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Published in 2021 at "Advanced Functional Materials"
DOI: 10.1002/adfm.202105386
Abstract: One of the main bottlenecks that limit the performance of reversible protonic ceramic electrochemical cells (R‐PCECs) is the sluggish kinetics of the oxygen reduction and evolution reactions (ORR and OER). Here, the significantly enhanced ORR…
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Keywords:
ceramic electrochemical;
electrochemical cells;
air;
protonic ceramic ... See more keywords
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Published in 2025 at "Advanced Functional Materials"
DOI: 10.1002/adfm.202513396
Abstract: Protonic ceramic electrochemical cells (PCECs) represent a promising class of solid‐state energy conversion devices capable of high‐efficiency hydrogen production and power generation. However, the practical deployment of planar PCECs is fundamentally constrained by severe structural…
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Keywords:
architecture;
ultra flat;
ceramic electrochemical;
electrolyte ... See more keywords
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Published in 2023 at "Advanced Science"
DOI: 10.1002/advs.202206478
Abstract: Protonic ceramic electrochemical cells (PCECs) have been intensively studied as the technology that can be employed for power generation, energy storage, and sustainable chemical synthesis. Recently, there have been substantial advances in electrolyte and electrode…
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Keywords:
sustainable chemicals;
synthesizing sustainable;
protonic ceramic;
ceramic electrochemical ... See more keywords
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Published in 2024 at "Advanced Energy Materials"
DOI: 10.1002/aenm.202304059
Abstract: Protonic ceramic electrochemical cells (PCECs) hold great promise as an energy conversion and storage technology at lower temperatures (400–650 °C). However, the sluggish reaction kinetics at the oxygen electrode hinder the electrochemical activity of PCECs.…
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Keywords:
ceramic electrochemical;
electrochemical cells;
oxygen electrodes;
bimetal doped ... See more keywords
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Published in 2019 at "Ceramics International"
DOI: 10.1016/j.ceramint.2019.05.127
Abstract: Abstract In order to overcome different tasks related to the thermal and chemical compatibility of functional solid oxide electrochemical cell materials, including those based on proton-conducting electrolytes, the search for new potential oxygen/steam electrodes is…
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Keywords:
protonic ceramic;
ceramic electrochemical;
electrochemical cells;
electrodes protonic ... See more keywords
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Published in 2022 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.2c08918
Abstract: Micropatterning is considered a promising strategy for improving the performance of electrochemical devices. However, micropatterning on ceramic is limited by its mechanically fragile properties. This paper reports a novel imprinting-assisted transfer technique to fabricate an…
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Keywords:
cell;
performance;
protonic ceramic;
ceramic electrochemical ... See more keywords
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Published in 2025 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.4c21320
Abstract: The increasing demand for sustainable energy solutions has driven interest in ceramic electrochemical cells, which are also known as solid oxide electrochemical cells, for high-efficiency power generation and hydrogen production. Ceramic electrochemical cells offer fuel…
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Keywords:
based ionic;
bi2o3 based;
ceramic electrochemical;
ionic conductors ... See more keywords
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Published in 2021 at "ACS energy letters"
DOI: 10.1021/acsenergylett.1c00432
Abstract: Reversible protonic ceramic electrochemical cells (R-PCECs) are a promising option for efficient and low-cost generation of electricity and hydrogen. Commercialization of R-PCECs, however, hinges o...
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Keywords:
protonic ceramic;
ceramic electrochemical;
reversible protonic;
active robust ... See more keywords
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Published in 2022 at "Materials"
DOI: 10.3390/ma15062166
Abstract: Protonic ceramic fuel cells (PCFCs) offer a convenient means of converting chemical energy into electricity with high performance and efficiency at low- and intermediate-temperature ranges. However, in order to ensure good life-time stability of PCFCs,…
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Keywords:
ceramic electrochemical;
prni0 4co0;
electrochemical cells;
protonic ceramic ... See more keywords