charge densities but large ionic radii (Scheme 1a). [19,20] This results in limited charge storage capacity and sluggish charge transfer kinetics, thus low areal capacitance and rate performance. [21][22][23][24][25] It is well-known that inorganic/organic nanopillars can be inserted between MXene nanosheets to mitigate the restacking of MXenes nanosheets and expand the interlayer space.…”
Section: Introductionmentioning
confidence: 99%
“…[16][17][18] Nonetheless, the restacking of MXene nanosheets induced by strong van der Waals force limits the interlayer space, thus severely blocking the (de)intercalation of ions, especially for the preferable anions and multivalent cations with high charge densities but large ionic radii (Scheme 1a). [19,20] This results in limited charge storage capacity and sluggish charge transfer kinetics, thus low areal capacitance and rate performance. [21][22][23][24][25] It is well-known that inorganic/organic nanopillars can be inserted between MXene nanosheets to mitigate the restacking of MXenes nanosheets and expand the interlayer space.…”
Section: Introductionmentioning
confidence: 99%
“…Such a high areal capacitance surpasses most previous MXene‐based supercapacitors and is comparative with many state‐of‐the‐art works (Supplementary Figure S12). 12,13,16–18,20,23 …”
Section: Resultsmentioning
confidence: 99%
“…Together with their high conductivity, good mechanical properties and superior capacitive performance, MXenes can be considered as an ideal ink material for printing 3D MSC. [107,108] As shown in Figure 10a, a diluted and uniformly dispersed mixture of MXene, Ag nanowires (NWs), MnO NWs and C60 was prepared by gentle ultrasonic treatment, and then the mixture was vacuum filtered to obtain the MXene-Ag NWs-MnO NWs-C60 hydrogel. [102] The Ag NWs and MnO NWs dispersed in deionized water were combined with the flexible and hydrophilic MXene nanosheets and interwoven into a dynamically crosslinked 3D network.…”
Section: D Printingmentioning
confidence: 99%