Additive manufacturing electrochemistry: An overview of producing bespoke conductive additive manufacturing filaments

Additive manufacturing electrochemistry: An overview of producing bespoke conductive additive manufacturing filaments
复制标题

DOI:
10.1016/j.mattod.2023.11.002
复制
发表时间:
2023-12-14
期刊:
影响因子:
24.2
通讯作者:
Banks,Craig E.
Banks,Craig E.
中科院分区:
材料科学1区
文献类型:
--
作者:
Crapnell,Robert D.;Kalinke,Cristiane;Banks,Craig E.

文献摘要

被引文献

相似文献

增材制造是一种最先进的技术,已在学术和工业部门广泛传播。该技术可实现具有成本效益、简单和自动化的不同设计的物体生产。此外,在学术界,增材制造提供了真正的科学革命,特别是在电化学领域,由于熔丝制造打印方法的可访问性,该方法利用热塑性长丝作为电化学平台。增材制造促进了各种应用导电元件的生产,包括电化学传感器、电池、超级电容器和电路。近年来,科学界对掺杂有高导电颗粒的定制灯丝产生了兴趣,这些灯丝可以进行优化和定制,使团队能够生产各种各样的灯丝,具有无数的应用。因此,本综述文章探讨了定制长丝制造的不同方法,强调其在科学领域的重要性,并调查了其生产中使用的主要材料,如热塑性塑料,增塑剂和导电物质,重点是电化学应用。此外,将全面讨论所有已报道的增材制造方法沿着主要优点和缺点。最后,未来的前景将被解决,以指导电化学中使用的定制灯丝的新进展和应用。
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.