Themed collection Research advancing UN SDG 7: Affordable and clean energy

197 items - Showing page 1 of 3
Open Access Perspective

Advancing Fe–N–C catalysts: synthesis strategies and performance enhancements for fuel cell applications

Schematic of a PEM fuel cell with a Pt/C anode and Fe–N–C cathode: H2 is oxidized at the anode, electrons flow through the external circuit, proton pass through the polymer membrane, and O2 is reduced at the cathode.

Graphical abstract: Advancing Fe–N–C catalysts: synthesis strategies and performance enhancements for fuel cell applications
Open Access Perspective

Battery electrode slurry rheology and its impact on manufacturing

Slurry rheology is a critical metrology tool for understanding and optimising the manufacture of battery electrodes.

Graphical abstract: Battery electrode slurry rheology and its impact on manufacturing
From the themed collection: Energy Advances Recent Review Articles
Open Access Perspective

Evaluation of redox pairs for low-grade heat energy harvesting with a thermally regenerative cycle

We present a comprehensive survey of the redox couples and end up with 81 different electrolyte combinations to highlight the untapped potential of the thermally regenerative electrochemical cycle.

Graphical abstract: Evaluation of redox pairs for low-grade heat energy harvesting with a thermally regenerative cycle
Open Access Perspective

Powering the future: Germany's Wasserstoffstrategie in the transition to climate neutrality – case study on green hydrogen for the chemical industry

Analysis and calculation of Germany's climate politics and hydrogen strategy, with a focus on the technical demand for hydrogen implementation through a case study of the chemical industry that engages multiple stakeholders.

Graphical abstract: Powering the future: Germany's Wasserstoffstrategie in the transition to climate neutrality – case study on green hydrogen for the chemical industry
Open Access Perspective

Efficiency in photocatalytic production of hydrogen: energetic and sustainability implications

The efficiency of hydrogen generation through photocatalytic processes is analyzed from a dual perspective considering energetic and sustainability implications.

Graphical abstract: Efficiency in photocatalytic production of hydrogen: energetic and sustainability implications
From the themed collection: Energy Advances Recent Review Articles
Open Access Perspective

Quinacridone dyes: versatile molecules and materials for photo- and photoelectrochemical processes

We discuss the versatility of quinacridone pigment in photocatalysis, embracing water splitting, carbon dioxide reduction and organic synthesis. Applications include homogeneous catalysis, nanoparticles, covalent organic frameworks, photoelectrodes.

Graphical abstract: Quinacridone dyes: versatile molecules and materials for photo- and photoelectrochemical processes
Open Access Perspective

The energy storage application of core-/yolk–shell structures in sodium batteries

Materials with a core–shell and yolk–shell structure have attracted considerable attention owing to their attractive properties for application in Na batteries and other electrochemical energy storage systems.

Graphical abstract: The energy storage application of core-/yolk–shell structures in sodium batteries
From the themed collection: Energy Advances Recent Review Articles
Open Access Perspective

Biofuels and hydrogen production: back to the Langmuir–Blodgett approach for large-scale structuration of Bi-based photoelectrodes

This perspective article highlights the good potentiality for the Langmuir Blodgett technique to produce massively BiVO4 based photoelectrodes for biomass valorization and hydrogen production in the context of Brazil's decarbonation.

Graphical abstract: Biofuels and hydrogen production: back to the Langmuir–Blodgett approach for large-scale structuration of Bi-based photoelectrodes
From the themed collection: Energy Advances Recent Review Articles
Open Access Perspective

Advancements in cathode materials for potassium-ion batteries: current landscape, obstacles, and prospects

This perspective highlights progress in the development of cathode materials for potassium-ion batteries, whilst providing valuable insights into unexplored compositional spaces that can be pursued for high-performance electrode materials.

Graphical abstract: Advancements in cathode materials for potassium-ion batteries: current landscape, obstacles, and prospects
Open Access Perspective

Interfacial engineering of lithium metal anodes: what is left to uncover?

Interfacial engineering plays a key role in solving the reactivity puzzle of lithium metal batteries. Here, we discuss the interfacial engineering pieces that are in place and the ones that still need to be fitted.

