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volume 11 issue 11 pages 3095

Inkjet Printing Infiltration of the Doped Ceria Interlayer in Commercial Anode-Supported SOFCs

R I Tomov 1
T B Mitchel Williams 1
Eleonora Venezia 1
Michal Kawalec 2
Mariusz Krauz 2
Ramachandran Vasant Kumar 1
Publication typeJournal Article
Publication date2021-11-16
scimago Q1
wos Q2
SJR0.811
CiteScore9.2
Impact factor4.3
ISSN20794991
PubMed ID:  34835859
General Chemical Engineering
General Materials Science
Abstract

Single-step inkjet printing infiltration with doped ceria Ce0.9Ye0.1O1.95 (YDC) and cobalt oxide (CoxOy) precursor inks was performed in order to modify the properties of the doped ceria interlayer in commercial (50 × 50 × 0.5 mm3 size) anode-supported SOFCs. The penetration of the inks throughout the La0.8Sr0.2Co0.5Fe0.5O3−δ porous cathode to the Gd0.1Ce0.9O2 (GDC) interlayer was achieved by optimisation of the inks’ rheology jetting parameters. The low-temperature calcination (750 °C) resulted in densification of the Gd-doped ceria porous interlayer as well as decoration of the cathode scaffold with nanoparticles (~20–50 nm in size). The I–V testing in pure hydrogen showed a maximum power density gain of ~20% at 700 °C and ~97% at 800 °C for the infiltrated cells. The latter effect was largely assigned to the improvement in the interfacial Ohmic resistance due to the densification of the interlayer. The EIS study of the polarisation losses of the reference and infiltrated cells revealed a reduction in the activation polarisations losses at 700 °C due to the nano-decoration of the La0.8Sr0.2Co0.5Fe0.5O3−δ scaffold surface. Such was not the case at 800 °C, where the drop in Ohmic losses was dominant. This work demonstrated that single-step inkjet printing infiltration, a non-disruptive, low-cost technique, can produce significant and scalable performance enhancements in commercial anode-supported SOFCs.

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GOST Copy
Tomov R. I. et al. Inkjet Printing Infiltration of the Doped Ceria Interlayer in Commercial Anode-Supported SOFCs // Nanomaterials. 2021. Vol. 11. No. 11. p. 3095.
GOST all authors (up to 50) Copy
Tomov R. I., Mitchel Williams T. B., Venezia E., Kawalec M., Krauz M., Kumar R. V., Glowacki B. A. Inkjet Printing Infiltration of the Doped Ceria Interlayer in Commercial Anode-Supported SOFCs // Nanomaterials. 2021. Vol. 11. No. 11. p. 3095.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.3390/nano11113095
UR - https://doi.org/10.3390/nano11113095
TI - Inkjet Printing Infiltration of the Doped Ceria Interlayer in Commercial Anode-Supported SOFCs
T2 - Nanomaterials
AU - Tomov, R I
AU - Mitchel Williams, T B
AU - Venezia, Eleonora
AU - Kawalec, Michal
AU - Krauz, Mariusz
AU - Kumar, Ramachandran Vasant
AU - Glowacki, Bartek A.
PY - 2021
DA - 2021/11/16
PB - MDPI
SP - 3095
IS - 11
VL - 11
PMID - 34835859
SN - 2079-4991
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Tomov,
author = {R I Tomov and T B Mitchel Williams and Eleonora Venezia and Michal Kawalec and Mariusz Krauz and Ramachandran Vasant Kumar and Bartek A. Glowacki},
title = {Inkjet Printing Infiltration of the Doped Ceria Interlayer in Commercial Anode-Supported SOFCs},
journal = {Nanomaterials},
year = {2021},
volume = {11},
publisher = {MDPI},
month = {nov},
url = {https://doi.org/10.3390/nano11113095},
number = {11},
pages = {3095},
doi = {10.3390/nano11113095}
}
MLA
Cite this
MLA Copy
Tomov, R. I., et al. “Inkjet Printing Infiltration of the Doped Ceria Interlayer in Commercial Anode-Supported SOFCs.” Nanomaterials, vol. 11, no. 11, Nov. 2021, p. 3095. https://doi.org/10.3390/nano11113095.