# Advancements in Solid Oxide Fuel Cells

**Type:** Topics  
**Canonical URL:** https://scholariq.org/topics/advancements-in-solid-oxide-fuel-cells/

## Facts

| Field | Value |
| --- | --- |
| Description | This cluster of papers focuses on the materials, technologies, and components related to solid oxide fuel cells (SOFCs), including electrolytes, cathodes, anodes, proton-conducting oxides, high temperature electrolysis, oxygen ion conductors, and ionic transport membranes. The papers cover a wide range of research areas such as performance enhancement, durability, and application prospects for SOFCs. |
| Domain | Physical Sciences |
| Field | Materials Science |
| OpenAlex ID | t10311 |
| Works | 29 |

## Topic papers all

Showing 15 of 29.

- [Aliphatic/Aromatic Polyimide Ionomers as a Proton Conductive Membrane for Fuel Cell Applications](https://scholariq.org/papers/aliphatic-aromatic-polyimide-ionomers-as-a-proton-conductive-membrane-for-fuel/)
- [Solute Segregation and Grain‐Boundary Impedance in High‐Purity Stabilized Zirconia](https://scholariq.org/papers/solute-segregation-and-grain-boundary-impedance-in-high-purity-stabilized/)
- [Exceptionally active iridium evolved from a pseudo-cubic perovskite for oxygen evolution in acid](https://scholariq.org/papers/exceptionally-active-iridium-evolved-from-a-pseudo-cubic-perovskite-for-oxygen/)
- [High Configuration Entropy Activated Lattice Oxygen for O<sub>2</sub> Formation on Perovskite Electrocatalyst](https://scholariq.org/papers/high-configuration-entropy-activated-lattice-oxygen-for-o-sub-2-sub-formation-on/)
- [Tailoring gadolinium-doped ceria-based solid oxide fuel cells to achieve 2 W cm−2 at 550 °C](https://scholariq.org/papers/tailoring-gadolinium-doped-ceria-based-solid-oxide-fuel-cells-to-achieve-2-w-cm/)
- [Key roles of surface Fe sites and Sr vacancies in the perovskite for an efficient oxygen evolution reaction <i>via</i> lattice oxygen oxidation](https://scholariq.org/papers/key-roles-of-surface-fe-sites-and-sr-vacancies-in-the-perovskite-for-an/)
- [Carbon-based coatings for metallic bipolar plates used in proton exchange membrane fuel cells](https://scholariq.org/papers/carbon-based-coatings-for-metallic-bipolar-plates-used-in-proton-exchange/)
- [A Bulk-Heterostructure Nanocomposite Electrolyte of Ce0.8Sm0.2O2-δ–SrTiO3 for Low-Temperature Solid Oxide Fuel Cells](https://scholariq.org/papers/a-bulk-heterostructure-nanocomposite-electrolyte-of-ce0-8sm0-2o2-srtio3-for-low/)
- [Ionomer content in the catalyst layer of polymer electrolyte membrane fuel cell (PEMFC): Effects on diffusion and performance](https://scholariq.org/papers/ionomer-content-in-the-catalyst-layer-of-polymer-electrolyte-membrane-fuel-cell/)
- [Direct carbon conversion in a helium fluidized bed fuel cell](https://scholariq.org/papers/direct-carbon-conversion-in-a-helium-fluidized-bed-fuel-cell/)
- [Fabrication and evaluation of Ni-GDC composite anode prepared by aqueous-based tape casting method for low-temperature solid oxide fuel cell](https://scholariq.org/papers/fabrication-and-evaluation-of-ni-gdc-composite-anode-prepared-by-aqueous-based/)
- [Numerical Investigation of Tapered Flow Field Configurations for Enhanced Polymer Electrolyte Membrane Fuel Cell Performance](https://scholariq.org/papers/numerical-investigation-of-tapered-flow-field-configurations-for-enhanced/)
- [Industrial-grade rare-earth and perovskite oxide for high-performance electrolyte layer-free fuel cell](https://scholariq.org/papers/industrial-grade-rare-earth-and-perovskite-oxide-for-high-performance/)
- [XPS and voltammetric studies on La1−xSrxCoO3−δ perovskite oxide electrodes](https://scholariq.org/papers/xps-and-voltammetric-studies-on-la1-xsrxcoo3-perovskite-oxide-electrodes/)
- [Conversion of Solid Carbonaceous Fuels in a Fluidized Bed Fuel Cell](https://scholariq.org/papers/conversion-of-solid-carbonaceous-fuels-in-a-fluidized-bed-fuel-cell/)

## Topic primary papers

Showing 15 of 20.

