Additive manufacturing electrochemistry: An overview of producing bespoke conductive additive manufacturing filaments
Электрохимия аддитивного производства: обзор изготовления специализированных проводящих филаментов для аддитивного производства
2023-11-22
SCID: 54.1/jkskfgsm
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bespoke filament manufacturingconductive additive manufacturing filamentsconductive particleselectrochemical sensorsfused filament fabrication
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Abstract (AI)
Additive manufacturing represents a state-of-the-art technology that has been extensively disseminated in both the academic and industrial sectors. This technology enables the cost-effective, simple, and automated production of objects with diverse designs. Moreover, within the academic community, additive manufacturing has provided genuine scientific revolutions, particularly in the field of electrochemistry, due to the accessibility of the Fused Filament Fabrication printing methodology, which utilizes thermoplastic filaments for electrochemical platforms. Additive manufacturing has facilitated the production of conductive components for various applications, including electrochemical sensors, batteries, supercapacitors, and electrical circuits. Within recent years, the scientific community has taken an interest in bespoke filaments that are doped with highly conductive particles, which can be optimized and tailored enabling groups to produce a wide range of filaments with uncountable applications. Thus, the present review article explores the distinct methods of bespoke filament manufacturing, emphasizing its significance in the scientific landscape, and investigating the principal materials utilised in its production, such as thermoplastics, plasticizers, and conductive substances, focusing on electrochemistry applications. Furthermore, all reported additive manufacturing methods will be thoroughly discussed, along with their main advantages and disadvantages. Last, future perspectives will be addressed to guide novel advancements and applications of bespoke filaments for use within electrochemistry.
Key Findings
1
Bespoke conductive filaments doped with highly conductive particles can be optimized and tailored for diverse electrochemical applications.
2
Fused Filament Fabrication has enabled accessible production of conductive components for electrochemical sensors, batteries, supercapacitors, and electrical circuits.
3
Future perspectives identify directions for advancing bespoke conductive filaments and expanding their electrochemical uses.
4
Reported additive manufacturing approaches are compared through their principal advantages and disadvantages for electrochemical applications.
5
The review examines filament manufacturing methods and the roles of thermoplastics, plasticizers, and conductive substances in bespoke filament production.
Research Object
Bespoke conductive additive-manufacturing filaments for electrochemical applications
Research Subject
Manufacturing methods, constituent materials, and electrochemical applications of bespoke conductive filaments
Publication Details
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2023-11-22
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