Themed collection Recent Open Access Articles

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Open Access Perspective

A geothermal energy techno-economic analysis for downhole wellbore hydrogen production from biogas with subsurface carbon retention

Improving overall resource efficiency enhances energy security.

Graphical abstract: A geothermal energy techno-economic analysis for downhole wellbore hydrogen production from biogas with subsurface carbon retention
From the themed collection: Recent Open Access Articles
Open Access Perspective

Navigating the challenges of global NOx emissions throughout the energy transition: state of play and outlook

The use of renewable fuels will exacerbate nitrogen oxide emissions, damaging the climate, environment, and human health. Sustainable technologies in development must replace current abatement techniques.

Graphical abstract: Navigating the challenges of global NOx emissions throughout the energy transition: state of play and outlook
From the themed collection: Recent Open Access Articles
Open Access Perspective

Overcoming the energy–water nexus in dry regions – water-positive production of green hydrogen carriers and base chemicals: the DryHy project – technical aspects

This article investigates the water-conscious production of green methanol in sunny and dry regions, leveraging direct air capture, photovoltaic power, and solid oxide electrolysis.

Graphical abstract: Overcoming the energy–water nexus in dry regions – water-positive production of green hydrogen carriers and base chemicals: the DryHy project – technical aspects
From the themed collection: Recent Open Access Articles
Open Access Perspective

An intelligent battery management system (BMS) with end-edge-cloud connectivity – a perspective

An Intelligent Battery Management System (IBMS) integrating cloud, IoT, and digital twin technologies, offering scalable, real-time battery management was developed to enhance safety, performance, and lifespan of lithium-ion batteries in EVs.

Graphical abstract: An intelligent battery management system (BMS) with end-edge-cloud connectivity – a perspective
From the themed collection: Recent Open Access Articles
Open Access Perspective

An overview of various critical aspects of low-cobalt/cobalt-free Li-ion battery cathodes

Production of low-cobalt/cobalt-free cathodes, recycling, continuous manufacturing and fast-charging ability is important. They determine the cell manufacturing cost, supply-chain stability, environmental benignity.

Graphical abstract: An overview of various critical aspects of low-cobalt/cobalt-free Li-ion battery cathodes
From the themed collection: Recent Open Access Articles
Open Access Perspective

Future perspectives in green hydrogen production by catalyzed sono-photolysis of water

Ultrasound-induced cavitation and dispersed photocatalysts synergistically decompose water into hydrogen, offering higher efficiency. Reasons and future research avenues are explored.

Graphical abstract: Future perspectives in green hydrogen production by catalyzed sono-photolysis of water
From the themed collection: Recent Open Access Articles
Open Access Perspective

To flow or not to flow. A perspective on large-scale stationary electrochemical energy storage

Schematic comparative diagram of the stages involved in moving from compact solid electrode materials to dilute nanofluids and RFB solutions.

Graphical abstract: To flow or not to flow. A perspective on large-scale stationary electrochemical energy storage
From the themed collection: Recent Open Access Articles
Open Access Perspective

Electrochemical CO2 conversion technologies: state-of-the-art and future perspectives

The current status and prospects of six routes to electrochemically convert CO2 into different products are investigated. The study includes for each of these routes an analysis of the costs and of the emissions related to electricity use.

Graphical abstract: Electrochemical CO2 conversion technologies: state-of-the-art and future perspectives
From the themed collection: Recent Open Access Articles
Open Access Perspective

Current state of biogas and biomethane production and its implications for Spain

In Spain, biomethane is emerging as one of the great keys, not only for the transformation of the energy mix in the short term, but also to advance towards the decarbonisation of the economy.

Graphical abstract: Current state of biogas and biomethane production and its implications for Spain
From the themed collection: Recent Open Access Articles
Open Access Perspective

What is necessary to fill the technological gap to design sustainable dye-sensitized solar cells?

Analysis of properties and data – both known and missing – related to materials selection, life cycle assessment, and end-of-life reuse and recycling options for device components to achieve a sustainable design of dye-sensitized solar cells.