Graphical abstract: Interfacial engineering of lithium metal anodes: what is left to uncover?
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

Aqueous rechargeable aluminum battery – a mini review

Rechargeable aqueous aluminum ion batteries are the promising candidate as the next-generation rechargeable battery due to its enhanced theoretical specific energy, low material cost, raw material availability and simple manufacturing process.

Graphical abstract: Aqueous rechargeable aluminum battery – a mini review
Open Access Review Article

Synthetic biology and metabolic engineering paving the way for sustainable next-gen biofuels: a comprehensive review

This review highlights how synthetic biology and metabolic engineering are revolutionizing biofuel production through engineered microbes, sustainable feedstock, and AI-driven optimization strategies.

Graphical abstract: Synthetic biology and metabolic engineering paving the way for sustainable next-gen biofuels: a comprehensive review
Open Access Review Article

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.

Graphical abstract: Unlocking catalytic longevity: a critical review of catalyst deactivation pathways and regeneration technologies
Open Access Review Article

Advances in supported monometallic and bimetallic catalysts towards green aviation fuels: a review

This article aims to highlight the use of heterogeneous bimetallic acid/base catalysts for the production of safe aviation fuels from environmentally friendly and non-edible palm kernel oil.

Graphical abstract: Advances in supported monometallic and bimetallic catalysts towards green aviation fuels: a review
Open Access Review Article

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.

Graphical abstract: A comprehensive review of lithium-ion battery components degradation and operational considerations: a safety perspective
From the themed collection: Energy Advances Recent HOT Articles, 2025
Open Access Review Article

Composite revolution: unleashing the potential of polymers in sustainable energy and environmental applications

Tackling energy and environmental needs requires efficient catalysts. Polymer composites are good candidates for sustainable energy and environmental applications like supercapacitors, water splitting, adsorption, and corrosion inhibition studies.

Graphical abstract: Composite revolution: unleashing the potential of polymers in sustainable energy and environmental applications
Open Access Review Article

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.

Graphical abstract: Interface engineering strategies for enhanced electrocatalytic hydrogen evolution reaction
Open Access Review Article

Recent advances in lanthanide-based metal–organic frameworks for photocatalytic hydrogen evolution applications

A comprehensive review of techniques and emerging trends in lanthanide-based MOFs for photocatalytic hydrogen evolution via water splitting.

Graphical abstract: Recent advances in lanthanide-based metal–organic frameworks for photocatalytic hydrogen evolution applications
Open Access Review Article

Nano-engineering halide perovskites: towards energy harvesting, nano-plasmonic sensing and photoflexoelectric applications

Halide perovskites can be classified as (1) organic inorganic hybrid and (2) inorganic halide perovskites.

Graphical abstract: Nano-engineering halide perovskites: towards energy harvesting, nano-plasmonic sensing and photoflexoelectric applications
Open Access Review Article

Plastic waste gasification for low-carbon hydrogen production: a comprehensive review

A comprehensive review of low-carbon hydrogen production via plastic waste gasification.

Graphical abstract: Plastic waste gasification for low-carbon hydrogen production: a comprehensive review
Open Access Review Article

Impact of powder and electrode ALD coatings on the performance of intercalation cathodes for lithium–ion batteries

This article reviews the electrochemical performance of intercalation cathodes enhanced by the development of surface coatings via atomic layer deposition.

Graphical abstract: Impact of powder and electrode ALD coatings on the performance of intercalation cathodes for lithium–ion batteries
Open Access Review Article

Exploring the spectrum: an environmental examination of hydrogen's diverse colors

Hydrogen is emerging as an immense source of energy having the potential to at least partly replace fossil fuels.

Graphical abstract: Exploring the spectrum: an environmental examination of hydrogen's diverse colors
Open Access Review Article

Composite solid-state electrolytes for all solid-state lithium batteries: progress, challenges and outlook

Composite solid-state electrolytes (CSEs) with multiple phases offer greater flexibility to customize and combine the advantages of single-phase electrolytes, making them promising candidates for commercial all-solid-state batteries (ASSBs).

Graphical abstract: Composite solid-state electrolytes for all solid-state lithium batteries: progress, challenges and outlook
Open Access Review Article

Semitransparent organic and perovskite photovoltaics for agrivoltaic applications

Combining agriculture and solar energy offers a promising solution for communities to support their food needs sustainably. Organic and perovskite semitransparent photovoltaics can be potential game changers in agrivoltaics applications.

