Themed collection Journal of Materials Chemistry A HOT Papers

458 items - Showing page 1 of 7
Perspective

Stabilizing ultrafine intermetallics on carbon supports: from structural design to catalytic applications

Ultrafine intermetallics (<5 nm) offer unique catalytic properties but face sintering challenges. We highlight carbon-supported synthesis strategies for precise control, focusing on electrocatalytic applications and future directions.

Graphical abstract: Stabilizing ultrafine intermetallics on carbon supports: from structural design to catalytic applications
Perspective

Unveiling the significance of working electrode substrates in electrocatalytic water splitting for sustainable hydrogen energy production

This perspective highlights how electrode substrate choice critically affects electrocatalyst performance in water splitting, guiding researchers to design better catalysts by leveraging each substrate’s unique properties.

Graphical abstract: Unveiling the significance of working electrode substrates in electrocatalytic water splitting for sustainable hydrogen energy production
Perspective

From lab to market: the future of zinc–air batteries powered by MOF/MXene hybrids

Zinc–air batteries (ZABs) stand at the forefront of energy storage technologies. However, challenges like slow kinetics and low rechargeability persist. MOF–MXene hybrids enhance performance, enabling sustainable ZAB technology.

Graphical abstract: From lab to market: the future of zinc–air batteries powered by MOF/MXene hybrids
Review Article

Humidity stability of halide solid-state electrolytes

This review focuses on the humidity stability of halide solid-state electrolytes, including the root causes, characterization methods and mitigation strategies for humidity instability, as well as key challenges and future research directions.

Graphical abstract: Humidity stability of halide solid-state electrolytes
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Bridging lab-to-fab gaps: recent advances in the reproducibility of organic solar cells

This review comprehensively summarizes the recent advances in OSC reproducibility of organic solar cells from material synthesis, film preparation, and interfacial & electrode, which would provide significant insights into large-scale fabrication.

Graphical abstract: Bridging lab-to-fab gaps: recent advances in the reproducibility of organic solar cells
From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Review Article

Recent progress on ZnIn2S4 -based composite photocatalyst for photocatalytic hydrogen production coupling organic synthesis

From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Review Article

Awakening the Substrate: Design of Foam Metal Electrodes for Water Electrolysis

From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Review Article

Engineering Asymmetric MOF Composites toward High-Efficiency Catalytic Reactions

From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Review Article

Opaque, transparent, and colored low-emissivity materials for mid-infrared thermal management

From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Lithium alloy anodes for all-solid-state lithium batteries: from failure mechanism to performance-oriented design

This review addresses the challenges faced by all-solid-state lithium metal batteries (ASSLMBs), analyzes the properties of lithium alloys, summarizes the recent applications of lithium alloy anodes in ASSLMBs, and presents outlooks.

Graphical abstract: Lithium alloy anodes for all-solid-state lithium batteries: from failure mechanism to performance-oriented design
Review Article

From activity to stability: dissolution-mediated surface reconstruction and redeposition in transition metal-based electrocatalysts

A comprehensive review on the structural reconstruction and associated dissolution/redeposition equilibria of the electrocatalysts during reactions is proposed, which is pivotal for addressing the delicate balance between activity and stability.

Graphical abstract: From activity to stability: dissolution-mediated surface reconstruction and redeposition in transition metal-based electrocatalysts
Review Article

Structural engineering of carbon-based cathodes for advanced aqueous Zn–CO2 batteries: from macroscopic architectures to atomic-level manipulation

This review introduces the latest progress of Zn–CO2 batteries from the aspects of battery systems, electrolytes, electrodes, while the structural engineering of carbon cathodes at both the macroscopic level and the atomic level is summarized.

Graphical abstract: Structural engineering of carbon-based cathodes for advanced aqueous Zn–CO2 batteries: from macroscopic architectures to atomic-level manipulation
Review Article

Unlocking the potential of strontium iridate for the oxygen evolution reaction: from fundamental insights to advanced electrocatalyst design

This review explores the properties of strontium iridate (SrIrO3) and its potential as a high-performance catalyst for water splitting in both acidic and alkaline environments, providing key insights for the advancement of electrolysis technologies.

