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Jang, Ji-Wook
JW Energy Lab.
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Fully inkjet-printed large-scale photoelectrodes

Author(s)
Hansora, DharmeshCherian, DennisMehrotra, RashmiJang, Ji-WookLee, Jae Sung
Issued Date
2023-05
DOI
10.1016/j.joule.2023.04.008
URI
https://scholarworks.unist.ac.kr/handle/201301/64804
Fulltext
https://www.sciencedirect.com/science/article/pii/S2542435123001678?via%3Dihub
Citation
JOULE, v.7, no.5, pp.884 - 919
Abstract
Small-area photoelectrodes are used to study fundamental science and material development for photoelectrochemical (PEC) water splitting cells at the laboratory scale. For practical applications, however, one needs to develop scalable geometrical designs and architectures of large photoelectrodes as well as their fabrication using low-cost, solution-processed, scalable methods. In this perspective, we first discuss the device physics concepts for devel-oping large photoelectrodes using dimensional engineering (size, geometry, shape, and structures) and scalable architectures (such as symmetric and asymmetric designs with gridlines as well as mono-lithically integrated modules with interconnections), similar to the earlier development of large thin-film photovoltaic cells. Finally, we propose a novel and strategic protocol to fabricate these designs for the development of large-photoelectrode modules via commercially deployable, fully inkjet-printing as a solution pro-cessed thin-film deposition method.
Publisher
CELL PRESS
ISSN
2542-4351
Keyword
BISMUTH VANADATE PHOTOANODESSOLAR HYDROGEN-PRODUCTIONTHIN-FILMOXYGEN EVOLUTIONARTIFICIAL PHOTOSYNTHESISPEROVSKITE PHOTOVOLTAICSPHOTOCATALYST SHEETSMETAL-OXIDESTANDEM CELLLOW-COST

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