Graphical abstract: Semitransparent organic and perovskite photovoltaics for agrivoltaic applications
Open Access Review Article

Zinc–iron (Zn–Fe) redox flow battery single to stack cells: a futuristic solution for high energy storage off-grid applications

Decoupling of energy and power; depth of discharge; flexible in design; high safety; recyclable.

Graphical abstract: Zinc–iron (Zn–Fe) redox flow battery single to stack cells: a futuristic solution for high energy storage off-grid applications
Open Access Review Article

Fabrication methods, pseudocapacitance characteristics, and integration of conjugated conducting polymers in electrochemical energy storage devices

Conducting polymers are gaining significant attention in electrochemical energy storage devices for their unique ionic/electronic conduction and redox pseudocapacitance characteristics.

Graphical abstract: Fabrication methods, pseudocapacitance characteristics, and integration of conjugated conducting polymers in electrochemical energy storage devices
Open Access Review Article

Recent advances in in situ/operando characterization of lithium–sulfur batteries

We review the recent literature on spectroscopic/electrochemical operando methods as they are increasingly being applied to understand lithium–sulfur batteries.

Graphical abstract: Recent advances in in situ/operando characterization of lithium–sulfur batteries
Open Access Review Article

Trends in the energy and environmental applications of metal–organic framework-based materials

Over the past 20 years, metal–organic framework (MOF) nanosheets have garnered a great deal of interest in the fields of energy and environmental management because of their inherent extraordinary qualities.

Graphical abstract: Trends in the energy and environmental applications of metal–organic framework-based materials
Open Access Review Article

Looking beyond biology: glycosaminoglycans as attractive platforms for energy devices and flexible electronics

Glycosaminoglycans have quietly transitioned from biomaterials to advanced functional materials for energy devices and flexible electronics. Gathered here are 45 years of research highlighting both fundamental studies and recent advances and trends.

Graphical abstract: Looking beyond biology: glycosaminoglycans as attractive platforms for energy devices and flexible electronics
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

Challenges and opportunities using Ni-rich layered oxide cathodes in Li-ion rechargeable batteries: the case of nickel cobalt manganese oxides

Doping, coating, surface modification, formation of composites and control of crystalline orientation can control the capacity retention of Ni-rich cathodes. Furthermore, the design of Co-free Ni-rich cathodes may provide a cost-effective solution.

Graphical abstract: Challenges and opportunities using Ni-rich layered oxide cathodes in Li-ion rechargeable batteries: the case of nickel cobalt manganese oxides
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

Recent progress in 2D inorganic non-conductive materials for alkali metal-based batteries

The recent progress in the strategies for the preparation of 2D inorganic non-conductive materials and their and application in alkali metal-based batteries is summarized in this review.

Graphical abstract: Recent progress in 2D inorganic non-conductive materials for alkali metal-based batteries
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

A review on the recent advances in the design and structure–activity relationship of TiO2-based photocatalysts for solar hydrogen production

The recent progress in visible light driven photocatalysis by describing the integration of TiO2 with variety of materials, and how it helps in tailoring electronic, structural and optical properties towards improved solar H2 production activity.

Graphical abstract: A review on the recent advances in the design and structure–activity relationship of TiO2-based photocatalysts for solar hydrogen production
Open Access Review Article

Evaluation of zinc sulfide heterostructures as catalysts for the transformation of CO2 into valuable chemicals and clean energy generation

Zinc sulfide (ZnS) and doped ZnS have gained significant attention for the potential catalytic transformation of CO2 into useful compounds.

Graphical abstract: Evaluation of zinc sulfide heterostructures as catalysts for the transformation of CO2 into valuable chemicals and clean energy generation
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

A review on the transition from conventional to bipolar designs of anode-less all-solid-state batteries

The review article discusses the transition from conventional battery to next-generation bipolar designs of anode-less all-solid-state batteries. The key elements, components and related technologies involved are discussed.

