Themed collection Energy Advances most popular 2025 articles
Unlocking catalytic longevity: a critical review of catalyst deactivation pathways and regeneration technologies
Catalyst deactivation is a major hurdle in heterogeneous catalysis that requires robust regeneration strategies to restore performance, extend catalyst lifetime and improve sustainability in various industrial processes.
Energy Adv., 2025,4, 1075-1113
https://doi.org/10.1039/D5YA00015G
A comprehensive review of lithium-ion battery components degradation and operational considerations: a safety perspective
This review explores degradation pathways, failure risks, and mitigation strategies in lithium-ion batteries, with focus on safety and operation in EVs, ESS, and extreme military environments.
Energy Adv., 2025,4, 820-877
https://doi.org/10.1039/D5YA00065C
Interface engineering strategies for enhanced electrocatalytic hydrogen evolution reaction
The interface engineering includes intricate procedures for the development of heterostructures and heterojunctions, modifying the composition at the interface, and optimizing the interfacial area to enhance H2 catalytic performance.
Energy Adv., 2025,4, 716-742
https://doi.org/10.1039/D5YA00022J
Plastic waste gasification for low-carbon hydrogen production: a comprehensive review
A comprehensive review of low-carbon hydrogen production via plastic waste gasification.
Energy Adv., 2025,4, 330-363
https://doi.org/10.1039/D4YA00292J
Next-generation dual absorber solar cell design with Ca3AsI3 and Sr3PBr3 perovskites and MoO3 HTL achieves superior efficiency above 29%
This research analyzes four perovskite solar cell architectures, emphasizing the effects of material selection, absorber thickness, defect and acceptor densities, interface imperfections, and temperature fluctuations on device efficiency.
Energy Adv., 2025,4, 1383-1400
https://doi.org/10.1039/D5YA00137D
Computational study of Li+ solvation structures in fluorinated ether, non-fluorinated ether, and organic carbonate-based electrolytes at low and high salt concentrations
Understanding the solvation structure of electrolytes is crucial for optimizing the performance and stability of lithium-ion batteries.
Energy Adv., 2025,4, 1049-1066
https://doi.org/10.1039/D5YA00154D
Oxygen vacancy assisted hydrogen evolution reaction over CeO2-based solid solutions
Producing sustainable hydrogen through water electrolysis is a promising approach to meet the growing demand for renewable energy storage.
Energy Adv., 2025,4, 896-909
https://doi.org/10.1039/D5YA00027K
Urea-driven hydrothermal synthesis of Mn2O3: electrochemical performance across various electrolytes for supercapacitor applications
Hydrothermal synthesis of Mn2O3 with varying urea content and their electrochemical performance in various electrolytes.
Energy Adv., 2025,4, 878-895
https://doi.org/10.1039/D5YA00040H
Novel onboard ammonia cracker for light-duty automotive fuel cell vehicles
This work introduces an innovative onboard ammonia cracker module integrated with a 100-kW fuel cell system for light-duty automotive fuel cell vehicles.
Energy Adv., 2025,4, 796-809
https://doi.org/10.1039/D4YA00601A
Soft carbon electrodes in capacitive energy extraction: exploring geometry and operational parameters in capacitive mixing systems
The Donnan potential difference between the electrodes increases with the exchange of saline solutions. The geometry and operational parameters offer valuable insights for improving energy extraction performance.
Energy Adv., 2025,4, 776-787
https://doi.org/10.1039/D4YA00605D
Lithiation mechanism of sulfur surfaces during discharge of Li–S batteries from quantum chemical calculations
In the first lithiation of (001) sulfur surface, lower S8 rings convert to Li2S8. In the second lithiation, however, reaction occurs at upper S8 rings adjacent to an existing Li2S8 or on lower S8 rings at a distance, forming new Li2S8 molecules.
Energy Adv., 2025,4, 788-795
https://doi.org/10.1039/D5YA00050E
Electroactive phase dependent triboelectric nanogenerator performance of PVDF–TiO2 composites
This investigation explores the impact of the electroactive phase of a well-known tribonegative polymer, polyvinylidene fluoride (PVDF), on its triboelectric behaviour by compositing it with anatase, rutile, and mixed-phase TiO2 nanoparticles.
Energy Adv., 2025,4, 683-698
https://doi.org/10.1039/D4YA00525B
Durable, rate-capable and high-energy hybrid supercapacitor from PANI/ZnO/SnO2 nanocomposite with zero-waste electrolyte approach
The supercapacitors containing the composite of PANI, ZnO and SnO2 synthesized in single-step were tested using two electrolytes. The liquid by-product of PANI synthesis was used as an electrolyte for the fabrication (waste to wealth).
Energy Adv., 2025,4, 666-682
https://doi.org/10.1039/D4YA00617H
Design parameter optimization of a membrane reactor for methanol synthesis using a sophisticated CFD model
A sophisticated CFD model of a membrane reactor for methanol synthesis from CO2 is developed, with which key parameters for the general optimization of the construction and operation of membrane reactors for industrial applications are identified.
Energy Adv., 2025,4, 565-577
https://doi.org/10.1039/D5YA00016E
Insights into the chemical and electrochemical behavior of halide and sulfide electrolytes in all-solid-state batteries
Understanding the chemical and electrochemical behavior of halide and sulfide electrolytes offers a straightforward and effective approach to improving the interface of halide-based solid-state batteries.
Energy Adv., 2025,4, 518-529
https://doi.org/10.1039/D4YA00618F
Impact of precursor dosing on the surface passivation of AZO/AlOx stacks formed using atomic layer deposition
Aluminium-doped ZnO deposited by ALD provides transparency, conductivity, and c-Si passivation for high-efficiency solar cells, reducing the need for indium-based TCOs. Precise Zn/Al control enables passivation with J0 < 1 fA cm−2 and 740 mV iVOC.
Energy Adv., 2025,4, 553-564
https://doi.org/10.1039/D4YA00552J
Techno-economic analysis of indirect carbonation processes for carbon sequestration using mining waste
A comprehensive assessment of process design, cost efficiency, critical mineral recovery, and CO2 storage in mine tailings.
Energy Adv., 2025,4, 435-446
https://doi.org/10.1039/D4YA00567H
SnO2 modified CsH2PO4 (CDP) protonic electrolyte for an electrochemical hydrogen pump
Hydrophilic SnO2 is introduced into CsH2PO4 (CDP) to mitigate CDP's dehydration at lower partial pressure of steam, thus retaining proton conductivity.
Energy Adv., 2025,4, 424-434
https://doi.org/10.1039/D4YA00606B
Graphite particles modified by ZnO atomic layer deposition for Li-ion battery anodes
The electrode made of graphite with 2 cycles of ZnO ALD had about 20% higher discharge capacity than that of pristine graphite, and it remained stable at 420 mA h g−1 after 500 cycles of charge/discharge.
Energy Adv., 2025,4, 249-261
https://doi.org/10.1039/D4YA00518J
In situ synthesis of VO2@C nanocomposites for enhanced visible-light photocatalysis in wastewater remediation and sustainable hydrogen generation
Hydrothermally synthesized VC-5 nanocomposites are efficient photocatalysts for dye degradation and hydrogen generation under sunlight. VC-5 degrades 25 ppm dye in min. and achieves 2545.24 μmol h−1 g−1 H2 evolution from water without noble metals.
Energy Adv., 2025,4, 281-295
https://doi.org/10.1039/D4YA00587B
About this collection
Showcasing some of the most cited and most accessed articles published in Energy Advances during 2025.
Congratulations to all of the authors whose articles have been featured!