- [Solute Segregation and Grain‐Boundary Impedance in High‐Purity Stabilized Zirconia](https://scholariq.org/papers/solute-segregation-and-grain-boundary-impedance-in-high-purity-stabilized/)
- [Tailoring gadolinium-doped ceria-based solid oxide fuel cells to achieve 2 W cm−2 at 550 °C](https://scholariq.org/papers/tailoring-gadolinium-doped-ceria-based-solid-oxide-fuel-cells-to-achieve-2-w-cm/)
- [A Bulk-Heterostructure Nanocomposite Electrolyte of Ce0.8Sm0.2O2-δ–SrTiO3 for Low-Temperature Solid Oxide Fuel Cells](https://scholariq.org/papers/a-bulk-heterostructure-nanocomposite-electrolyte-of-ce0-8sm0-2o2-srtio3-for-low/)
- [Direct carbon conversion in a helium fluidized bed fuel cell](https://scholariq.org/papers/direct-carbon-conversion-in-a-helium-fluidized-bed-fuel-cell/)
- [Fabrication and evaluation of Ni-GDC composite anode prepared by aqueous-based tape casting method for low-temperature solid oxide fuel cell](https://scholariq.org/papers/fabrication-and-evaluation-of-ni-gdc-composite-anode-prepared-by-aqueous-based/)
- [Industrial-grade rare-earth and perovskite oxide for high-performance electrolyte layer-free fuel cell](https://scholariq.org/papers/industrial-grade-rare-earth-and-perovskite-oxide-for-high-performance/)
- [XPS and voltammetric studies on La1−xSrxCoO3−δ perovskite oxide electrodes](https://scholariq.org/papers/xps-and-voltammetric-studies-on-la1-xsrxcoo3-perovskite-oxide-electrodes/)
- [Conversion of Solid Carbonaceous Fuels in a Fluidized Bed Fuel Cell](https://scholariq.org/papers/conversion-of-solid-carbonaceous-fuels-in-a-fluidized-bed-fuel-cell/)
- [Semiconductor-ionic Membrane of LaSrCoFe-oxide-doped Ceria Solid Oxide Fuel Cells](https://scholariq.org/papers/semiconductor-ionic-membrane-of-lasrcofe-oxide-doped-ceria-solid-oxide-fuel/)
- [High-temperature electrolysis of synthetic seawater using solid oxide electrolyzer cells](https://scholariq.org/papers/high-temperature-electrolysis-of-synthetic-seawater-using-solid-oxide/)
- [Physical principles for the calculation of equilibrium potential for co-electrolysis of steam and carbon dioxide in a Solid Oxide Electrolyzer Cell (SOEC)](https://scholariq.org/papers/physical-principles-for-the-calculation-of-equilibrium-potential-for-co/)
- [The fuel cells studies from ionic electrolyte Ce0.8Sm0.05Ca0.15O2−δ to the mixture layers with semiconductor Ni0.8Co0.15Al0.05LiO2−δ](https://scholariq.org/papers/the-fuel-cells-studies-from-ionic-electrolyte-ce0-8sm0-05ca0-15o2-to-the-mixture/)
- [Activation and failure mechanism of La0.6Sr0.4Co0.2Fe0.8O3−δ air electrode in solid oxide electrolyzer cells under high-current electrolysis](https://scholariq.org/papers/activation-and-failure-mechanism-of-la0-6sr0-4co0-2fe0-8o3-air-electrode-in/)
- [Preparation of Ni/YSZ materials for SOFC anodes by buffer-solution method](https://scholariq.org/papers/preparation-of-ni-ysz-materials-for-sofc-anodes-by-buffer-solution-method/)
- [Mixed ionic-electronic conductor membrane based fuel cells by incorporating semiconductor Ni 0.8 Co 0.15 Al 0.05 LiO 2−δ into the Ce 0.8 Sm 0.2 O 2−δ -Na 2 CO 3 electrolyte](https://scholariq.org/papers/mixed-ionic-electronic-conductor-membrane-based-fuel-cells-by-incorporating/)

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Source: ScholarIQ — public research metadata, principally OpenAlex. See https://scholariq.org/sources/ for provenance and https://scholariq.org/methodology/ for what these figures mean.