Graphical abstract: A review on the transition from conventional to bipolar designs of anode-less all-solid-state batteries
Open Access Review Article

Soft carbon in non-aqueous rechargeable batteries: a review of its synthesis, carbonization mechanism, characterization, and multifarious applications

Soft carbon is a special class of carbon materials having tunable physical properties that makes it suitable for various battery applications.

Graphical abstract: Soft carbon in non-aqueous rechargeable batteries: a review of its synthesis, carbonization mechanism, characterization, and multifarious applications
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

Rechargeable iron-ion (Fe-ion) batteries: recent progress, challenges, and perspectives

With the ever-increasing demand for efficient and sustainable energy solutions, rechargeable Fe-ion batteries have emerged as a viable alternative to conventional rechargeable batteries.

Graphical abstract: Rechargeable iron-ion (Fe-ion) batteries: recent progress, challenges, and perspectives
Open Access Review Article

Recent trends on the application of phytochemical-based compounds as additives in the fabrication of perovskite solar cells

Phytochemical-based additives have functional groups that can modulate the nucleation and crystallization process of perovskite films resulting in improved optoelectronic and degradation resistance.

Graphical abstract: Recent trends on the application of phytochemical-based compounds as additives in the fabrication of perovskite solar cells
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

Possibilities and challenges of cathode materials for Zn-ion batteries

This thorough review explores the potential and obstacles related to cathode materials for zinc-ion batteries (ZIBs), providing insights into recent advancements, significant concerns, and prospective developments.

Graphical abstract: Possibilities and challenges of cathode materials for Zn-ion batteries
From the themed collection: Energy Advances Recent Review Articles
Open Access Review Article

MXene–carbon based hybrid materials for supercapacitor applications

Designing hybrid materials with superior electrochemical properties has attracted tremendous interest in recent years for energy-storage applications owing to a high demand for energy sources and the depletion of fossil fuel resources.

Graphical abstract: MXene–carbon based hybrid materials for supercapacitor applications
Open Access Review Article

Recent advances and perspectives of Ir-based anode catalysts in PEM water electrolysis

Recent advances and perspectives of Ir-based anode catalysts in PEM water electrolysis are highlighted, and it is concluded that the anti-dissolution and stability improvement of Ir active species should be carefully considered for catalyst design in the future.

Graphical abstract: Recent advances and perspectives of Ir-based anode catalysts in PEM water electrolysis
From the themed collection: Energy Advances Recent Review Articles
Open Access Communication

Comparative stability of the solid electrolyte interphase in potassium and sodium batteries

The solid electrolyte interphase (SEI) stability is higher in 1 M NaPF6 compared to 1 M KPF6 in common carbonate solvents. Battery electrolyte SEI stability was investigated by model systems and chemical analysis of the surface and electrolyte.

Graphical abstract: Comparative stability of the solid electrolyte interphase in potassium and sodium batteries
Open Access Communication

Low-melting, ether-functionalised lithium salts for enhanced ion transport in molten salt electrolytes

Ether-functionalised Li salts show low melting points, high ionic conductivity, and high Li ion transference number, enabling high-performance solvent-free molten electrolytes.

Graphical abstract: Low-melting, ether-functionalised lithium salts for enhanced ion transport in molten salt electrolytes
Open Access Communication

Enhancing oxygen evolution performances of NiO-based electrocatalysts through synergistic plasma processing and laser treatment

Engineering of NiO-based electrocatalysts for enhanced oxygen evolution has been demonstrated by a combined plasma synthesis and ex situ laser treatment.

Graphical abstract: Enhancing oxygen evolution performances of NiO-based electrocatalysts through synergistic plasma processing and laser treatment
Open Access Communication

Interfacial halogen bonding with charge-transport layers for operational stability of hybrid perovskite solar cells

We rely on halogen bonding at the interface with charge-transport layers using 1,4-diiodotetrafluorobenzene with TiO2 and iodo-Zn–phthalocyanine with spiro-OMeTAD interfaces, showcasing the potential of halogen bonding in perovskite photovoltaics.

Graphical abstract: Interfacial halogen bonding with charge-transport layers for operational stability of hybrid perovskite solar cells
Open Access Communication

Contribution of organic carotenoid and carbonaceous biomass of Tagetes erecta flowers for enhanced solar hydrogen generation

Use of the Tagetes erecta–CdS photocatalytic system for water splitting increases activity to 35 mmol g−1 h−1, which is about 7 times higher than that of CdS.

