Themed collection Chemistry at the Forefront of the Sustainable Energy Transition

192 items - Showing page 1 of 3
Accepted Manuscript - Highlight

Tailoring Defects and Interfaces in Sulfide Solid Electrolytes for High-Performance Solid-State Sodium Batteries

Highlight

What's new in PEDOT:PSS thermoelectrics?

PEDOT:PSS is one of the most researched polymers for thermoelectrics due to its solution-processability, flexibility, and high electrical conductivity. This highlight discusses recent strategies reported on PEDOT:PSS based thermoelectric materials.

Graphical abstract: What's new in PEDOT:PSS thermoelectrics?
Highlight

Electron–phonon coupling in two-dimensional Ruddlesden–Popper hybrid perovskites

Two-dimensional layered hybrid perovskites create charge carriers upon photoexcitation, which often couple with the lattice modes. Using steady-state and time-resolved spectroscopic techniques, electron–phonon coupling can be evaluated.

Graphical abstract: Electron–phonon coupling in two-dimensional Ruddlesden–Popper hybrid perovskites
Open Access Highlight

Five key concepts linking vacancies, structure, and oxygen evolution reaction activity in cobalt-based electrocatalysts

Focusing on five key concepts, we review the roles of cation and oxygen vacancies in determining the surface reconstruction pathway, reaction mechanism, and ultimate activity of cobalt-based oxygen evolution reaction (OER) electrocatalysts.

Graphical abstract: Five key concepts linking vacancies, structure, and oxygen evolution reaction activity in cobalt-based electrocatalysts
Open Access Accepted Manuscript - Highlight

Innovations in Non-Flammable and Flame-Retardant Electrolytes for Safer Lithium-Ion Battery

Open Access Highlight

Polyoxometalate photocatalysts: solar-driven activation of small molecules for energy conversion and greenhouse gas valorization

Polyoxometalate photocatalysts with tunable electronic structure drive CO2, H2O, CH4, N2 conversion, enhancing sustainability via charge dynamics and active sites.

Graphical abstract: Polyoxometalate photocatalysts: solar-driven activation of small molecules for energy conversion and greenhouse gas valorization
Highlight

Recent advances and perspectives of electrolyte additives for enhanced anode reversibility in aqueous zinc-ion batteries

This review establishes a functional taxonomy of electrolyte additives in AZIBs, elucidating their mechanistic roles in modulating Zn2+ solvation structures, guiding oriented deposition, and suppressing parasitic reactions.

Graphical abstract: Recent advances and perspectives of electrolyte additives for enhanced anode reversibility in aqueous zinc-ion batteries
Highlight

Spatial-temporally resolved optical imaging of electroplating/stripping processes in anode-free secondary batteries

Recent advances in spatiotemporally resolved optical imaging techniques for real-time visualization of electroplating/stripping dynamics in anode-free secondary batteries have been summarized.

Graphical abstract: Spatial-temporally resolved optical imaging of electroplating/stripping processes in anode-free secondary batteries
Highlight

Electrolyte solution chemistry and interface dynamics for fast-charging sustainable anion shuttle batteries

This highlight outlines the significance of understanding electrolyte solution chemistry and interface dynamics for ultrafast-charging dual-ion batteries.

Graphical abstract: Electrolyte solution chemistry and interface dynamics for fast-charging sustainable anion shuttle batteries
Open Access Highlight

Advances in oxychalcogenide materials for hydrogen evolution photocatalysis in aqueous media

A comprehensive analysis of recent advances in oxychalcogenide photocatalysts is provided to help guide the rational design of next-generation photocatalysts for efficient and scalable solar hydrogen production.

Graphical abstract: Advances in oxychalcogenide materials for hydrogen evolution photocatalysis in aqueous media
Highlight

Improving the charge separation efficiencies of ternary metal sulfides for photocatalytic hydrogen production

Ternary metal sulfides represent a pivotal advancement in photocatalysis for solar-driven hydrogen production, offering tunable bandgaps, visible-light responsiveness, and superior stability over binary analogs.

