2022
DOI: 10.1016/j.bea.2022.100045
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Characterization of electrically conductive, printable ink based on alginate hydrogel and graphene nanoplatelets

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Cited by 4 publications
(2 citation statements)
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“…149 In a similar initiative, researchers developed a smart bio-ink embedded with photothermal graphene nanoplatelets, characterized by its thermal responsiveness, intended for use in tissue scaffolding applications. 150 With the progression in computer technology and numerical analysis techniques, it has now become feasible to digitally model and conduct in silico assessments of cardiac stents. These stents are constructed using sophisticated 2D nanomaterials and come in a wide array of sizes and designs.…”
Section: Application Of Printable Biomaterials For Cancer Therapymentioning
confidence: 99%
“…149 In a similar initiative, researchers developed a smart bio-ink embedded with photothermal graphene nanoplatelets, characterized by its thermal responsiveness, intended for use in tissue scaffolding applications. 150 With the progression in computer technology and numerical analysis techniques, it has now become feasible to digitally model and conduct in silico assessments of cardiac stents. These stents are constructed using sophisticated 2D nanomaterials and come in a wide array of sizes and designs.…”
Section: Application Of Printable Biomaterials For Cancer Therapymentioning
confidence: 99%
“…Regarding conductive materials, the most commonly used are carbon materials, such as graphite, carbon black, graphene, and carbon nanotube [14][15][16]. Metal-based conductive inks generally have better electrical conductivity.…”
Section: Introductionmentioning
confidence: 99%