Graphical abstract: Contribution of organic carotenoid and carbonaceous biomass of Tagetes erecta flowers for enhanced solar hydrogen generation
Open Access Communication

Effects of annealing conditions on the battery anode properties of multilayer graphene due to layer exchange

Annealing conditions in layer-exchange synthesis affect multilayer graphene's crystallinity and anode performance. Synthesis at 400 °C showed excellent capacity retention and fast charging, paving the way for high-performance thin-film batteries.

Graphical abstract: Effects of annealing conditions on the battery anode properties of multilayer graphene due to layer exchange
Open Access Communication

Room-temperature, one-step synthesis of Mn3O4 nanoparticles using morpholine as a complexing and precipitating agent: toward a cathode material for zinc-ion batteries

This study presents an eco-friendly synthesis of Mn3O4 nanoparticles via a 24-hour room-temperature reaction with morpholine and manganese nitrate. As a zinc-ion battery cathode, Zn//Mn3Oshowed a 209.7 mAh g−1 capacity after 300 cycles at 0.6 A g−1.

Graphical abstract: Room-temperature, one-step synthesis of Mn3O4 nanoparticles using morpholine as a complexing and precipitating agent: toward a cathode material for zinc-ion batteries
Open Access Communication

Organometallic synthesis of a high-density Pt single atom catalyst on nickel for the alkaline hydrogen evolution reaction

Single atom platinum catalysts, characterized by isolated Pt atoms dispersed on suitable supports, exhibit high hydrogen evolution catalytic mass activity.

Graphical abstract: Organometallic synthesis of a high-density Pt single atom catalyst on nickel for the alkaline hydrogen evolution reaction
Open Access Communication

Investigating the ion conductivity and synthesis conditions of calcium monocarborane solid-state electrolytes

Multivalent-ion and all-solid-state batteries have emerged as potential solutions to address resource concerns and safety issues.

Graphical abstract: Investigating the ion conductivity and synthesis conditions of calcium monocarborane solid-state electrolytes
Open Access Communication

Electrochemical-catalytic NH3 synthesis from H2O and N2 using an electrochemical cell with a Ru catalyst, Pd–Ag membrane cathode, and NaOH–KOH molten salt electrolyte at 250 °C

At 250 °C, using an electrochemical setup with a Ru catalyst, Pd alloy H2-permeable membrane cathode, NaOH–KOH molten salt electrolyte, and Ni anode, NH3 was synthesized from H2O and N2 with 30 mA cm−2 current density of and 25% current efficiency.

Graphical abstract: Electrochemical-catalytic NH3 synthesis from H2O and N2 using an electrochemical cell with a Ru catalyst, Pd–Ag membrane cathode, and NaOH–KOH molten salt electrolyte at 250 °C
Open Access Communication

Fabrication of nanocrystalline high-entropy oxide CoNiFeCrMnOx thin film electrodes by dip-coating for oxygen evolution electrocatalysis

Nanocrystalline high-entropy CoNiFeCrMnOx thin films were prepared by dip-coating and annealing at 400 °C, showing stable oxygen evolution with overpotentials of 258 mV VS. RHE at 10 mA cm−2 over 10 hours in alkaline media.

Graphical abstract: Fabrication of nanocrystalline high-entropy oxide CoNiFeCrMnOx thin film electrodes by dip-coating for oxygen evolution electrocatalysis
Open Access Communication

Enhancing perovskite solar cell efficiency and stability through the incorporation of BDAI2 and DMPDAI2

This research explores the incorporation of 2D materials, BDAI2 and DMPDAI2, into perovskite solar cells, demonstrating enhanced efficiency and stability in the resulting devices.

Graphical abstract: Enhancing perovskite solar cell efficiency and stability through the incorporation of BDAI2 and DMPDAI2
From the themed collection: Highlights in solar cells
Open Access Communication

Optical and X-ray absorption interrogation of selenium-based redox in Li–SxSey batteries

In situ X-ray absorption spectroscopy and optical imaging confirm the role of selenium additives for enhancing power performance, increasing utilization, and suppressing undesirable side reactions in Li–sulphur batteries.