Graphical abstract: Improving the charge separation efficiencies of ternary metal sulfides for photocatalytic hydrogen production
Open Access Highlight

Electrochemical hydrogen pumps: a researcher's guide and review

This review provides an introduction to electrochemical hydrogen pumps, which allows for the purification of H2 from gas mixtures and provides an alternative method to compress H2.

Graphical abstract: Electrochemical hydrogen pumps: a researcher's guide and review
Highlight

Recent advancements of bismuth titanate photocatalysis

Bismuth titanate has found wide-spread applications in photocatalysis for hydrogen production, degradation of organic pollutants, among others, due to its unique crystal structure and electronic energy band configuration.

Graphical abstract: Recent advancements of bismuth titanate photocatalysis
Highlight

Photo-excited electrochemical surface-enhanced Raman spectroscopy: in situ/operando insights into photoelectrocatalytic interfaces

Photo-excited electrochemical surface-enhanced Raman spectroscopy (EC-SERS) emerges as a powerful analytical tool for elucidating intricate interfacial mechanisms in photoelectrocatalytic systems.

Graphical abstract: Photo-excited electrochemical surface-enhanced Raman spectroscopy: in situ/operando insights into photoelectrocatalytic interfaces
Highlight

Strategies for electrolyte modification in aqueous zinc-ion batteries: an antisolvent approach

This feature article provides a fundamental and mechanistic view of the profound alteration of solvation structure in aqueous electrolytes by an antisolvent strategy to improve the electrochemical performances of aqueous zinc ion batteries.

Graphical abstract: Strategies for electrolyte modification in aqueous zinc-ion batteries: an antisolvent approach
Highlight

Covalent organic framework membranes for rechargeable electrochemical energy storage devices: chemistry, fabrication, and future opportunities

COFs with ordered pores and tunable chemistry enable ion selectivity and stability. This review summarizes their synthesis, structure, and applications in energy storage systems.

Graphical abstract: Covalent organic framework membranes for rechargeable electrochemical energy storage devices: chemistry, fabrication, and future opportunities
Highlight

Advances in integrated photo–thermal–electric energy conversion

This review provides a comprehensive understanding of photo–thermal–electric energy conversion based on diverse energy conversion systems, and potential strategies are proposed to optimize these systems and enhance its cross-system applications.

Graphical abstract: Advances in integrated photo–thermal–electric energy conversion
Highlight

Catalytic asymmetric transformation of platform chemicals derived from lignocellulosic biomass

This review summarizes recent advances in the catalytic asymmetric transformation of three key biomass-derived platform chemicals and their applications in the total synthesis of natural products.

Graphical abstract: Catalytic asymmetric transformation of platform chemicals derived from lignocellulosic biomass
Highlight

Engineering strategies in bio-photoelectrochemical cells for sustainable energy and environmental applications

Biophotoelectrochemical cells: configurations, components, and their potential products.

Graphical abstract: Engineering strategies in bio-photoelectrochemical cells for sustainable energy and environmental applications
Highlight

Progress in catalysts for hydrogen storage/release in MBT/DBT based LOHCs: a review

Liquid organic hydrogen carriers (LOHCs) technology is based on the inverse process of storing hydrogen in unsaturated organic liquids by complete hydrogenation reactions and releasing hydrogen by corresponding dehydrogenation reactions.

Graphical abstract: Progress in catalysts for hydrogen storage/release in MBT/DBT based LOHCs: a review
Highlight

Edible batteries for biomedical innovation: advances, challenges, and future perspectives

Edible batteries integrate exceptional energy efficiency with a safe energy supply, advancing the intersection of sustainable energy and biomedical engineering.

