2023
DOI: 10.1002/smtd.202201156
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Printed Electronics Based on 2D Material Inks: Preparation, Properties, and Applications toward Memristors

Abstract: Printed electronics, which fabricate electrical components and circuits on various substrates by leveraging functional inks and advanced printing technologies, have recently attracted tremendous attention due to their capability of large‐scale, high‐speed, and cost‐effective manufacturing and also their great potential in flexible and wearable devices. To further achieve multifunctional, practical, and commercial applications, various printing technologies toward smarter pattern‐design, higher resolution, grea… Show more

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Cited by 9 publications
(7 citation statements)
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References 182 publications
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“…Typical deposition technologies include but are not limited to screen printing, inkjet printing, extrusion-based 3D printing, aerosol printing, electrohydrodynamic (EHD) printing, gravures, and laser direct writing. 221,227 In some cases, spin coating and/or spraying are used for uniform component development if patterning of layers is not required. Table 1 displays different features of printing techniques for memristor fabrication.…”
Section: D/3d Printingmentioning
confidence: 99%
“…Typical deposition technologies include but are not limited to screen printing, inkjet printing, extrusion-based 3D printing, aerosol printing, electrohydrodynamic (EHD) printing, gravures, and laser direct writing. 221,227 In some cases, spin coating and/or spraying are used for uniform component development if patterning of layers is not required. Table 1 displays different features of printing techniques for memristor fabrication.…”
Section: D/3d Printingmentioning
confidence: 99%
“…Printing memristors with solution-processed TMD ink materials is a promising research direction. ,,,, For example, by alternately aerosol-jet printing Ag ink and MoS 2 ink on a flexible polyimide substrate, Feng et al fabricated Ag/MoS 2 /Ag vertical memristors in a cross-bar structure (Figure a, b) . The printed devices exhibit nonvolatile switching characteristics with an ultralow switching voltage (0.18 V) at a current compliance of 200 μA and a high switching ratio (10 7 ) (Figure c).…”
Section: Applicationsmentioning
confidence: 99%
“…The factors such as non‐porosity, re‐stacking and low sorption ability connected to bulk FG, can be tailored into ‘functional inks’ that are reactive, dispersible and paintable formulations (Figure 5) by means of chemical or mechanical delamination. The ability to formulate functional inks with respect to structural and tribological applications via controlling the lateral sizes and number of FG layers from the 2D dispersions will have promising implications in packaging and coatings sector [85,86] . In particular, the key to decipher the lateral sizes and thickness (few v/s multi‐layers) of FG nanosheets, besides fluorine content/bonding type effect can be controllable via sonication time and amplitude.…”
Section: Origin Of Hydrophobicity Of Fluorinated Graphene and Its Hyb...mentioning
confidence: 99%
“…The ability to formulate functional inks with respect to structural and tribological applications via controlling the lateral sizes and number of FG layers from the 2D dispersions will have promising implications in packaging and coatings sector. [85,86] In particular, the key to decipher the lateral sizes and thickness (few v/s multi-layers) of FG nanosheets, besides fluorine content/bonding type effect can be controllable via sonication time and amplitude. The CÀ F bonding type, bonding distribution, the fluorine content, and the extent of functionalization essentially controls the opto-electronic, dielectric, magnetic, physiochemical, electrochemical, tribological and hydrophobicity of the FG nanosheets.…”
Section: Fluorinated Graphene Dispersions As Functional Inks: En Rout...mentioning
confidence: 99%