Graphical abstract: What is necessary to fill the technological gap to design sustainable dye-sensitized solar cells?
From the themed collection: Recent Open Access Articles
Open Access Communication

Enhanced performance of all-solid-state rechargeable air batteries with a redox-active naphthoquinone-based polymer electrode

All-solid-state rechargeable air batteries (SSABs) utilizing a novel naphthoquinone-based redoxactive polymer (PPNQ) as the negative electrode material demonstrated exceptional performance.

Graphical abstract: Enhanced performance of all-solid-state rechargeable air batteries with a redox-active naphthoquinone-based polymer electrode
From the themed collection: Green and Sustainable Batteries
Open Access Communication

Unassisted visible-light–driven NADH regeneration based on a dual-photoelectrode system

Visible-light-driven NADH regeneration with a dual-photoelectrode system without external bias was developed.

Graphical abstract: Unassisted visible-light–driven NADH regeneration based on a dual-photoelectrode system
From the themed collection: Recent Open Access Articles
Open Access Communication

Visible-light responsive hydrogen production from formate with a photoredox system using enzymes and colloidal platinum nanoparticles

Visible-light controlled H2 production from formate with the combination system of a biocatalytic process with formate dehydrogenase and a photoredox reaction of water-soluble zinc porphyrin, methylviologen and colloidal platinum nanoparticles was developed.

Graphical abstract: Visible-light responsive hydrogen production from formate with a photoredox system using enzymes and colloidal platinum nanoparticles
From the themed collection: Recent Open Access Articles
Open Access Communication

Electrolyte tuning with low concentrations of additive for dendrite suppression in lithium metal anodes

Lithium metal is considered as an ideal anode for high-energy density storage systems with dendrites being a major issue for lifetime and safety. A gadolinium additive is found to be suppressing dendrite growth resulting higher performance retention.

Graphical abstract: Electrolyte tuning with low concentrations of additive for dendrite suppression in lithium metal anodes
From the themed collection: Recent Open Access Articles
Open Access Communication

Organic semiconductor nanoparticles for visible-light-driven CO2 conversion

We present an experimental proof-of-concept study of organic semiconductor nanoparticles (NPs) for visible-light-driven carbon dioxide (CO2) conversion.

Graphical abstract: Organic semiconductor nanoparticles for visible-light-driven CO2 conversion
From the themed collection: Recent Open Access Articles
Open Access Communication

Improved photocatalytic carbon dioxide reduction over Bi-doped CeO2 by strain engineering

By creating surface vacancy-dopant-mediated solid frustrated Lewis pairs, efficient photochemical conversion of CO2 to formic acid is achieved on Bi-doped CeO2 in the presence of strain, which is investigated by using density functional theory.

Graphical abstract: Improved photocatalytic carbon dioxide reduction over Bi-doped CeO2 by strain engineering
From the themed collection: Recent Open Access Articles
Open Access Communication

From brew to clean fuel: harnessing distillery wastewater for electrolysis H2 generation using nano scale nickle selenide water oxidation catalysts

This study unveils a promising and innovative strategy for electrochemical green H2 generation utilizing distillery industry wastewater. Investigating simultaneous electrochemical processes, it offers a sustainable solution for wastewater treatment and energy production.

Graphical abstract: From brew to clean fuel: harnessing distillery wastewater for electrolysis H2 generation using nano scale nickle selenide water oxidation catalysts
From the themed collection: Recent Open Access Articles
Open Access Communication

Methane synthesis from CO2 and H2O using electrochemical cells with polymer electrolyte membranes and Ru catalysts at around 120 °C: a comparative study to a phosphate-based electrolyte cell

A polymer-electrolyte electrochemical cell, equipped with a Ru/ZrO2 catalyst at 120 °C, converts CO2 and H2O into CH4 and O2 with a current efficiency of 85%.

Graphical abstract: Methane synthesis from CO2 and H2O using electrochemical cells with polymer electrolyte membranes and Ru catalysts at around 120 °C: a comparative study to a phosphate-based electrolyte cell
From the themed collection: Recent Open Access Articles
Open Access Communication

Core–shell Fe3O4@CoFe2O4 nanoparticles as high-performance anode catalysts for enhanced oxygen evolution reaction

Core–shell transition metal oxide nanoparticles as efficent material for water electrolysis.