Graphical abstract: Edible batteries for biomedical innovation: advances, challenges, and future perspectives
Open Access Highlight

Molecular catalyst and co-catalyst systems based on transition metal complexes for the electrochemical oxidation of alcohols

Selected molecular catalyst systems for electrochemical alcohol oxidation are highlighted, including co-catalyst systems with redox mediators. Structural and activity trends are examined, with a focus on future catalyst system development principles.

Graphical abstract: Molecular catalyst and co-catalyst systems based on transition metal complexes for the electrochemical oxidation of alcohols
Highlight

Biomass-derived semiconductors for renewable energy technologies

This review examines the potential of biomass-derived semiconductor materials in renewable energy technologies, highlighting key synthesis strategies from biomass precursors, as well as their properties and applications.

Graphical abstract: Biomass-derived semiconductors for renewable energy technologies
Highlight

Engineering space dimension and surface chemistry of MXene-based nanocomposite photocatalysts for sustainable environmental applications

This review highlights on engineering space dimension and surface chemistry of MXene-based nanocomposite photocatalysts for sustainable environmental application.

Graphical abstract: Engineering space dimension and surface chemistry of MXene-based nanocomposite photocatalysts for sustainable environmental applications
Open Access Highlight

Spin-controlled electrocatalysis: an out-of-the-box strategy for the advancement of electrochemical water splitting

Spin-polarized catalysts have garnered significant interest in electrocatalysis, namely in the electrocatalytic oxidation of water, which has very sluggish kinetics due to its high overpotential.

Graphical abstract: Spin-controlled electrocatalysis: an out-of-the-box strategy for the advancement of electrochemical water splitting
Open Access Highlight

Precision design of covalent organic frameworks for cathode applications

This review article discusses the limitations and potential of covalent organic frameworks (COFs) for cathodes applications and introduces key molecular and structural engineering strategies to enhance the performance of COF cathodes in batteries.

Graphical abstract: Precision design of covalent organic frameworks for cathode applications
From the themed collection: Chemical Communications HOT articles 2025
Highlight

Advanced electrolyte strategies for dendrite-free aqueous Zn–metal batteries

Aqueous Zn–metal batteries have attracted wide attention due to the abundant Zn reserves and the safety and non-toxicity of aqueous electrolytes, and have become a research hotspot in the field of electrochemical energy.

Graphical abstract: Advanced electrolyte strategies for dendrite-free aqueous Zn–metal batteries
Highlight

Presodiation technology: progress, strategy and prospects of sacrificial cathode additives in sodium-based energy storage systems

The sacrificial cathode additive (SCA) method holds great promise for industrial application. This review explores recent progress in SCA presodiation technology, with a focus on optimizing strategies to develop near-ideal SCAs.

Graphical abstract: Presodiation technology: progress, strategy and prospects of sacrificial cathode additives in sodium-based energy storage systems
From the themed collection: Chemical Communications HOT articles 2025
Open Access Highlight

Polyoxometalates for the catalytic reduction of nitrogen oxide and its derivatives: from novel structures to functional applications

In-depth understanding of the optimization of the catalytic reduction of nitrogen oxide and its derivatives using a structure regulation strategy of polyoxometalates.

Graphical abstract: Polyoxometalates for the catalytic reduction of nitrogen oxide and its derivatives: from novel structures to functional applications
Highlight

Chlorine-mediated methane activation: an efficient photocatalytic pathway to valuable chemicals

This Highlight presents an emerging strategy for methane photocatalytic oxidation using chlorine species, emphasizing their advantages and outlining future challenges.

Graphical abstract: Chlorine-mediated methane activation: an efficient photocatalytic pathway to valuable chemicals
Highlight

Progress and perspectives on electrocatalysis in room-temperature Na–S batteries

Room-temperature sodium–sulfur (RT Na–S) batteries can allow an ultrahigh specific capacity and a high energy density but unfortunately suffer from a lot of intractable challenges from sulfur cathodes.

