Themed collection Sustainable Energy & Fuels 2026 Review Articles
Unlocking possibilities to transition to sustainable low-carbon liquid fuels – a perspective
Low-carbon liquid fuels (LCLFs) offer a scalable solution to decarbonise heavy transport, maintaining energy security and compatibility with existing infrastructure.
Sustainable Energy Fuels, 2026,10, 802-811
https://doi.org/10.1039/D5SE01385B
Thermal diffusion of hydrogen-containing gas mixtures: applications to underground hydrogen storage
Experimental measurements of binary gas thermal diffusion complement thermodynamic equilibrium modeling of hydrogen-containing gas mixtures, providing insight into how temperature and gravity affect underground hydrogen storage.
Sustainable Energy Fuels, 2026,10, 191-205
https://doi.org/10.1039/D5SE01192B
Synergistic energy conversion: triboelectric hybrid approaches for sustainable self-powered sensors and systems
The Table-of-Contents (TOC) figure illustrates the design strategies, working mechanisms, and application prospects of triboelectric nanogenerator (TENG)-based hybrid energy harvesting systems.
Sustainable Energy Fuels, 2026, Advance Article
https://doi.org/10.1039/D5SE00740B
State-of-the-art on the conversion of lignocellulosic biomass and its derivatives into biofuels using zeolites as catalysts
This review provides the latest developments in the application of zeolites for the conversion of lignocellulosic biomass and its derivatives into biofuels.
Sustainable Energy Fuels, 2026,10, 1259-1281
https://doi.org/10.1039/D5SE01314C
Interfacial engineering in heterostructured electrocatalysts: electronic, strain, and synergistic modulation for enhanced hydrogen evolution
Heterostructured electrocatalysts for hydrogen evolution: interface engineering via electronic, strain, and synergistic effects.
Sustainable Energy Fuels, 2026,10, 1202-1207
https://doi.org/10.1039/D6SE00073H
Earth-abundant metal catalysts for sustainable CO2 reduction: a review of strategies and progress
This review highlights catalyst design for CO2 reduction, focusing on active-site engineering, hybrid architectures, operando insights, and reactor integration to enable scalable, energy-efficient CO2 valorization.
Sustainable Energy Fuels, 2026,10, 1208-1233
https://doi.org/10.1039/D5SE01290B
Flexible sodium-ion batteries with reversible multi-electron redox mechanism and an advanced electrolyte–electrode interface
This review highlights key advances in flexible SIBs, focusing on anode and cathode materials, electrolytes, and electrolyte–electrode interfaces, with emphasis on flexibility and sodium-ion insertion/diffusion mechansim.
Sustainable Energy Fuels, 2026,10, 1234-1258
https://doi.org/10.1039/D5SE01143D
Progress in anode engineering for rechargeable zinc-ion batteries: strategies for dendrite suppression and host architectures
This review links zinc dendrite thermodynamics and kinetics with electrolyte, interphase, and structural design strategies to realize dendrite-free, highly reversible zinc anodes for durable, high-areal-capacity aqueous batteries.
Sustainable Energy Fuels, 2026, Advance Article
https://doi.org/10.1039/D6SE00099A
Humidity-driven energy harvesting systems: mechanisms, materials, challenges, and future directions
This review summarizes moisture-enabled energy harvesting mechanisms, materials, and hybrid systems, highlighting their advances in ionic transport, hydrovoltaic effects, and integrated energy storage for self-powered applications.
Sustainable Energy Fuels, 2026, Advance Article
https://doi.org/10.1039/D5SE01325A
Hydrophobic deep eutectic solvents for sustainable lithium recovery in battery recycling systems
Comparison between conventional solvent extraction and hydrophobic deep eutectic solvent (HDES) systems for lithium recovery from spent batteries, illustrating drawbacks of traditional solvents and potential benefits of HDES-based extraction.
Sustainable Energy Fuels, 2026,10, 984-1002
https://doi.org/10.1039/D5SE01580D
Rational design strategies for carbon nanotube-based non-precious metal HER catalysts: a review
Developing highly efficient and low-cost electrocatalysts for sustainable HER remains a critical challenge, as non-precious metal alternatives to platinum are often limited by insufficient catalytic activity and structural instability.
Sustainable Energy Fuels, 2026,10, 1024-1037
https://doi.org/10.1039/D5SE01581B
Understanding factors affecting storage capacity and reproducibility in realistic ambient-temperature hydrogen physisorption
Porous materials show high H2 uptake via physisorption at cryogenic temperatures, while ambient storage remains limited. To get reliable storage capacity, H2 reproducibility, and standardized measurements are critical for realistic performance.
Sustainable Energy Fuels, 2026,10, 961-983
https://doi.org/10.1039/D5SE01539A
Perovskite quantum dot@MOF heterostructures: highly efficient and stable visible-light photocatalysts
Perovskite quantum dots confined in a MOF-derived N-doped carbon framework create highly active, stable catalytic sites, delivering efficient bifunctional HER and ORR performance through synergistic electronic and structural effects.
Sustainable Energy Fuels, 2026,10, 1003-1023
https://doi.org/10.1039/D5SE01602A
Recent advances in the synthesis of g-C3N4 nanocomposites for energy conversion and environmental remediation applications
An overview of advanced g-C3N4-based photocatalysts highlighting structural design strategies and their promising roles in environmental remediation and energy conversion.