Graphical abstract: Core–shell Fe3O4@CoFe2O4 nanoparticles as high-performance anode catalysts for enhanced oxygen evolution reaction
From the themed collection: Recent Open Access Articles
Open Access Paper

Experimental and computational analysis of Ni–P and Fe–P metal foams for enhanced hydrogen evolution reaction in alkaline media

Phosphorus-doped Ni and Fe foams as efficient electrocatalysts for hydrogen evolution: a DFT and electrochemical investigation of Ni(111) and Fe(110) surfaces.

Graphical abstract: Experimental and computational analysis of Ni–P and Fe–P metal foams for enhanced hydrogen evolution reaction in alkaline media
From the themed collection: Recent Open Access Articles
Open Access Paper

Fractionation and catalytic upgradation of crude tall oil into sustainable transportation fuels via blending and co-refining

Blending, hydrotreating, and distilling tall oil fatty acids with Canadian refinery feeds offers a sustainable path to produce gasoline, kerosene, and diesel-range fuels, supporting low-carbon fuel goals in commercial transportation.

Graphical abstract: Fractionation and catalytic upgradation of crude tall oil into sustainable transportation fuels via blending and co-refining
From the themed collection: Recent Open Access Articles
Open Access Paper

Methanol and carbon monoxide co-production via methane decomposition: techno-economic and environmental analysis

This study presents the development and optimisation of a co-production process for methanol and carbon monoxide via methane decomposition using Aspen Plus.

Graphical abstract: Methanol and carbon monoxide co-production via methane decomposition: techno-economic and environmental analysis
From the themed collection: Recent Open Access Articles
Open Access Paper

Wider manifestation of low-cost syringe-based printer for realizing printed organic electronic devices and supercapacitors

A low-cost syringe-based printer enables sustainable fabrication of organic solar cells, organic field-effect transistors, and supercapacitors, demonstrating its versatility and potential for scalable, eco-friendly printed electronics.

Graphical abstract: Wider manifestation of low-cost syringe-based printer for realizing printed organic electronic devices and supercapacitors
From the themed collection: Recent Open Access Articles
Open Access Paper

Ferromagnetic–antiferromagnetic interfaces in MAX phase electrocatalysts: a spin-driven platform for enhanced oxygen evolution reaction

The oxygen evolution reaction (OER) is limited by high activation barriers and sluggish kinetics, constraining the efficiency of water electrolysis.

Graphical abstract: Ferromagnetic–antiferromagnetic interfaces in MAX phase electrocatalysts: a spin-driven platform for enhanced oxygen evolution reaction
From the themed collection: Recent Open Access Articles
Open Access Paper

Pinewood and wheat straw bio-oil aqueous phase electrochemical hydrogenation utilising a PtRu/ACC catalyst

Bio-oil from biomass pyrolysis contains a wide range of oxygenated compounds, limiting its direct use as a fuel due to chemical instability and low energy density.

Graphical abstract: Pinewood and wheat straw bio-oil aqueous phase electrochemical hydrogenation utilising a PtRu/ACC catalyst
From the themed collection: Recent Open Access Articles
Open Access Paper

Enhancing thermal comfort and photovoltaic efficiency through thermotropic starch–hydrogel composite membrane integration in sustainable building fenestration

Here, a transparent hydrogel membrane is made from waste potato peels for next-gen smart windows. The material can adjust to temperature, reducing indoor heat, and boosting solar panel efficiency by up to 15%. Our approach is a step forward in energy-efficient, climate-responsive architecture.

Graphical abstract: Enhancing thermal comfort and photovoltaic efficiency through thermotropic starch–hydrogel composite membrane integration in sustainable building fenestration
From the themed collection: Recent Open Access Articles
Open Access Paper

Toward sustainable fuel formulations: thermophysical assessment of a synthetic oxygenated blend formed from hexane + cyclopentyl methyl ether + propan-1-ol

This study provides a comprehensive thermophysical characterization of a new potential oxygenate fuel composed of hexane as a surrogate for fossil fuel, cyclopentyl methyl ether (CPME) as a synthetic fuel, and propan-1-ol as a biofuel.