Graphical abstract: Progress and perspectives on electrocatalysis in room-temperature Na–S batteries
Open Access Feature Article

Photosensitised silicon solar cells: progress and challenges

Two energy transfer mechanisms at the molecule–Si surface are identified: Förster-type resonance dominates at a few nanometers, while photon tunnelling into the Si waveguide’s forbidden zones becomes dominant at larger distances.

Graphical abstract: Photosensitised silicon solar cells: progress and challenges
Open Access Feature Article

Metal–nitrogen–carbon catalysts for electrochemical CO2 reduction: from design to industrial applications

The electrochemical CO2 reduction reaction (eCO2RR) offers a promising route for converting CO2 into value-added chemicals and fuels using renewable electricity.

Graphical abstract: Metal–nitrogen–carbon catalysts for electrochemical CO2 reduction: from design to industrial applications
Feature Article

High-entropy strategies for designing advanced solid-state electrolytes: a comprehensive review

This review provides a comprehensive overview of high-entropy strategies for designing various types of solid-state electrolytes, with emphasis on structural optimization and performance enhancement.

Graphical abstract: High-entropy strategies for designing advanced solid-state electrolytes: a comprehensive review
Open Access Feature Article

Monolayer C60 networks: a first-principles perspective

In this Feature article, we review three aspects of monolayer C60 networks based on our recent first-principles calculations: (1) Are these monolayers stable? (2) Are they promising photocatalysts? (3) Are their chemical functionalities tuneable?

Graphical abstract: Monolayer C60 networks: a first-principles perspective
Open Access Feature Article

Dye-sensitized nanoparticles for efficient solar hydrogen generation

Recent advances in dye-sensitized photocatalytic systems (DSPs) for H2 evolution are highlighted, focused on TiO2-based systems, self-assembled porphyrins and chromophore–catalyst dyads, paving the way for sustainable solar-driven fuel production.

Graphical abstract: Dye-sensitized nanoparticles for efficient solar hydrogen generation
Feature Article

Spontaneous heterointerface modulators for perovskite solar cells

Spontaneous heterointerface modulators, including alkyl-primary-ammonium-based ionic-liquids (RA–TFSIs) passivating perovskites during hole-transport material (HTM) deposition, for perovskite solar cells are highlighted.

Graphical abstract: Spontaneous heterointerface modulators for perovskite solar cells
Feature Article

Preparation methods and challenges of carbon materials from coal tar pitch for energy storage

This review aims to provide insights into the relationships among the preparation methods, structural characteristics, and properties of carbon materials derived from coal tar pitch.

Graphical abstract: Preparation methods and challenges of carbon materials from coal tar pitch for energy storage
Feature Article

Proton exchange membrane fuel cells: recent developments and future perspectives

Proton exchange membrane fuel cells (PEMFCs) have demonstrated significant potential as environmentally friendly energy alternatives.

Graphical abstract: Proton exchange membrane fuel cells: recent developments and future perspectives
Feature Article

The paradoxical role of rock-salt phases in high-nickel cathode stabilization: engineering a detrimental structure into a beneficial structure

This review summarizes design principles to advance high-nickel-content cathodes, reframing what was generally considered a failure mechanism into a strategic advantage for lithium-ion battery technologies.

Graphical abstract: The paradoxical role of rock-salt phases in high-nickel cathode stabilization: engineering a detrimental structure into a beneficial structure
Feature Article

Beyond macroscopic performance: nanoscale charge transfer dynamics in energy storage/conversion devices via scanning electrochemical cell microscopy

In the review, nanoscale charge transfer dynamics in energy storage/conversion about interface dynamics and electrochemical reaction mechanism are summarized. And future developments on SECCM combined with machine learning are putting forward.