Graphical abstract: Optical and X-ray absorption interrogation of selenium-based redox in Li–SxSey batteries
Open Access Communication

Tailored nonwoven supported non-flammable quasi-solid electrolyte enables an ultra-stable sodium metal battery

We present an easily scalable approach to developing a nonwoven-supported PVDF-HFP polymer-based quasi-solid-state flexible non-flammable electrolyte, with a conductivity of 1.16 × 10−4 S cm−1 at RT with a transfer number of 0.68.

Graphical abstract: Tailored nonwoven supported non-flammable quasi-solid electrolyte enables an ultra-stable sodium metal battery
Open Access Communication

Metastability and polymorphism in dihydroxybenzenes – implications for thermal energy storage

State-of-the-art experimental and computational techniques have been used to explore the effects of molecular isomerism on the phase behaviour of the three dihydroxybenzenes catechol, resorcinol, and hydroquinone.

Graphical abstract: Metastability and polymorphism in dihydroxybenzenes – implications for thermal energy storage
Open Access Accepted Manuscript - Paper

Highly active Cu-freudenbergite/TiO2 heterojunction for solar-driven hydrogen evolution and 5-hydroxymethylfurfural oxidation

Open Access Paper

Heterogeneous aging in a multi-cell lithium-ion battery system driven by manufacturing-induced variability in electrode microstructure: a physics-based simulation study

Microstructural variations across cells in a pack, specifically in terms of active material particle size, can cause uneven aging of the cells, with cells having smaller particles showing faster capacity loss due to accelerated SEI growth.

Graphical abstract: Heterogeneous aging in a multi-cell lithium-ion battery system driven by manufacturing-induced variability in electrode microstructure: a physics-based simulation study
Open Access Paper

Tungsten nitride on a porous carbon support as a highly durable electrocatalyst for the hydrogen evolution reaction

The δ-WN-carbon composite as the cathode materials for the hydrogen evolution reaction in the acidic and alkaline electrolyte.

Graphical abstract: Tungsten nitride on a porous carbon support as a highly durable electrocatalyst for the hydrogen evolution reaction
Open Access Paper

Advanced fault detection in PV panels using deep neural networks: leveraging transfer learning and electroluminescence image processing

An ML framework detects faults in PV panels from their unlabeled EL images using transfer learning, k-means labeling, and data augmentation. CNN models achieve 98–99.5% accuracy for binary classification, reducing manual labeling and improving PV system reliability.

Graphical abstract: Advanced fault detection in PV panels using deep neural networks: leveraging transfer learning and electroluminescence image processing
Open Access Paper

Integration of multiwalled carbon nanotubes with MoS2/BiFeO3: a hybrid matrix for high-energy asymmetric supercapacitors

Multiwalled carbon nanotubes integrated iFeO3/MoS2: a promising hybrid matrix for high-efficiency energy storage applications.

Graphical abstract: Integration of multiwalled carbon nanotubes with MoS2/BiFeO3: a hybrid matrix for high-energy asymmetric supercapacitors
From the themed collection: Energy Advances Recent HOT Articles, 2025
Open Access Paper

Simple and scalable solvent-free PEO based electrolyte fabrication by kneading for all solid state lithium sulfur batteries

Within this research, a solvent-free polymer-based solid electrolyte was prepared by kneading and applied in different thicknesses for lithium sulfur cells. The cycling performance was analyzed by EIS, DSC and SEM-EDX post-mortem analysis.

Graphical abstract: Simple and scalable solvent-free PEO based electrolyte fabrication by kneading for all solid state lithium sulfur batteries
Open Access Paper

Enhancing the durability of Au-coated Ti porous transport layers (PTLs) with a thin Pt top layer for PEM water electrolyzer applications

A bilayer coating prepared by sputtering a thin Pt film on Au-electroplated Ti PTL, prevented TiOx formation, ensure low interfacial contact resistance and long-term stability. The PEMWE cell performance of 1.716 V at 2.0 A cm−2 was achieved.