Graphical abstract: Toward sustainable fuel formulations: thermophysical assessment of a synthetic oxygenated blend formed from hexane + cyclopentyl methyl ether + propan-1-ol
From the themed collection: Recent Open Access Articles
Open Access Paper

A sustainable anode for Na-ion batteries based on holm oak waste-derived hard carbon and lignin binder

In this work, hard carbon active material and lignin binder were produced from holm oak waste feedstock. The obtained materials were used to prepare bio-based anode materials for sodium ion batteries, with promising rate capability and long cycling stability even at high current rates.

Graphical abstract: A sustainable anode for Na-ion batteries based on holm oak waste-derived hard carbon and lignin binder
From the themed collection: Green and Sustainable Batteries
Open Access Paper

Evaluating the industrial potential of emerging biomass pretreatment technologies in bioethanol production and lipid recovery from transgenic sugarcane

The selection of pretreatment methods is critical to achieving high product yields during bioconversion of lignocellulosic biomass.

Graphical abstract: Evaluating the industrial potential of emerging biomass pretreatment technologies in bioethanol production and lipid recovery from transgenic sugarcane
From the themed collection: Recent Open Access Articles
Open Access Paper

Exploring circularity in sorption-enhanced methanol synthesis: a comparative life cycle assessment

SEMS powered by renewable energy achieves 72–96% GHG savings, meeting the RED II sustainability threshold, and 45–93% reduction compared to the conventional process. Most environmental impacts come from electricity demand for water electrolysis.

Graphical abstract: Exploring circularity in sorption-enhanced methanol synthesis: a comparative life cycle assessment
From the themed collection: Recent Open Access Articles
Open Access Paper

Prospective techno-economic assessment of carbon capture & utilization and biobased processes for methanol and ethanol production

A comparison of chemical methanol and microbiological ethanol production routes from various feedstocks (sugar, side-streams, CO2 and biogas) under a prospective 2050 scenario.

Graphical abstract: Prospective techno-economic assessment of carbon capture & utilization and biobased processes for methanol and ethanol production
From the themed collection: Recent Open Access Articles
Open Access Paper

Enhancement of photothermal catalytic activity by suppression of thermal conduction in dry reforming of methane over silica-supported Ni catalysts

Enhanced photothermal dry reforming of methane (PT-DRM) activity is achieved by controlling temperature gradients and promoting direct light absorption at Ni active sites.

Graphical abstract: Enhancement of photothermal catalytic activity by suppression of thermal conduction in dry reforming of methane over silica-supported Ni catalysts
From the themed collection: Recent Open Access Articles
Open Access Paper

A layered double hydroxides/MXene composite based triboelectric nanogenerator for energy harvesting and self-powered electroplating applications

NiAl-LDH/MXene TENG achieved a power density of 36.9 W m−2, enabling efficient energy harvesting. It drives self-powered copper electroplating from biomechanical energy, highlighting promise for sustainable, eco-friendly electronics.

Graphical abstract: A layered double hydroxides/MXene composite based triboelectric nanogenerator for energy harvesting and self-powered electroplating applications
From the themed collection: Recent Open Access Articles
Open Access Paper

Comparative life cycle assessment of lead-free halide perovskite composites/polymer for piezoelectric energy harvesting

This study evaluates environmental impacts of a lead-free halide perovskite/polymer composite versus traditional PZT ceramics, emphasizing the former's sustainability and potential in energy harvesting applications.

Graphical abstract: Comparative life cycle assessment of lead-free halide perovskite composites/polymer for piezoelectric energy harvesting
From the themed collection: Recent Open Access Articles
Open Access Paper

Direct flue gas capture for algae cultivation and subsequent valorization: evaluating life cycle emissions and costs

The article presents the greenhouse gas and cost implications of algae production in a photobioreactor using flue gas directly, and its subsequent valorization. Process sensitivities and design considerations are also discussed to guide future work.