Graphical abstract: Unlocking the potential of strontium iridate for the oxygen evolution reaction: from fundamental insights to advanced electrocatalyst design
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Covalent organic framework-derived functional interphase for improving Zn chemistry in aqueous zinc-ion batteries

This review systematically summarizes the cutting-edge development of covalent organic framework-derived functional interphases for improving Zn chemistry in aqueous zinc-ion batteries.

Graphical abstract: Covalent organic framework-derived functional interphase for improving Zn chemistry in aqueous zinc-ion batteries
Review Article

Triple-junction all-perovskite solar cells: a review

This paper reviews the working principles and key parameters of TJPSCs and presents recent research progress, focuses on how component optimization, interface engineering, and charge transport layer improvements influence efficiency.

Graphical abstract: Triple-junction all-perovskite solar cells: a review
Review Article

2D covalent organic frameworks: organic electrode materials for aqueous batteries

A review about 2D covalent organic frameworks as organic electrode materials for aqueous batteries.

Graphical abstract: 2D covalent organic frameworks: organic electrode materials for aqueous batteries
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Recent status, key strategies and challenging perspectives of smart batteries for next-generation batteries

This review provides a comprehensive overview of the current development of smart batteries, which can be divided into three parts: smart materials, smart manufacturing and smart sensing.

Graphical abstract: Recent status, key strategies and challenging perspectives of smart batteries for next-generation batteries
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Helmholtz plane engineering for stable zinc anodes: from interfacial dynamics to long-cycle battery design

By adjusting the composition of the inner Helmholtz plane and the outer Helmholtz plane, it is expected to improve the desolvation structure of zinc ions, inhibit the side reaction of zinc anode and enhance the long-cycle performance of the battery.

Graphical abstract: Helmholtz plane engineering for stable zinc anodes: from interfacial dynamics to long-cycle battery design
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Recent advances in electrocatalytic reduction of nitrate to ammonia: current challenges, resolving strategies, and future perspectives

This review clearly elucidates the lineage of the development of NO3RR from the theoretical mechanism to practical reactions and deepens the understanding of NO3RR, pointing out the direction for the advanced design of NO3RR electrocatalysts.

Graphical abstract: Recent advances in electrocatalytic reduction of nitrate to ammonia: current challenges, resolving strategies, and future perspectives
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Iron-based polyanionic cathodes for sustainable sodium-ion batteries

Sodium-ion batteries (SIBs) have emerged as a compelling alternative to lithium-ion batteries, driven by the abundance of raw materials and lower costs.

Graphical abstract: Iron-based polyanionic cathodes for sustainable sodium-ion batteries
Review Article

Recent advances in Ni-based catalysts for hybrid CO2 electrolysis

The utilization of nickel-based catalysts in hybrid CO2 electrolysis systems enhances the efficiency of CO2 reduction by coupling low-energy alternative oxidation reactions, thereby offering an innovative route towards a sustainable carbon economy.

Graphical abstract: Recent advances in Ni-based catalysts for hybrid CO2 electrolysis
Review Article

Toward enhanced pyro-catalysis performance: mechanisms, strategies and challenges

Overview of the applications and performance improvement strategies of pyro-catalysis.

Graphical abstract: Toward enhanced pyro-catalysis performance: mechanisms, strategies and challenges
Review Article

Recent progress in atomic-level manufacturing of two-dimensional transition metal dichalcogenides beyond exfoliation and restacking

Two-dimensional transition metal dichalcogenides (2DTMDCs) are promising in quantum computing, flexible electronics, spintronics, sustainable energy systems, and advanced healthcare.

Graphical abstract: Recent progress in atomic-level manufacturing of two-dimensional transition metal dichalcogenides beyond exfoliation and restacking
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Recent progress of selectivity regulation and reaction mechanism of atomically dispersed metal catalysts for oxygen reduction electrocatalysis

This review summarizes the recent progress of atomically dispersed metal catalysts for oxygen reduction electrocatalysis, including advanced theories and descriptors, active site structure, and advanced characterization techniques.

Graphical abstract: Recent progress of selectivity regulation and reaction mechanism of atomically dispersed metal catalysts for oxygen reduction electrocatalysis
Review Article

Two-dimensional covalent triazine frameworks for advanced electrochemical energy storage applications

The utilization of 2D CTFs in advanced electrochemical energy storage systems not only demonstrates the enhancement of the energy and power densities of these devices, but also promotes their cycling stability and rate performance.