Graphical abstract: Enhancing the durability of Au-coated Ti porous transport layers (PTLs) with a thin Pt top layer for PEM water electrolyzer applications
From the themed collection: Energy Advances Recent HOT Articles, 2025
Open Access Paper

Designing hydrophobic, anti-soiling coatings for solar module cover glass: degradation mechanisms to avoid

In-depth XPS was used to identify the degradation mechanisms of hydrophobic coatings used for solar modules. Oxygen found in the central chain resulted in performance losses due to β chain scission in UV exposure, and hydrolyzation in during damp.

Graphical abstract: Designing hydrophobic, anti-soiling coatings for solar module cover glass: degradation mechanisms to avoid
Open Access Paper

Analysis of short-circuit current suppression mediated by strategically optimized buffer layer thickness in heterojunction solar cells

The ever-growing global energy crisis and alarming environmental degradation have intensified the search for sustainable energy alternatives, with solar technology standing at the forefront of this revolution.

Graphical abstract: Analysis of short-circuit current suppression mediated by strategically optimized buffer layer thickness in heterojunction solar cells
Open Access Paper

Ambient-processed semitransparent perovskite solar cells from eco-friendly solvents

A simple spin-coating speed-tuning approach for safer-solvent ambient-processed perovskite thin film can lead to semitransparent solar cells. The study compares DMSO with the traditional DMF:DMSO for semitransparent perovskite thin films and devices.

Graphical abstract: Ambient-processed semitransparent perovskite solar cells from eco-friendly solvents
Open Access Paper

Efficient electroreduction of CO2 to C1 and C2 products using atomically dispersed boron N–C@graphite catalysts

Boron NC@graphite catalysts function as efficient, noble-metal-free electrocatalysts for CO2 conversion to CO and C1/C2 products. Boron subphthalocyanines represent a new, scalable class of molecular electrocatalysts.

Graphical abstract: Efficient electroreduction of CO2 to C1 and C2 products using atomically dispersed boron N–C@graphite catalysts
Open Access Paper

Fluorine-free dialkylphosphate-based ionic liquids as supercapacitor electrolytes

We introduce several fluorine-free ionic liquids (ILs) comprising dialkylphosphate anions coupled to pyrrolidinium, piperidinium, and pyridinium cations. These ILs exhibit promising performance as supercapacitor electrolytes.

Graphical abstract: Fluorine-free dialkylphosphate-based ionic liquids as supercapacitor electrolytes
Open Access Paper

Performance enhancement of inverted perovskite solar cells through lithium-ion diffusion from the nickel oxide hole transport layer to the perovskite absorber

Doping lithium into nickel oxide not only improves its electrical conductivity but also facilitates lithium-ion diffusion into the perovskite, enhancing the quality of the absorber and, consequently, the performance of the solar cell.

Graphical abstract: Performance enhancement of inverted perovskite solar cells through lithium-ion diffusion from the nickel oxide hole transport layer to the perovskite absorber
From the themed collection: Energy Advances Recent HOT Articles, 2025
Open Access Paper

Interface layer chemistry dependent oxygen defect formation in BaZrO3(110)/SrTiO3(100) heterostructures

Mismatched complex oxide thin films and heterostructures based on perovskites have key applications in technologies such as solid oxide fuel cells, batteries, and solar cells because of emerging properties at the interface.

Graphical abstract: Interface layer chemistry dependent oxygen defect formation in BaZrO3(110)/SrTiO3(100) heterostructures
From the themed collection: Energy Advances Recent HOT Articles, 2025
Open Access Paper

High-throughput methods to design deformable recrystallized boracite solid electrolytes: challenges and solutions

Cl-containing boracites are produced in high-throughput for the first time by overcoming extreme elemental loss. New mechanisms for material degradation are uncovered including reactions with humid air.

Graphical abstract: High-throughput methods to design deformable recrystallized boracite solid electrolytes: challenges and solutions
197 items - Showing page 1 of 3

About this collection

This collection highlights some of our recent Energy Advances articles focussing on Sustainable Development Goal 7 (SDG 7) and encompasses a diverse range of research and insights centred on "Affordable and Clean Energy." The research includes a comprehensive examination of the challenges, opportunities, and potential pathways toward achieving universal access to affordable, reliable, and modern energy services while advancing sustainability and mitigating climate change impacts.

To contribute to this collection, please visit our submission platform, and select UN SDG 7 when completing the manuscript details.

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