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231226s2023 xx |||||o 00| ||eng c |
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|a 10.1002/adma.202305532
|2 doi
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|a pubmed24n1196.xml
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|a (DE-627)NLM358834880
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|a (NLM)37382197
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|a DE-627
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|a eng
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|a Zhang, Qian
|e verfasserin
|4 aut
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|a Application of Conductive MOF in Zinc-Based Batteries
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|c 2023
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|a Text
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|a ƒaComputermedien
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|a ƒa Online-Ressource
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|a Date Revised 28.11.2023
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|a published: Print-Electronic
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|a Citation Status PubMed-not-MEDLINE
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|a © 2023 Wiley-VCH GmbH.
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|a The use of conductive MOFs (c-MOFs) in zinc-based batteries has been a popular research direction. Zinc-based batteries are widely used with the advantages of high specific capacity and safety and stability, but they also face many problems. c-MOFs have excellent conductivity compared with other primitive MOFs, and therefore have better applications in zinc-based batteries. In this paper, the transfer mechanisms of the unique charges of c-MOFs: hop transport and band transport, respectively, are discussed and the way of electron transport is further addressed. Then, the various ways to prepare c-MOFs are introduced, among which solvothermal, interfacial synthesis, and postprocessing methods are widely used. In addition, the applications of c-MOFs are discussed in terms of their role and performance in different types of zinc-based batteries. Finally, the current problems of c-MOFs and the prospects for their future development are presented
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|a Journal Article
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|a Review
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|a conductive MOFs
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|a metal-organic frameworks
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|a zinc-based batteries
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|a Jiang, Shu
|e verfasserin
|4 aut
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|a Lv, Tingting
|e verfasserin
|4 aut
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|a Peng, Yi
|e verfasserin
|4 aut
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|a Pang, Huan
|e verfasserin
|4 aut
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|i Enthalten in
|t Advanced materials (Deerfield Beach, Fla.)
|d 1998
|g 35(2023), 48 vom: 29. Nov., Seite e2305532
|w (DE-627)NLM098206397
|x 1521-4095
|7 nnns
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|g volume:35
|g year:2023
|g number:48
|g day:29
|g month:11
|g pages:e2305532
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|u http://dx.doi.org/10.1002/adma.202305532
|3 Volltext
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