Graphical abstract: Beyond macroscopic performance: nanoscale charge transfer dynamics in energy storage/conversion devices via scanning electrochemical cell microscopy
Feature Article

Fabrication strategies for lead-free bismuth-based perovskite solar cells: a review

The power conversion efficiency of perovskite solar cells has reached 27%, but lead (Pb) toxicity limits their commercialization. To solve this, Pb-free Bi-based alternatives' fabrication strategies are reviewed to advance Bi compound development.

Graphical abstract: Fabrication strategies for lead-free bismuth-based perovskite solar cells: a review
Feature Article

Vacancy engineering of metal–organic framework derivatives for supercapacitors and electrochemical water splitting

This minireview highlights the recent advances in the design and preparation of vacancy-containing MOF derivatives for supercapacitors and electrocatalytic water splitting.

Graphical abstract: Vacancy engineering of metal–organic framework derivatives for supercapacitors and electrochemical water splitting
Feature Article

Quantum electroanalysis in drug discovery

Quantum electroanalysis involves low dimension scale structures (LDSSs) for achieving attomolar sensitivity for drug discovery purposes.

Graphical abstract: Quantum electroanalysis in drug discovery
Feature Article

Recent advances in transition metal sulfide-based electrode materials for supercapacitors

The recent progress in synthesis methods and improvement strategies of advanced TMS-based electrodes for supercapacitors is summarized.

Graphical abstract: Recent advances in transition metal sulfide-based electrode materials for supercapacitors
Feature Article

Engineering perovskite solar cells for photovoltaic and photoelectrochemical systems: strategies for enhancing efficiency and stability

PSC-assisted PV–EC and PEC systems enable unbiased solar fuel production via water splitting and CO2 reduction. This review highlights recent advances in PSC-driven fuel production, focusing on strategies to improve efficiency and stability.

Graphical abstract: Engineering perovskite solar cells for photovoltaic and photoelectrochemical systems: strategies for enhancing efficiency and stability
Feature Article

Operando characterization technique innovations in single-atom catalyst-derived electrochemical CO2 conversion

Different operando characterization techniques for the time-dependent screening of SACs under working conditions and the electrochemical CO2RR applications of SAC-derived materials have been reviewed.

Graphical abstract: Operando characterization technique innovations in single-atom catalyst-derived electrochemical CO2 conversion
Feature Article

A perspective on NiCo2O4-based photocatalysts: from fundamentals, modification strategies to applications

A perspective on NiCo2O4-based photocatalysts is presented from fundamentals, modification strategies to applications, which provides comprehensive review and research gaps for boosting the development of heterogenous catalysts based on NiCo2O4.

Graphical abstract: A perspective on NiCo2O4-based photocatalysts: from fundamentals, modification strategies to applications
Feature Article

Hematite photoanode for efficient photoelectrochemical water splitting: recent advances and outlook

Promoting hematite by water oxidation reaction on the surface, charge separation and transport in the bulk, and parallel multi-stacked design.

Graphical abstract: Hematite photoanode for efficient photoelectrochemical water splitting: recent advances and outlook
From the themed collection: Chemical Communications HOT articles 2025
Feature Article

Electrocatalytic N–H bond transformations: a zero-carbon paradigm for sustainable energy storage and conversion

Electrocatalytic zero-carbon energy systems based on the N–H bond have achieved a complete cycle of energy storage and conversion, providing guidance for the application of clean energy storage and conversion.

Graphical abstract: Electrocatalytic N–H bond transformations: a zero-carbon paradigm for sustainable energy storage and conversion
Feature Article

Computational approaches to electrolyte design for advanced lithium-ion batteries

Various computational methodologies, encompassing quantum chemistry, molecular dynamics simulations, and high-throughput screening, have been reviewed for their applications in electrolyte design for lithium-ion batteries.

Graphical abstract: Computational approaches to electrolyte design for advanced lithium-ion batteries
Feature Article

Obtaining materials from local sources: surface modification engineering enabled substrates for water splitting

Substrate surface modification engineering is a novel method to prepare electrode and can be called self-derived reaction of substrates. Pristine substrates, such as foil, mesh, and foam, can react directly with modifying agents to obtain electrode.