Graphical abstract: Direct flue gas capture for algae cultivation and subsequent valorization: evaluating life cycle emissions and costs
From the themed collection: Recent Open Access Articles
Open Access Paper

How do ambient conditions influence sorbent selection in adsorption-based direct air capture?

This study introduces a simplified, time-dependent, zero-dimension DAC model to optimise sorbent selection based on varying ambient conditions.

Graphical abstract: How do ambient conditions influence sorbent selection in adsorption-based direct air capture?
From the themed collection: Recent Open Access Articles
Open Access Paper

A process simulation study on the impact of electrochemical discharge on the circularity of lithium-ion batteries using new multi-dimensional indicators

Discharging processes of spent lithium-ion batteries (LIBs) were evaluated using statistical entropy analysis (SEA), exergy analysis (ExA), and exentropy, which is a novel multidimensional circularity parameter combining SEA and ExA.

Graphical abstract: A process simulation study on the impact of electrochemical discharge on the circularity of lithium-ion batteries using new multi-dimensional indicators
From the themed collection: Recent Open Access Articles
Open Access Paper

Remarkable power factor improvement in a porous, nanostructured thermoelectric oxide functionalized with viologen molecules

Remarkable 2.5 times improvement in the power factor achieved in a porous thermoelectric oxide functionalized with a viologen molecule.

Graphical abstract: Remarkable power factor improvement in a porous, nanostructured thermoelectric oxide functionalized with viologen molecules
From the themed collection: Recent Open Access Articles
Open Access Paper

Crystallization control of antisolvent-free perovskite films using alkali metal additives for improving efficiency and extending applicability of perovskite solar cells

Crystallization of antisolvent-free perovskite films is controlled using alkali metals. KPF6 enhances efficiency and film uniformity of perovskite solar cells.

Graphical abstract: Crystallization control of antisolvent-free perovskite films using alkali metal additives for improving efficiency and extending applicability of perovskite solar cells
From the themed collection: Recent Open Access Articles
Open Access Paper

Ultra-high efficient lithium recovery via terephthalic acid from spent lithium-ion batteries

Ultra-high efficiency Lithium extraction is achieved through a hydrothermal reaction employing terephthalic acid.

Graphical abstract: Ultra-high efficient lithium recovery via terephthalic acid from spent lithium-ion batteries
From the themed collection: Recent Open Access Articles
Open Access Paper

Single-step solution plasma synthesis of bifunctional CoSn(OH)6–carbon composite electrocatalysts for oxygen evolution and oxygen reduction reactions

Development of efficient bifunctional catalysts for the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) is highly required for the application in rechargeable metal–air batteries.

Graphical abstract: Single-step solution plasma synthesis of bifunctional CoSn(OH)6–carbon composite electrocatalysts for oxygen evolution and oxygen reduction reactions
From the themed collection: Recent Open Access Articles
Open Access Paper

Experimental study on hydrogen-rich fuel generation via ammonia decomposition using a structured catalytic reactor

Higher temperatures and lower flow rates significantly improved the ammonia conversion rate for the monolithic thermo-catalytic reactor.

Graphical abstract: Experimental study on hydrogen-rich fuel generation via ammonia decomposition using a structured catalytic reactor
From the themed collection: Recent Open Access Articles
Open Access Paper

Engineering a hypoxia-tolerant Saccharomyces cerevisiae for rapid ethanol production via co-utilization of glucose and acetic acid and redox-enhanced flocculation

Enhancing the robustness of microbial cell factories is essential for improving both first- and second-generation bioethanol production.

Graphical abstract: Engineering a hypoxia-tolerant Saccharomyces cerevisiae for rapid ethanol production via co-utilization of glucose and acetic acid and redox-enhanced flocculation
From the themed collection: Recent Open Access Articles
Open Access Paper

Sustainable oxidation of methane into formic acid using a polarized bioceramic under mild reaction conditions

The conversion of methane into useful chemicals has an enormous interest from both economic and social points of view as it is an important feedstock in chemical industry and is the second most important greenhouse gas contributor to climate change.

