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2022 roadmap on 3D printing for energy

Author(s)
Tarancon, AlbertEsposito, VincenzoTorrell, MarcDi Vece, MarcelSon, Jae SungNorby, PoulBarg, SouravGrant, Patrik S.Vogelpoth, A.Linnenbrink, S.Brucki, M.Schopphoven, T.Gasser, A.Persembe, ElifKoufou, DionysiaKuhn, SimonAmeloot, RobHou, XuEngelbrecht, KurtBahl, Christian R. H.Pryds, NiniWang, JieTsouris, CostasMiramontes, EduardoLove, LonnieLai, CanhaiSun, XinKaern, Martin RyhlCriscuolo, GennaroPedersen, David Bue
Issued Date
2022-01
DOI
10.1088/2515-7655/ac483d
URI
https://scholarworks.unist.ac.kr/handle/201301/57684
Fulltext
https://www.sciencedirect.com/science/article/pii/S0043135421011465?via%3Dihub
Citation
JOURNAL OF PHYSICS-ENERGY, v.4, no.1, pp.117952
Abstract
The energy transition is one of the main challenges of our society and therefore a major driver for the scientific community. To ensure a smart transition to a sustainable future energy scenario different technologies such as energy harvesting using solar cells or windmills and chemical storage in batteries, super-capacitors or hydrogen have to be developed and ultimately deployed. New fabrication approaches based on additive manufacturing and the digitalization of the industrial processes increase the potential to achieve highly efficient and smart technologies required to increase the competitiveness of clean energy technologies against fossil fuels. In this frame, the present roadmap highlights the tremendous potential of 3D printing as a new route to fully automate the manufacturing of energy devices designed as digital files. This article gives numerous guidelines to maximize the performance and efficiency of the next generation of 3D printed devices for the energy transition while reducing the waste of critical raw materials. In particular, the paper is focused on the current status, present challenges and the expected and required advances of 3D printing for the fabrication of the most relevant energy technologies such as fuel cells and electrolysers, batteries, solar cells, super-capacitors, thermoelectric generators, chemical reactors and turbomachinery.
Publisher
IOP PUBLISHING LTD
ISSN
2515-7655
Keyword (Author)
3D printingadditive manufacturingfuel cellssolar cellsthermoelectricsbatteriessupercapacitors
Keyword
ABSORPTIONSOLID OXIDE FUELLITHIUM-ION BATTERYTHERMOELECTRIC-MATERIALSCO2 CAPTURETOPOLOGY OPTIMIZATIONTHERMAL MANAGEMENTFABRICATIONTECHNOLOGIESGENERATION

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