Graphical abstract: Obtaining materials from local sources: surface modification engineering enabled substrates for water splitting
Feature Article

Protocols for degradation assessment and stability enhancement in perovskite solar cells

Protocols for long-term stability of perovskite solar cells.

Graphical abstract: Protocols for degradation assessment and stability enhancement in perovskite solar cells
Open Access Feature Article

Zero-discharge, self-sustained 3D-printed microbial electrolysis cell for biohydrogen production: a review

We highlight the use of 3D printing in creating a stacked MFC–ECC–MEC system in conjunction with a photobioreactor (PBR) to produce significant quantities of H2.

Graphical abstract: Zero-discharge, self-sustained 3D-printed microbial electrolysis cell for biohydrogen production: a review
Feature Article

Interfacial modification in organic solar cells

This review summarizes the mechanism of dipole moments to promote interfacial energy level alignment. Typical organic interlayer materials are compared to conclude the structure–property relationship on directing molecular design.

Graphical abstract: Interfacial modification in organic solar cells
Open Access Feature Article

Two-step thermochemical cycle for solar fuel production from H2O and CO2: technological challenges and potential solutions

A two-step thermochemical cycle for solar fuel production from H2O or/and CO2.

Graphical abstract: Two-step thermochemical cycle for solar fuel production from H2O and CO2: technological challenges and potential solutions
Open Access Accepted Manuscript - Communication

Anion Controlled Selectivity in Oxygen Reduction Catalysed by a Dinuclear Cobalt N,O-Schiff Base Complex

Communication

Synthesis and transport properties of [Ni3Sn][Ni4−xS2], an n-type metal-rich sulfide with an intergrowth structure

Synthesis, structural and transport properties of Ni7−δSnS2: signatures of structural modulation were evidenced by TEM and the intergrowth structure leads to a moderate value of thermal conductivity in this metal-rich sulfide.

Graphical abstract: Synthesis and transport properties of [Ni3Sn][Ni4−xS2], an n-type metal-rich sulfide with an intergrowth structure
Open Access Communication

Crystal structure and fluoride-ion conductivity of strontium cerium fluoride epitaxial films prepared by topochemical fluorination

Fluorite Sr0.5Ce0.5F2.5 epitaxial thin films were obtained by polyvinylidene fluoride-mediated topochemical fluorination of perovskite SrCeO3 within a short time.

Graphical abstract: Crystal structure and fluoride-ion conductivity of strontium cerium fluoride epitaxial films prepared by topochemical fluorination
Communication

Interfacial chemical bond engineering on a Te semiconductor to weaken carrier–phonon coupling to boost thermoelectric conversion performance

An outstanding figure-of-merit zT ≈ 0.85 at 573 K for p-type elemental Te thermoelectrics is enabled by interfacial chemical bond engineering.

Graphical abstract: Interfacial chemical bond engineering on a Te semiconductor to weaken carrier–phonon coupling to boost thermoelectric conversion performance
Communication

Balancing the electronic structure and surface reconstruction of Cu-based nanostructures for iodide oxidation reactions

CuO nanorod arrays on Cu foam enable efficient iodide oxidation, achieving 50 mA cm−2 at 1.36 V with excellent stability. In situ Raman spectroscopy and DFT calculations confirm CuO as the active phase.

Graphical abstract: Balancing the electronic structure and surface reconstruction of Cu-based nanostructures for iodide oxidation reactions
Communication

Schottky barrier modulation via calcium hydroxide nanoparticles on g-C3N4/Ti3C2 for overall photocatalytic applications

The CN/CH-2/TC, with a 2.44 eV band gap, exhibits excellent photocatalytic performance by enhancing light absorption, promoting charge separation, and defects, achieving H2 evolution of 17 300 μmol g−1 h−1 and CO production of 205.3 μmol g−1 h−1.