Graphical abstract: Sustainable oxidation of methane into formic acid using a polarized bioceramic under mild reaction conditions
From the themed collection: Recent Open Access Articles
Open Access Paper

Dipole orientation-induced interfacial energy level alignment difference in 2D perovskite passivated 3D perovskite by in situ investigation

BAI and BDAI are deposited on the perovskite surface with different energy level alignments. BAI forms a favorable alignment for electron transfer, while BDAI molecules form an additional interfacial dipole that impairs the electron transfer process.

Graphical abstract: Dipole orientation-induced interfacial energy level alignment difference in 2D perovskite passivated 3D perovskite by in situ investigation
From the themed collection: Recent Open Access Articles
Open Access Paper

Polymer nanoparticle photocatalysts realized in non-aqueous solvents

Solvent transfer procedure for moving polymer nanoparticles from water into non-aqueous solvents preserves colloidal stability and charge generation, expanding opportunities for diverse redox photocatalysis.

Graphical abstract: Polymer nanoparticle photocatalysts realized in non-aqueous solvents
From the themed collection: Recent Open Access Articles
Open Access Paper

Stable lithium plating/stripping electrochemistry promoted by a MnO2 modified copper current collector for stable lithium metal anodes

Durable lithium metal anodes with improved plating-stripping stability made possible by MnO2-coated copper current collectors.

Graphical abstract: Stable lithium plating/stripping electrochemistry promoted by a MnO2 modified copper current collector for stable lithium metal anodes
From the themed collection: Recent Open Access Articles
Open Access Paper

Engineering active intermetallic Pt–Zn sites via vapour–solid synthesis for photocatalytic hydrogen production

A series of intermetallic Pt–Zn nanaoparticles decorated on a TiO2 support was designed via direct vapour–solid synthesis approach, and their co-catalytic performance towards the light-driven hydrogen evolution reaction (HER) was investigated.

Graphical abstract: Engineering active intermetallic Pt–Zn sites via vapour–solid synthesis for photocatalytic hydrogen production
From the themed collection: Recent Open Access Articles
Open Access Paper

Quantifying mining requirement and waste for energy sustainability

This study demonstrates the life-cycle assessment of different energy sources-coal, natural gas, solar, wind, nuclear, and hydro-particularly focused on mining activities and waste per given electricity capacity and generation.

Graphical abstract: Quantifying mining requirement and waste for energy sustainability
From the themed collection: Recent Open Access Articles
Open Access Paper

Enhancing the performance of Ni-rich Li[Ni0.88Co0.09Mn0.03]O2 cathode material using surface coating

Schematic representation of the process of dry coating of NCM-88 with GO.

Graphical abstract: Enhancing the performance of Ni-rich Li[Ni0.88Co0.09Mn0.03]O2 cathode material using surface coating
From the themed collection: Recent Open Access Articles
Open Access Paper

Transition metal-based coordination polymers of bipyridyl-ethylene for sunlight-driven photocatalytic CO2 reduction into CO

Transition-metal-based coordination polymers of bipyridyl-ethylene were synthesized, characterized, and evaluated as catalysts for CO2-to-CO reduction under simulated solar irradiation. The cobalt analogue shows a high activity and good selectivity.

Graphical abstract: Transition metal-based coordination polymers of bipyridyl-ethylene for sunlight-driven photocatalytic CO2 reduction into CO
From the themed collection: Recent Open Access Articles
Open Access Paper

Hydrogen bond enhanced electrochemical hydrogenation of benzoic acid over a bimetallic catalyst

This novel observation of hydrogen bonds as a catalytic tool represents a significant advancement in the selective hydrogenation process.

Graphical abstract: Hydrogen bond enhanced electrochemical hydrogenation of benzoic acid over a bimetallic catalyst
From the themed collection: Recent Open Access Articles
Open Access Paper

Immobilisation of a molecular iridium complex on periodic mesoporous organosilica for heterogeneous water oxidation catalysis

Heterogenised half-sandwich IrIII molecular catalysts as efficient heterogeneous water oxidation catalysts for artificial photosynthesis.

