2021
DOI: 10.1039/d0tc04175k
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Overview of electric-field-induced deposition technology in fabricating organic thin films

Abstract: Electric-field induced deposition (EFID) technology has been demonstrated as an effective technique for adjusting the properties of inorganic, organic or organic-inorganic hybrid thin films. Here, the progress in research on...

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Cited by 30 publications
(39 citation statements)
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“…In other words, over the course of the synthesis, metals are in their oxidation state, meaning that metal species are charged. This property offers the targeted MOF an opportunity to be prepared via low‐cost, rapid, and environmental‐friendly electrosynthesis 13,16,28 . The metal ion source required for the construction of MOFs can be directly provided from its own metal substrate (like plate, coil, foil, etc.)…”
Section: Mofsmentioning
confidence: 99%
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“…In other words, over the course of the synthesis, metals are in their oxidation state, meaning that metal species are charged. This property offers the targeted MOF an opportunity to be prepared via low‐cost, rapid, and environmental‐friendly electrosynthesis 13,16,28 . The metal ion source required for the construction of MOFs can be directly provided from its own metal substrate (like plate, coil, foil, etc.)…”
Section: Mofsmentioning
confidence: 99%
“…Due to the lack of charged moieties, COFs are usually synthesized via solvothermal method, 88 microwave approach, 89 ionothermal synthesis, 90 mechanochemical route, 91 and interfacial strategy 92 . Until recent years, the electrosynthesis of COFs experienced a rapid development 16,93 . Nonionic COFs (e.g., COF‐5, COF‐300, and BDT‐ETTA COF) and the ionic COF (e.g., PyVg‐COF) can be directly coated or deposited on conductive substrates to form the corresponding thin films through EPD within a few minutes 29,94 .…”
Section: Cofsmentioning
confidence: 99%
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