Current and future trends of additive manufacturing for chemistry applications: a review.

Current and future trends of additive manufacturing for chemistry applications: a review.
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DOI:
10.1007/s10853-021-06362-7
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发表时间:
2021
影响因子:
4.5
通讯作者:
Meijboom R
Meijboom R
中科院分区:
材料科学3区
文献类型:
--
作者:
Alimi OA;Meijboom R

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三维(3-D)打印,也称为增材制造,是指用于通过从三维虚拟模型逐层接合材料来生成物理对象的方法。3D打印技术传统上用于快速成型、工程和工业设计。最近,新的应用不断出现;这是因为它比传统的制造工艺具有特殊的优势和灵活性。与其他传统的制造方法不同,3D打印是添加剂,因此产生的废物较少。本文全面总结了增材制造技术在化学、化学合成和催化领域的应用,特别关注一般实验室硬件、分析设施、反应装置和催化活性物质的生产。它还专注于新的和即将到来的应用,如数字化学合成,自动化和合成环境中的机器人技术。在讨论该研究领域在过去十年中的贡献时,增材制造在化学研究和材料开发中的当前,未来和经济机会得到了充分的讨论。
Three-dimensional (3-D) printing, also known as additive manufacturing, refers to a method used to generate a physical object by joining materials in a layer-by-layer process from a three-dimensional virtual model. 3-D printing technology has been traditionally employed in rapid prototyping, engineering, and industrial design. More recently, new applications continue to emerge; this is because of its exceptional advantage and flexibility over the traditional manufacturing process. Unlike other conventional manufacturing methods, which are fundamentally subtractive, 3-D printing is additive and, therefore, produces less waste. This review comprehensively summarises the application of additive manufacturing technologies in chemistry, chemical synthesis, and catalysis with particular attention to the production of general laboratory hardware, analytical facilities, reaction devices, and catalytically active substances. It also focuses on new and upcoming applications such as digital chemical synthesis, automation, and robotics in a synthetic environment. While discussing the contribution of this research area in the last decade, the current, future, and economic opportunities of additive manufacturing in chemical research and material development were fully covered.
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