Graphical abstract: Two-dimensional covalent triazine frameworks for advanced electrochemical energy storage applications
Review Article

Recent advances in dual functional calcium looping for integrated CO2 capture and conversion: a review

We explored the cutting-edge dual-functional CaL-ICCC process, addressing current limitations and proposing future strategies to minimize energy penalties through integrated multiscale approaches spanning materials, reactors, and systems.

Graphical abstract: Recent advances in dual functional calcium looping for integrated CO2 capture and conversion: a review
Review Article

Recent progress on metal–organic framework-based separators for lithium–sulfur batteries

We review the progress on MOF-based separators for LSBs, with a particular focus on the relationship between the MOF structures and their functional roles in polysulfide capture, catalytic conversion, and uniform Li+ ion flux regulation.

Graphical abstract: Recent progress on metal–organic framework-based separators for lithium–sulfur batteries
Review Article

Advances in gas sensors using screen printing

This review highlights that screen-printed gas sensors are cost-effective and scalable, ideal for environmental, industrial, and healthcare applications.

Graphical abstract: Advances in gas sensors using screen printing
From the themed collection: Journal of Materials Chemistry A HOT Papers
Review Article

Functional carbon-based covalent bridging bonds unlocking superior sodium-ion storage

This review focuses on the transformative role of the carbon-based covalent bridging bonds in the field of sodium-ion batteries, providing valuable insights for advancing the next-generation high-performance sodium-ion batteries.

Graphical abstract: Functional carbon-based covalent bridging bonds unlocking superior sodium-ion storage
Review Article

Recent progress in multilayer solid electrolytes for sodium-ion batteries

The construction of multilayer electrolytes can improve the electrode interface and enhance the performance of solid-state batteries.

Graphical abstract: Recent progress in multilayer solid electrolytes for sodium-ion batteries
Review Article

Tailoring functionalities: pore engineering strategies in porous organic cages for diverse applications

This review focuses on pore engineering (intrinsic pore size, extrinsic porosity, and pore environment) in porous organic cages and summarizes the roles of pore engineering in various fields.

Graphical abstract: Tailoring functionalities: pore engineering strategies in porous organic cages for diverse applications
Review Article

Iridium-based electrocatalysts for the hydrogen oxidation reaction toward alkaline exchange membrane fuel cells

This review highlights recent advances in Ir-based electrocatalysts based on different design strategies. This review will guide future research in the development of high-performance Ir-based HOR electrocatalysts for AEMFCs.

Graphical abstract: Iridium-based electrocatalysts for the hydrogen oxidation reaction toward alkaline exchange membrane fuel cells
Review Article

Ferroelectric materials as photoelectrocatalysts: photoelectrode design rationale and strategies

The utilization of ferroelectrics offers an additional lever to surpass the performance limits of traditional photoelectrodes. In this review, design strategies for ferroelectric photoelectrodes from materials to PEC system design are assessed.

Graphical abstract: Ferroelectric materials as photoelectrocatalysts: photoelectrode design rationale and strategies
Review Article

Artificial intelligence assisted nanogenerator applications

This review examines the integration of artificial intelligence with nanogenerators to develop self-powered, adaptive systems for applications in robotics, wearables, and environmental monitoring.

Graphical abstract: Artificial intelligence assisted nanogenerator applications
Communication

Structural insights into mononuclear Cu1 motifs for efficient CO electroreduction

σ–π synergy and spatial confinement in Cu1–C2N motifs optimize the reactivity–stability balance for CO electrocatalysis over conventional Cu–Nx sites.

Graphical abstract: Structural insights into mononuclear Cu1 motifs for efficient CO electroreduction
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Binary organic solar cells with efficiency over 20% enabled by solid additives with side-chain halogenation

An effective side-chain halogenation strategy realizes high-performance OSCs with efficiency over 20%.

Graphical abstract: Binary organic solar cells with efficiency over 20% enabled by solid additives with side-chain halogenation
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Enhanced multifunctional performance of flash graphene-polymer composites via nitrogen doping

Nitrogen doping in flash graphene modulates interfacial interactions to enable polymer composites with enhanced properties.

Graphical abstract: Enhanced multifunctional performance of flash graphene-polymer composites via nitrogen doping
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Reconstructing a Gd3+-enriched inner Helmholtz plane with a dynamic electrostatic shielding effect for highly reversible Zn–bromine flow batteries

This work shows that reconstructing a Gd3+-enriched Helmholtz plane enhances interfacial stability, improves Zn anode reversibility, and boosts capacity and cycling stability in zinc–bromine flow batteries.

