# Electrocatalysts for Energy Conversion

**Type:** Topics  
**Canonical URL:** https://scholariq.org/topics/electrocatalysts-for-energy-conversion/

## Facts

| Field | Value |
| --- | --- |
| Description | This cluster of papers focuses on advances in electrocatalysis for energy conversion, with a particular emphasis on oxygen reduction and hydrogen evolution reactions. The research covers various catalysts, nanomaterials, and methodologies for improving the efficiency and sustainability of energy conversion processes, such as water splitting and fuel cells. |
| Domain | Physical Sciences |
| Field | Energy |
| OpenAlex ID | t10030 |
| Works | 133 |

## Topic papers all

Showing 15 of 133.

- [Promotion of oxygen reduction by a bio-inspired tethered iron phthalocyanine carbon nanotube-based catalyst](https://scholariq.org/papers/promotion-of-oxygen-reduction-by-a-bio-inspired-tethered-iron-phthalocyanine/)
- [Direct and continuous strain control of catalysts with tunable battery electrode materials](https://scholariq.org/papers/direct-and-continuous-strain-control-of-catalysts-with-tunable-battery-electrode/)
- [Sulfonated hydrocarbon membranes for medium-temperature and low-humidity proton exchange membrane fuel cells (PEMFCs)](https://scholariq.org/papers/sulfonated-hydrocarbon-membranes-for-medium-temperature-and-low-humidity-proton/)
- [Recent Progress in Electrically Rechargeable Zinc–Air Batteries](https://scholariq.org/papers/recent-progress-in-electrically-rechargeable-zinc-air-batteries/)
- [Vertical single or few-layer MoS2 nanosheets rooting into TiO2 nanofibers for highly efficient photocatalytic hydrogen evolution](https://scholariq.org/papers/vertical-single-or-few-layer-mos2-nanosheets-rooting-into-tio2-nanofibers-for/)
- [A Review of Graphene‐Based Nanostructural Materials for Both Catalyst Supports and Metal‐Free Catalysts in PEM Fuel Cell Oxygen Reduction Reactions](https://scholariq.org/papers/a-review-of-graphene-based-nanostructural-materials-for-both-catalyst-supports/)
- [New Approach to Fully Ordered fct-FePt Nanoparticles for Much Enhanced Electrocatalysis in Acid](https://scholariq.org/papers/new-approach-to-fully-ordered-fct-fept-nanoparticles-for-much-enhanced/)
- [Ternary Metal Phosphide with Triple‐Layered Structure as a Low‐Cost and Efficient Electrocatalyst for Bifunctional Water Splitting](https://scholariq.org/papers/ternary-metal-phosphide-with-triple-layered-structure-as-a-low-cost-and/)
- [Nanocrack-regulated self-humidifying membranes](https://scholariq.org/papers/nanocrack-regulated-self-humidifying-membranes/)
- [Selective Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid Using O<sub>2</sub> and a Photocatalyst of Co-thioporphyrazine Bonded to g-C<sub>3</sub>N<sub>4</sub>](https://scholariq.org/papers/selective-oxidation-of-5-hydroxymethylfurfural-to-2-5-furandicarboxylic-acid/)
- [Fe Stabilization by Intermetallic L1<sub>0</sub>-FePt and Pt Catalysis Enhancement in L1<sub>0</sub>-FePt/Pt Nanoparticles for Efficient Oxygen Reduction Reaction in Fuel Cells](https://scholariq.org/papers/fe-stabilization-by-intermetallic-l1-sub-0-sub-fept-and-pt-catalysis-enhancement/)
- [Nitrogen‐Doped Cobalt Oxide Nanostructures Derived from Cobalt–Alanine Complexes for High‐Performance Oxygen Evolution Reactions](https://scholariq.org/papers/nitrogen-doped-cobalt-oxide-nanostructures-derived-from-cobalt-alanine-complexes/)
- [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/)
- [Ligand-Stabilized Ruthenium Nanoparticles:  Synthesis, Organization, and Dynamics](https://scholariq.org/papers/ligand-stabilized-ruthenium-nanoparticles-synthesis-organization-and-dynamics/)
- [Mastering Surface Reconstruction of Metastable Spinel Oxides for Better Water Oxidation](https://scholariq.org/papers/mastering-surface-reconstruction-of-metastable-spinel-oxides-for-better-water/)

## Topic primary papers

Showing 15 of 64.

- [Promotion of oxygen reduction by a bio-inspired tethered iron phthalocyanine carbon nanotube-based catalyst](https://scholariq.org/papers/promotion-of-oxygen-reduction-by-a-bio-inspired-tethered-iron-phthalocyanine/)
- [Direct and continuous strain control of catalysts with tunable battery electrode materials](https://scholariq.org/papers/direct-and-continuous-strain-control-of-catalysts-with-tunable-battery-electrode/)
- [A Review of Graphene‐Based Nanostructural Materials for Both Catalyst Supports and Metal‐Free Catalysts in PEM Fuel Cell Oxygen Reduction Reactions](https://scholariq.org/papers/a-review-of-graphene-based-nanostructural-materials-for-both-catalyst-supports/)
- [New Approach to Fully Ordered fct-FePt Nanoparticles for Much Enhanced Electrocatalysis in Acid](https://scholariq.org/papers/new-approach-to-fully-ordered-fct-fept-nanoparticles-for-much-enhanced/)
- [Ternary Metal Phosphide with Triple‐Layered Structure as a Low‐Cost and Efficient Electrocatalyst for Bifunctional Water Splitting](https://scholariq.org/papers/ternary-metal-phosphide-with-triple-layered-structure-as-a-low-cost-and/)
- [Fe Stabilization by Intermetallic L1<sub>0</sub>-FePt and Pt Catalysis Enhancement in L1<sub>0</sub>-FePt/Pt Nanoparticles for Efficient Oxygen Reduction Reaction in Fuel Cells](https://scholariq.org/papers/fe-stabilization-by-intermetallic-l1-sub-0-sub-fept-and-pt-catalysis-enhancement/)
- [Nitrogen‐Doped Cobalt Oxide Nanostructures Derived from Cobalt–Alanine Complexes for High‐Performance Oxygen Evolution Reactions](https://scholariq.org/papers/nitrogen-doped-cobalt-oxide-nanostructures-derived-from-cobalt-alanine-complexes/)
- [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/)
- [Mastering Surface Reconstruction of Metastable Spinel Oxides for Better Water Oxidation](https://scholariq.org/papers/mastering-surface-reconstruction-of-metastable-spinel-oxides-for-better-water/)
- [Boron‐Induced Electronic‐Structure Reformation of CoP Nanoparticles Drives Enhanced pH‐Universal Hydrogen Evolution](https://scholariq.org/papers/boron-induced-electronic-structure-reformation-of-cop-nanoparticles-drives/)
- [Enhancing Oxygen Reduction Activity of Pt‐based Electrocatalysts: From Theoretical Mechanisms to Practical Methods](https://scholariq.org/papers/enhancing-oxygen-reduction-activity-of-pt-based-electrocatalysts-from/)
- [Interpenetrating Triphase Cobalt‐Based Nanocomposites as Efficient Bifunctional Oxygen Electrocatalysts for Long‐Lasting Rechargeable Zn–Air Batteries](https://scholariq.org/papers/interpenetrating-triphase-cobalt-based-nanocomposites-as-efficient-bifunctional/)
- [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/)
- [Controllable etching of MoS2 basal planes for enhanced hydrogen evolution through the formation of active edge sites](https://scholariq.org/papers/controllable-etching-of-mos2-basal-planes-for-enhanced-hydrogen-evolution/)
- [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/)

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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.