Sustainable Energy Fuels, 2026,10, 762-801
https://doi.org/10.1039/D5SE01533B
Development of core–shell nanofibers in magnetoelectric sensors, fuel cells, and drug-delivery applications: a review
Core–shell nanofibers have diverse applications, including drug delivery, water purification, tissue engineering, and sensor technologies, highlighting their multifunctional potential in both biomedical and environmental fields.
Sustainable Energy Fuels, 2026,10, 728-761
https://doi.org/10.1039/D5SE01377A
Nanoceramic materials for next generation high-efficiency energy storage, energy conversion and energy transmission systems
Nanoceramics, which have nanoscale structural units and remarkable mechanical, thermal, and electrical properties, are providing transformative benefits for energy systems of the future.
Sustainable Energy Fuels, 2026,10, 687-727
https://doi.org/10.1039/D5SE01215E
Recent advances in quadruple perovskite oxide-based electrocatalysts for oxygen evolution reactions: a review
This review provides recent advances in OER activity of quadruple perovskite oxides (QPOs). Synthesis methods and characterization techniques of QPOs electrocatalysts are described. Their prospects and future challenges are also discussed.
Sustainable Energy Fuels, 2026,10, 546-571
https://doi.org/10.1039/D5SE01289A
A critical review on the design strategies of SFM-based perovskite oxides for high-temperature CO2 electrolysis in solid oxide electrolysis cells
Schematic illustration of the synthesis and modification methods of SFM double perovskite oxides, and their applications as high-performance electrocatalysts for CO2 electrolysis using renewable energy sources.
Sustainable Energy Fuels, 2026,10, 405-446
https://doi.org/10.1039/D5SE01240F
Identification and mechanistic understanding of active sites in bimetallic catalysts for electrochemical water splitting
Exploring bimetallic active sites in electrocatalysts: linking electronic structure, active site design, and reaction mechanisms for efficient HER and OER performance.
Sustainable Energy Fuels, 2026,10, 488-530
https://doi.org/10.1039/D5SE01497B
MXenes for catalysis: current developments in photocatalysis and electrocatalysis
In recent years, MXenes have achieved remarkable progress in catalysis owing to their distinctive physicochemical properties, such as excellent electrical conductivity, tunable surface functional groups, and unique layered structures.
Sustainable Energy Fuels, 2026,10, 531-545
https://doi.org/10.1039/D5SE01407G
2D MXenes: high-performance supercapacitors for future energy systems
The increasing demand for advanced energy storage in applications like wearable electronics, electric vehicles, and renewable technologies encourages the growth of advanced supercapacitor materials.
Sustainable Energy Fuels, 2026,10, 447-487
https://doi.org/10.1039/D5SE01308A
Electrolyte additives in Li-ion batteries: from mechanisms to application
This review categorizes lithium battery electrolyte additives by composition, chemical structure, function, and properties, highlighting their critical role in enhancing energy density, cycle life, and safety.
Sustainable Energy Fuels, 2026,10, 150-190
https://doi.org/10.1039/D5SE01310K
Optimizing π-conjugated system of spiro-based HTMs; structures and concept towards boosting efficiency of PSCs
π-Conjugated spiro-based hole transport materials (HTMs) are critically reviewed for their structure–efficiency–stability relationships in perovskite solar cells (PSCs).
Sustainable Energy Fuels, 2026,10, 137-149
https://doi.org/10.1039/D5SE01025J
Electrodeposited MnO2 films for energy storage and catalysis: a review
Manganese dioxide (MnO2) has demonstrated significant potential in electrochemical energy storage and catalytic applications due to its low cost, environmental friendliness, and polymorphic structures.
Sustainable Energy Fuels, 2026,10, 99-118
https://doi.org/10.1039/D5SE01095K
Research advances and future perspectives in Fischer–Tropsch synthesis for sustainable aviation fuel
This paper systematically reviews how aviation kerosene's composition affects its properties, analyzes Fischer–Tropsch specifications in ASTM D7566, and offers a summary and outlook on sustainable aviation fuel (SAF) trends.
Sustainable Energy Fuels, 2026,10, 42-55
https://doi.org/10.1039/D5SE01412C
Emerging technologies for coal mine methane mitigation with different integration strategies for effective recovery of CH4
This review provides various aspects of capturing CMM to address global environmental issues. Different separration methods were summarized for reducing coal mine methane emissions, which benefits the mining industry and contributes to a low-carbon economy.
Sustainable Energy Fuels, 2026,10, 14-41
https://doi.org/10.1039/D5SE01132A
Perspective of an external magnetic field-assisted catalytic process for green H2 generation and CO2 conversion
A comprehensive review on the advantageous perspective of magnetic field induced catalytic water splitting and CO2 conversion.
Sustainable Energy Fuels, 2026,10, 119-136
https://doi.org/10.1039/D5SE01452B
Translational potential of CuSe nanostructures as advanced energy materials: fundamental insights and emerging multifunctional solar energy conversion applications
This review deals with promising CuSe semiconductor materials, their synthesis and applications as advanced energy materials.
Sustainable Energy Fuels, 2026,10, 56-98
https://doi.org/10.1039/D5SE01167A
About this collection
In addition to high-quality on sustainable energy technology, Sustainable Energy & Fuels publishes topical reviews and perspectives. Reviews will be added to this webpage as soon as possible after publication.