Graphical abstract: Immobilisation of a molecular iridium complex on periodic mesoporous organosilica for heterogeneous water oxidation catalysis
From the themed collection: Recent Open Access Articles
Open Access Paper

Strong impacts of inter-π-chain charge transfer accelerating CO2 reduction photocatalysis of carbazole–diimine-based linear conjugated polymer/Ru complex hybrids

Manipulation of photoexcited charge transportation via modulation of polymer structures significantly improved the photocatalytic performance of metal complex/conjugated polymer hybrids for CO2 reduction.

Graphical abstract: Strong impacts of inter-π-chain charge transfer accelerating CO2 reduction photocatalysis of carbazole–diimine-based linear conjugated polymer/Ru complex hybrids
From the themed collection: Recent Open Access Articles
Open Access Paper

Vacancy enhanced Li, Na, and K clustering on graphene

The formation of metallic dendrites during battery cycling is a persistent challenge for alkali metal-ion batteries, reducing cycle life and posing safety risks.

Graphical abstract: Vacancy enhanced Li, Na, and K clustering on graphene
From the themed collection: Recent Open Access Articles
Open Access Paper

Ammonia synthesis from water and nitrogen using electricity with a hydrogen-permeable membrane electrochemical cell with Ru catalysts and molten hydroxide electrolyte: integration with ammonia separation and unreacted gas recirculation

A new method for synthesizing ammonia from water and nitrogen using electricity has been developed, employing a molten NaOH–KOH electrolyte, a Pd alloy membrane, and Ru catalysts at 250 °C and 1.0 MPa.

Graphical abstract: Ammonia synthesis from water and nitrogen using electricity with a hydrogen-permeable membrane electrochemical cell with Ru catalysts and molten hydroxide electrolyte: integration with ammonia separation and unreacted gas recirculation
From the themed collection: Recent Open Access Articles
Open Access Paper

Chloride-improved crystallization in sequentially vacuum-deposited perovskites for p–i–n perovskite solar cells

Sequential thermally evaporated perovskite films with high carrier mobility for efficient p–i–n cell preparation and film scaling-up.

Graphical abstract: Chloride-improved crystallization in sequentially vacuum-deposited perovskites for p–i–n perovskite solar cells
From the themed collection: Recent Open Access Articles
Open Access Paper

Enhanced ketonic decarboxylation of fatty acids using vanadia-modified nickel on zirconia catalysts

Selective ketone and bio-hydrocarbon synthesis via ZrO2-based ketonic decarboxylation.

Graphical abstract: Enhanced ketonic decarboxylation of fatty acids using vanadia-modified nickel on zirconia catalysts
From the themed collection: Recent Open Access Articles
Open Access Paper

Fuelling hydrogen futures? A trust-based model of social acceptance

The social acceptance of domestic hydrogen and prospects for deploying hydrogen homes will be shaped by public trust in key actors and stakeholders.

Graphical abstract: Fuelling hydrogen futures? A trust-based model of social acceptance
From the themed collection: Recent Open Access Articles
Open Access Paper

Process simulation of the integration of molecular distillation with fast pyrolysis of biomass for sustainable fuel production

The process integration of molecular distillation with pyrolysis to separate bio-oil into valuable products is simulated and analysed.

Graphical abstract: Process simulation of the integration of molecular distillation with fast pyrolysis of biomass for sustainable fuel production
From the themed collection: Recent Open Access Articles
Open Access Paper

Conversion of wood waste into nitrogen-doped graphite-like multiporous carbon with high specific surface area and electrical conductivity for high-voltage supercapacitors

Conversion of wood waste into nitrogen-doped graphite-like multiporous carbon with high specific surface area and electrical conductivity for high-voltage supercapacitors.

