<HashMap><database>biostudies-literature</database><scores/><additional><submitter>Asghar MI</submitter><funding>Academy of Finland</funding><pagination>2180</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC8466634</full_dataset_link><repository>biostudies-literature</repository><omics_type>Unknown</omics_type><volume>11(9)</volume><pubmed_abstract>Single-layer ceramic fuel cells consisting of Li0.15Ni0.45Zn0.4O2, Gd0.2Ce0.8O2 and a eutectic mixture of Li2CO3, Na2CO3 and K2CO3, were fabricated through extrusion-based 3D printing. The sintering temperature of the printed cells was varied from 700 °C to 1000 °C to identify the optimal thermal treatment to maximize the cell performance. It was found that the 3D printed single-layer cell sintered at 900 °C produced the highest power density (230 mW/cm2) at 550 °C, which is quite close to the performance (240 mW/cm2) of the single-layer cell fabricated through a conventional pressing method. The best printed cell still had high ohmic (0.46 Ω·cm2) and polarization losses (0.32 Ω·cm2) based on EIS measurements conducted in an open-circuit condition. The XRD spectra showed the characteristic</pubmed_abstract><journal>Nanomaterials (Basel, Switzerland)</journal><pubmed_title>Systematic Analysis on the Effect of Sintering Temperature for Optimized Performance of Li0.15Ni0.45Zn0.4O2-Gd0.2Ce0.8O2-Li2CO3-Na2CO3-K2CO3 Based 3D Printed Single-Layer Ceramic Fuel Cell.</pubmed_title><pmcid>PMC8466634</pmcid><funding_grant_id>13329016, 13322738</funding_grant_id><pubmed_authors>Asghar MI</pubmed_authors><pubmed_authors>Virtanen S</pubmed_authors><pubmed_authors>Maitre A</pubmed_authors><pubmed_authors>Makinen P</pubmed_authors><pubmed_authors>Lund PD</pubmed_authors><pubmed_authors>Borghei M</pubmed_authors></additional><is_claimable>false</is_claimable><name>Systematic Analysis on the Effect of Sintering Temperature for Optimized Performance of Li0.15Ni0.45Zn0.4O2-Gd0.2Ce0.8O2-Li2CO3-Na2CO3-K2CO3 Based 3D Printed Single-Layer Ceramic Fuel Cell.</name><description>Single-layer ceramic fuel cells consisting of Li0.15Ni0.45Zn0.4O2, Gd0.2Ce0.8O2 and a eutectic mixture of Li2CO3, Na2CO3 and K2CO3, were fabricated through extrusion-based 3D printing. The sintering temperature of the printed cells was varied from 700 °C to 1000 °C to identify the optimal thermal treatment to maximize the cell performance. It was found that the 3D printed single-layer cell sintered at 900 °C produced the highest power density (230 mW/cm2) at 550 °C, which is quite close to the performance (240 mW/cm2) of the single-layer cell fabricated through a conventional pressing method. The best printed cell still had high ohmic (0.46 Ω·cm2) and polarization losses (0.32 Ω·cm2) based on EIS measurements conducted in an open-circuit condition. The XRD spectra showed the characteristic</description><dates><release>2021-01-01T00:00:00Z</release><publication>2021 Aug</publication><modification>2025-06-01T02:47:42.04Z</modification><creation>2025-06-01T02:47:42.04Z</creation></dates><accession>S-EPMC8466634</accession><cross_references><pubmed>34578496</pubmed><doi>10.3390/nano11092180</doi></cross_references></HashMap>