Graphical abstract: Reconstructing a Gd3+-enriched inner Helmholtz plane with a dynamic electrostatic shielding effect for highly reversible Zn–bromine flow batteries
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Symmetry-reduction enhanced one-dimensional polarization-sensitive photodetectors for multi-functional applications

A polarization-sensitive photodetector based on 1D vdW Nb2Pd1−xSe5 is reported. Image convolutional processing and proof-of-concept multiplexing optical communications and polarization imaging are demonstrated based on the devices.

Graphical abstract: Symmetry-reduction enhanced one-dimensional polarization-sensitive photodetectors for multi-functional applications
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Photocatalytic upcycling of marble waste into acetic acid by copper sulfide nanoparticles

Disk-like CuS nanoparticles facilitate the photocatalytic conversion of carbonate-rich waste marble-dust to acetic acid under monochromatic green light, offering a green route for carbon upcycling and waste utilization.

Graphical abstract: Photocatalytic upcycling of marble waste into acetic acid by copper sulfide nanoparticles
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Nickel-mediated dynamic interfaces with dual spillover pathways in Mo2C/Ni/Fe3O4 for water splitting

Nickel-mediated interfacial design in Mo2C/Ni/Fe3O4 ternary heterostructures establishes decoupled hydrogen/oxygen-containing intermediate spillover pathways via interfacial Ni–C–Mo and Ni–O–Fe interactions and moderation.

Graphical abstract: Nickel-mediated dynamic interfaces with dual spillover pathways in Mo2C/Ni/Fe3O4 for water splitting
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

A multifunctional strategy to improve the efficiency and stability of organic solar cells via a 2PACz/MA composite hole transport layer

A novel 2PACz/MA composite HTL strategy improves the efficiency and stability of OSCs by optimizing interface quality.

Graphical abstract: A multifunctional strategy to improve the efficiency and stability of organic solar cells via a 2PACz/MA composite hole transport layer
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Design and synthesis of a weakly solvated electrolyte for high-performance fluoride-ion batteries

A weakly solvated electrolyte strategy for high-performance fluoride-ion batteries at room temperature.

Graphical abstract: Design and synthesis of a weakly solvated electrolyte for high-performance fluoride-ion batteries
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Regulation of nitrogen reduction reaction catalytic performance by varying the sp/sp2 hybrid carbon ratio in graphyne/graphene heterojunction catalysts

This work systematically investigates the influence of the sp/sp2 hybrid carbon ratio on the NRR catalytic performance of Ti@GY/Gr heterojunctions and explores the underlying mechanisms and relevant descriptor relationships.

Graphical abstract: Regulation of nitrogen reduction reaction catalytic performance by varying the sp/sp2 hybrid carbon ratio in graphyne/graphene heterojunction catalysts
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Structured droplets dominated by interfacial self-assembly of topology-tunable Janus particles towards macroscopic materials

Structured macro-droplets, stabilized by self-assembled and jammed hemispherical Janus particles at water–oil interfaces, enable scalable fabrication of multi-functional granular materials, e.g., magnetic/fluorescent capsules.

Graphical abstract: Structured droplets dominated by interfacial self-assembly of topology-tunable Janus particles towards macroscopic materials
From the themed collection: Journal of Materials Chemistry A HOT Papers
Open Access Communication

Fabrication of graphene oxide/silk protein core-sheath aerogel fibers for thermal management

An encapsulated graphene oxide/silk protein aerogel fiber made by coaxial spinning is reported to exhibit ultra-high mechanical properties. The aerogel fiber showed efficient performance in thermal management applications.

Graphical abstract: Fabrication of graphene oxide/silk protein core-sheath aerogel fibers for thermal management
From the themed collection: Journal of Materials Chemistry A HOT Papers
Communication

Effective sensing mechanisms of O2 and CO on SnO2 (110) surface: a DFT study

DFT reveals oxygen vacancies on SnO2 stabilize polarons, driving efficient O2 activation and CO oxidation. These findings enable advanced SnO2-based sensor design, leveraging defect engineering to boost catalytic and sensing performance.

