Hydrogen production through renewable and non-renewable energy processes and their impact on climate change

M Amin, HH Shah, AG Fareed, WU Khan… - International journal of …, 2022 - Elsevier
The urbanization and increase in the human population has significantly influenced the
global energy demands. The utilization of non-renewable fossil fuel-based energy …

A critical review on cathode materials for steam electrolysis in solid oxide electrolysis

S Biswas, G Kaur, G Paul, S Giddey - International Journal of Hydrogen …, 2023 - Elsevier
The major technologies being considered for the green hydrogen production are polymer
electrolyte membrane (PEM) and solid oxide electrolysis (SOE). While PEM electrolysis …

Main hydrogen production processes: An overview

M Martino, C Ruocco, E Meloni, P Pullumbi, V Palma - Catalysts, 2021 - mdpi.com
Due to its characteristics, hydrogen is considered the energy carrier of the future. Its use as a
fuel generates reduced pollution, as if burned it almost exclusively produces water vapor …

Materials of solid oxide electrolysis cells for H2O and CO2 electrolysis: A review.

P Qiu, C Li, B Liu, D Yan, J Li… - Journal of Advanced …, 2023 - search.ebscohost.com
Reliable and economical energy storage technologies are urgently required to ensure
sustainable energy supply. Hydrogen (H< sub> 2) is an energy carrier that can be produced …

[PDF][PDF] Recent advances in high-temperature steam electrolysis with solid oxide electrolysers for green hydrogen production

MF Vostakola, H Ozcan, RS El-Emam, BA Horri - Energies, 2023 - researchgate.net
Hydrogen is known to be the carbon-neutral alternative energy carrier with the highest
energy density. Currently, more than 95% of hydrogen production technologies rely on fossil …

Rational design of Sr2Fe1. 5Mo0. 4Y0. 1O6-δ oxygen electrode with triple conduction for hydrogen production in protonic ceramic electrolysis cell

R Ren, J Sun, G Wang, C Xu, J Qiao, W Sun… - Separation and …, 2022 - Elsevier
Protonic ceramic electrolysis cells (PCECs) are emerging as potential technology to achieve
efficient electrochemical hydrogen production and purification due to their high conversion …

Ostwald‐Ripening Induced Interfacial Protection Layer Boosts 1,000,000‐Cycled Hydronium‐Ion Battery

Z Zhao, W Zhang, D Wang, L Li, Q Liang… - Angewandte Chemie …, 2024 - Wiley Online Library
Collapsing and degradation of active materials caused by the electrode/electrolyte interface
instability in aqueous batteries are one of the main obstacles that mitigate the capacity …

A novel CO2-tolerant Ba0. 5Sr0. 5Co0. 8Fe0. 1Ta0. 1O3-δ cathode with high performance for proton-conducting solid oxide fuel cells

F Wang, X Xu, Y Xia, B Dong, N Ke, L Hao, L Bi… - International Journal of …, 2021 - Elsevier
The application of traditional MIEC cathode material Ba 0.5 Sr 0.5 Co 0.8 Fe 0.2 O 3-δ
(BSCF) in the solid oxide fuel cell (SOFC) field is limited due to its susceptibility to CO 2 and …

Layered barium cobaltite structure materials containing perovskite and CdI2-based layers for reversible solid oxide cells with exceptionally high performance

M Jo, H Bae, K Park, MA Hamayun, GM Park… - Chemical Engineering …, 2023 - Elsevier
To improve the sluggish kinetics of oxygen electrode reactions in reversible solid oxide cells
(RSOCs), a novel layered structure Nd 0.1 Ca 0.1 Ba 1.8 Co 9 O 14 (NCBCO) having …

Investigation on Nd1–xCaxBaCo2O5+ δ double perovskite as new oxygen electrode materials for reversible solid oxide cells

J Li, N Sun, X Liu, Y Shen, F Wang, J Li, K Shi… - Journal of Alloys and …, 2022 - Elsevier
Novel perovskite-type A-site calcium-doped Nd 1–x Ca x BaCo 2 O 5+ δ oxides were
studied in terms of oxygen electrode materials for reversible solid oxide cells (RSOCs). The …