Graphical abstract: Conversion of wood waste into nitrogen-doped graphite-like multiporous carbon with high specific surface area and electrical conductivity for high-voltage supercapacitors
From the themed collection: Recent Open Access Articles
Open Access Paper

Rational molecular engineering of porphyrins for enhanced performance in dye-sensitized solar cells

A novel series of nine porphyrin dyes have been synthesized to explore structure–performance relationship, in which the impact of a donor's bulkiness and diverse acceptors are investigated. Among these porphyrin dyes, TZ1 achieved a PCE of 9.90%.

Graphical abstract: Rational molecular engineering of porphyrins for enhanced performance in dye-sensitized solar cells
From the themed collection: Recent Open Access Articles
Open Access Paper

Push–pull amino-substituted heteroleptic iron N-heterocyclic carbene photosensitizers in dye-sensitized solar cells: optimization and characteristics

Solar cells based on iron N-heterocyclic carbene complexes were improved by modifications of the assembly methods used for the cells.

Graphical abstract: Push–pull amino-substituted heteroleptic iron N-heterocyclic carbene photosensitizers in dye-sensitized solar cells: optimization and characteristics
From the themed collection: Recent Open Access Articles
Open Access Paper

Energy-environmental analysis of an H2PEM power station assisted by a dynamic simulation tool

Energy-environmental analysis of an H2PEM power station assisted by a dynamic simulation tool. About 1 order of magnitude of CO2 is saved when the H2PEM is totally renewable (93.36 vs. 1.539 kgCO2 kgH2−1).

Graphical abstract: Energy-environmental analysis of an H2PEM power station assisted by a dynamic simulation tool
From the themed collection: Recent Open Access Articles
Open Access Paper

Light-driven electron transfer in a lipid bilayer with mixed valence molecular wires

Light-driven electron transfer in a lipid bilayer is mediated by oligoaromatic bis(triarylamines), which are capable of long range electron delocalization (mixed valence).

Graphical abstract: Light-driven electron transfer in a lipid bilayer with mixed valence molecular wires
From the themed collection: Recent Open Access Articles
Open Access Paper

Influence of carbon and fluorine on potassium niobate anode material for sodium-ion battery applications

Fluorine-doped carbon-coated potassium niobate enhances sodium-ion battery performance, achieving high capacity (173 mA h g−1), improved rate capability, and 90% retention after 200 cycles, attributed to improved conductivity and Na+ diffusion.

Graphical abstract: Influence of carbon and fluorine on potassium niobate anode material for sodium-ion battery applications
From the themed collection: Recent Open Access Articles
Open Access Paper

Metal-free graphitic carbon nitride/carbon-dots composites: unveiling mechanochemical synthesis opportunities

Mechanochemically synthesized materials show competitive performance in selective photooxidation. The study includes comprehensive characterization, light–matter interaction modeling, and quantum efficiency calculations.

Graphical abstract: Metal-free graphitic carbon nitride/carbon-dots composites: unveiling mechanochemical synthesis opportunities
From the themed collection: Recent Open Access Articles
Open Access Paper

Optimization and characterization of biocrude produced from hydrothermal liquefaction of food waste

This study investigates the valorization of restaurant-derived food waste into biocrude using hydrothermal liquefaction (HTL).

Graphical abstract: Optimization and characterization of biocrude produced from hydrothermal liquefaction of food waste
From the themed collection: Recent Open Access Articles
Open Access Paper

Enhancing the efficiency of non-fullerene organic solar cells by using a volatilizable solid additive system

The morphology of the active layer mostly affects the photovoltaic efficiency of organic solar cells (OSCs).

Graphical abstract: Enhancing the efficiency of non-fullerene organic solar cells by using a volatilizable solid additive system
From the themed collection: Recent Open Access Articles
Open Access Paper

Improving anion exchange membrane stability with hydrophilic polyethylene for advanced aqueous organic redox flow batteries

Anion exchange membranes (AEMs) protection and hydrophilic porous polyethylene (HPE) successful application for aqueous organic redox flow batteries (AORFBs).

Graphical abstract: Improving anion exchange membrane stability with hydrophilic polyethylene for advanced aqueous organic redox flow batteries
From the themed collection: Recent Open Access Articles
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