Graphical abstract: Effective sensing mechanisms of O2 and CO on SnO2 (110) surface: a DFT study
From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Paper

Decoration of dual cocatalysts on ultra-thin carbon nitride for efficient H2O2 photosynthesis

From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Hydrogen bond-mediated polar structure engineering of PVDF toward superior energy storage

Xylitol–PVDF delivers superior energy storage, as its hydrogen bonding enhances crystallinity and reduces grain size.

Graphical abstract: Hydrogen bond-mediated polar structure engineering of PVDF toward superior energy storage
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Thermally assisted photocatalytic industrial flue gas CO2 conversion: 100% selective CO production via synergistic adsorption–conversion in NH2–MXene–MOF hierarchical interfaces

Thermally assisted photocatalytic CO2 conversion into high value-added chemicals represents an effective strategy for carbon emission reduction and circular carbon economy.

Graphical abstract: Thermally assisted photocatalytic industrial flue gas CO2 conversion: 100% selective CO production via synergistic adsorption–conversion in NH2–MXene–MOF hierarchical interfaces
From the themed collection: Journal of Materials Chemistry A HOT Papers
Open Access Paper

Boosting sodium-ion mobility in Na3V2(PO4)2F3 through anion engineering with Br substitution

Partial Br substitution forming Na3V2(PO4)2F3(1−x)Br3x enhances Na+ ion mobility by widening 2D diffusion channel and lowering the migration barrier.

Graphical abstract: Boosting sodium-ion mobility in Na3V2(PO4)2F3 through anion engineering with Br− substitution
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Synthesis of high-temperature hydrophobic nanoparticles and their applications in superlyophobic coatings

The oxygen scavenging effect enhanced the thermal stability of high-temperature hydrophobic nanoparticles.

Graphical abstract: Synthesis of high-temperature hydrophobic nanoparticles and their applications in superlyophobic coatings
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

High-activity carrier-based catalysts from iron tailings: activating peroxymonosulfate for tetracycline hydrochloride degradation—the link between active sites and pollutant degradation

This study focuses on overcoming the obstacles encountered during peroxymonosulfate (PMS) activation utilizing iron ore residues.

Graphical abstract: High-activity carrier-based catalysts from iron tailings: activating peroxymonosulfate for tetracycline hydrochloride degradation—the link between active sites and pollutant degradation
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Interfacial heterophase BaTa2O6:N with spatial CoOx/Pt cocatalysts for stable water oxidation in pH-unadjusted Fe3+ redox media toward solar energy storage

Interfacial engineering of N-doped BaTa2O6 heterophase junctions with spatially separated CoOx/Pt cocatalysts enables acid-stable solar water oxidation and Fe3+/Fe2+-mediated energy storage for the hydrogen farm strategy.

Graphical abstract: Interfacial heterophase BaTa2O6:N with spatial CoOx/Pt cocatalysts for stable water oxidation in pH-unadjusted Fe3+ redox media toward solar energy storage
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

A hierarchical vermiculite-CNF/CNT composite nanofluidic membrane for a high-performance moisture-electric generator

A novel perspective on structural design and material selection for MEGs is proposed. The asymmetric structural MEG constructed from a VM-CNF/CNT composite nanofluidic membrane can use a humidity gradient to generate sustained electrical power.

Graphical abstract: A hierarchical vermiculite-CNF/CNT composite nanofluidic membrane for a high-performance moisture-electric generator
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

The strain-mediated orbital synergy in Co3O4 for enhanced oxygen evolution reaction activity

Strain-regulated on Co3O4(100) enhances OER performance by inducing Jahn–Teller distortion of Co 3d orbitals and improving oxygen intermediate adsorption, with optimal strain at −2%.

Graphical abstract: The strain-mediated orbital synergy in Co3O4 for enhanced oxygen evolution reaction activity
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Mechanistic insights into superionic thioarsenate argyrodite solid electrolytes via machine learning interatomic potentials

Machine learning interatomic potentials reveal that optimal anion disorder boosts Li-ion conductivity beyond 20 mS cm−1 in thioarsenate argyrodite solid electrolytes.

Graphical abstract: Mechanistic insights into superionic thioarsenate argyrodite solid electrolytes via machine learning interatomic potentials
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Boosting perfluorooctanoic acid capture ability and water stability with a dual synergistic effect MOF-on-MOF adsorbent and insights from DFT calculations

To balance adsorption kinetics and capacity in PFOA capture/separation, we urgently need MOFs with defect-free crystals and well-defined hierarchical “micro–mesoporous” structures.