Graphical abstract: Schottky barrier modulation via calcium hydroxide nanoparticles on g-C3N4/Ti3C2 for overall photocatalytic applications
Communication

Tuneable vacancy-ordered Halide perovskites Cs2PdX6 (X = Cl, Br) for photoelectrochemical water splitting

Here we report to tunability of palladium-based vacancy ordered halide perovskites that can undergo anion-exchange to create core–shell heterostructures. These structures were employed as photoanodes for photoelectrochemical solar water splitting.

Graphical abstract: Tuneable vacancy-ordered Halide perovskites Cs2PdX6 (X = Cl, Br) for photoelectrochemical water splitting
Accepted Manuscript - Communication

Aluminum doped Sodium manganese hexa cyano ferrate cathode for high-rate safe Na-ion battery

Accepted Manuscript - Communication

Gel polymer electrolytes based on single-ion conducting polyelectrolyte (SICP) and SICP-functionalized carbon nanotubes

Communication

A Lewis basic CeO2 cocatalyst expedites two-electron air electroreduction at the theoretical limit

A Lewis basic CeO2 cocatalyst was used to expedite two-electron air reduction to H2O2 at the theoretical limit.

Graphical abstract: A Lewis basic CeO2 cocatalyst expedites two-electron air electroreduction at the theoretical limit
Open Access Communication

Synthesis and characterization of ultra-small octahedral PtNiCo skeletons with high activity for the oxygen reduction reaction

Here, we report the synthesis of a ternary PtNiCo octahedral skeletal catalyst for the oxygen reduction reaction (ORR).

Graphical abstract: Synthesis and characterization of ultra-small octahedral PtNiCo skeletons with high activity for the oxygen reduction reaction
Open Access Communication

Robust engineered catalyst for the conversion of brown grease to renewable diesel via decarboxylation/decarbonylation

A novel engineered Ni–Cu/Al2O3 decarboxylation/decarbonylation catalyst achieved quantitative conversion of brown grease, excellent yield of diesel-like hydrocarbons, effective heteroatom removal, and remarkable resistance to deactivation.

Graphical abstract: Robust engineered catalyst for the conversion of brown grease to renewable diesel via decarboxylation/decarbonylation
Communication

Anti-swelling dual-network zwitterionic hydrogels with excellent mechanical properties for flexible supercapacitors and sensors

The zwitterionic dual-network hydrogel PVA/PSBMA–PA–Li2SO4 is easily prepared. Its high mechanical performance, ionic conductivity and anti-swelling properties enable it to be efficiently applied in a flexible supercapacitor and sensor.

Graphical abstract: Anti-swelling dual-network zwitterionic hydrogels with excellent mechanical properties for flexible supercapacitors and sensors
Communication

Design and integration of glass-fiber-cloth networks in PEO–LLZTO composite: a multifunctional approach for electrolyte engineering

A multifunctional PEO-based electrolyte integrating glass-fiber-cloth and LLZTO enhances Li-ion dissociation, forms a concentration gradient, and improves ionic conductivity, offering a promising strategy for next-generation solid-state batteries.

Graphical abstract: Design and integration of glass-fiber-cloth networks in PEO–LLZTO composite: a multifunctional approach for electrolyte engineering
192 items - Showing page 1 of 3

About this collection

For 60 years, ChemComm has published urgent, highly significant new findings of interest to a general chemistry readership. By showcasing the latest cutting-edge developments in this area, this special collection aims to drive innovation in creating a sustainable future – from reducing greenhouse gas emissions, driving renewable energy innovation and developing solutions to meet our energy needs. This collection includes contributions on new developments in:

  • Solar cells and photovoltaics
  • Solar fuel production and artificial photosynthesis
  • Batteries and energy storage
  • Fuel cells and hydrogen technologies
  • Biomass conversion
  • Catalysis for energy applications
  • Emerging technologies, including proof-of-concept studies

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