Graphical abstract: Boosting perfluorooctanoic acid capture ability and water stability with a dual synergistic effect MOF-on-MOF adsorbent and insights from DFT calculations
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

One-pot synthesis of binary quinoxaline-linked covalent organic frameworks

This work provides a facile one-pot strategy to prepare stable binary COFs linked by quinoxaline and imine or amine linkages, and the in situ conversion of imine bonds to amino linkage can be achieved by adding reducing agents.

Graphical abstract: One-pot synthesis of binary quinoxaline-linked covalent organic frameworks
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

The water resistance mechanism of the (CoO)7.5·(CuO)3·(TiO2)6.3 catalyst in propylene combustion

The design of water-resistant oxide catalysts is of significant importance in chemical processes.

Graphical abstract: The water resistance mechanism of the (CoO)7.5·(CuO)3·(TiO2)6.3 catalyst in propylene combustion
From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Paper

Factors governing surface reactions leading to nitridation of nickel catalysts in ammonia-fueled solid oxide fuel cells

From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Dual-band modulating electrochromic smart windows with broad temperature adaptability based on triazine-ring-based molecules and hyperbranched polymers

Three redox centers enable multi-level spectral control. Hydrogen bond networks enable excellent cycling stability at extreme temperatures.

Graphical abstract: Dual-band modulating electrochromic smart windows with broad temperature adaptability based on triazine-ring-based molecules and hyperbranched polymers
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Enhanced photovoltaic performance in MA-free triple-cation-based perovskite solar cells with guanidinium modification

Incorporation of 3% guanidinium into an FA/Cs perovskite yields a PCE of 20.7%, with improved photovoltaic performance and stability over the pristine device.

Graphical abstract: Enhanced photovoltaic performance in MA-free triple-cation-based perovskite solar cells with guanidinium modification
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Activating the cathode for solid oxide fuel cells by selective removal of surface strontium

A surface engineering strategy selectively removes Sr-rich layers, enhancing the activity and stability of air electrodes in solid oxide fuel cells.

Graphical abstract: Activating the cathode for solid oxide fuel cells by selective removal of surface strontium
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

A nitrogen-rich fully conjugated covalent organic framework as a high-performance anode material for hybrid lithium-ion capacitors

A nitrogen-rich, fully conjugated TAB-COF anode is developed for hybrid lithium-ion capacitors. It achieves an exceptional discharge capacity via a unique 21-electron storage mechanism, as confirmed through experimental and theoretical approaches.

Graphical abstract: A nitrogen-rich fully conjugated covalent organic framework as a high-performance anode material for hybrid lithium-ion capacitors
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Separation and purification of 5-hydroxymethylfurfural by metal–organic frameworks

MOF-808 can efficiently separate HMF from fructose, FA, and LA (especially LA) through coordination interaction, and has excellent cycling stability.

Graphical abstract: Separation and purification of 5-hydroxymethylfurfural by metal–organic frameworks
From the themed collection: Journal of Materials Chemistry A HOT Papers
Paper

Stepwise optimization strategy of ferroelectric–paraelectric laminated ceramics

A stepwise optimization strategy, integrating layer ratio adjustment, linearity modulation, and interface strengthening, is proposed, providing guidance for designing high-performance ferroelectric–paraelectric laminated energy-storage ceramics.

Graphical abstract: Stepwise optimization strategy of ferroelectric–paraelectric laminated ceramics
From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Paper

In Hot Pursuit: Tracking Ionic and Phononic Heat Carriers in Li3OCl Across Temperatures

From the themed collection: Journal of Materials Chemistry A HOT Papers
Open Access Accepted Manuscript - Paper

Surface aluminization for enhancing oxidation resistance of Nb 0.86 Hf 0.14 FeSb thermoelectric element

From the themed collection: Journal of Materials Chemistry A HOT Papers
Accepted Manuscript - Paper

Flexocatalytic driven Water Splitting: Unprecedented Hydrogen Production by Symmetry invariant ZnIn2S4 Nanosheets

From the themed collection: Journal of Materials Chemistry A HOT Papers
458 items - Showing page 1 of 7

About this collection

This on-going web collection features all the articles published in Journal of Materials Chemistry A in 2025 marked as HOT, as recommended by referees. 

Congratulations to all the authors whose articles are featured!

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