Themed collection Most popular 2025 energy storage articles

16 items
Open Access Review Article

Advancements in supercapacitors: breaking barriers and enabling amazing applications

The present review article provides a way to design high-performance energy storage materials based on organic compounds for flexible electronics and wearable device architectures.

Graphical abstract: Advancements in supercapacitors: breaking barriers and enabling amazing applications
From the themed collection: Most popular 2025 energy storage articles
Open Access Review Article

Hierarchical interface engineering for advanced magnesium-based hydrogen storage: synergistic effects of structural design and compositional modification

Interface engineering fundamentally revolutionizes magnesium-based hydrogen storage systems by orchestrating atomic-scale interactions and mass transport pathways through synergistic integration of structural design and compositional modification.

Graphical abstract: Hierarchical interface engineering for advanced magnesium-based hydrogen storage: synergistic effects of structural design and compositional modification
From the themed collection: Most popular 2025 energy storage articles
Open Access Review Article

Sustainable and cost-effective electrode manufacturing for advanced lithium batteries: the roll-to-roll dry coating process

This review highlights the roll-to-roll dry coating process, a scalable and industrially viable approach, by introducing its underlying mechanisms, latest developments, and applications.

Graphical abstract: Sustainable and cost-effective electrode manufacturing for advanced lithium batteries: the roll-to-roll dry coating process
From the themed collection: Most popular 2025 energy storage articles
Open Access Review Article

Biomass-derived carbon dots: synthesis, modification and application in batteries

The review aims to offer a comprehensive overview of the advancements made in harnessing BCDs for electrochemical energy storage applications.

Graphical abstract: Biomass-derived carbon dots: synthesis, modification and application in batteries
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Addressing first cycle irreversible capacity in lithium-rich layered oxides by blending with delithiated active materials

Low coulombic efficiency in the first redox cycle for lithium-rich oxides (LRO) can be successfully mitigated through blending with delithiated LiFePO4.

Graphical abstract: Addressing first cycle irreversible capacity in lithium-rich layered oxides by blending with delithiated active materials
Open Access Edge Article

Impact of the d0 transition metal on local structural transformations in disordered rock salt cathodes

Variation in the d0 transition metal element has a profound impact on the local structural transformation occurring in Mn-rich disordered rock salt cathodes, ultimately influencing their electrochemical performance.

Graphical abstract: Impact of the d0 transition metal on local structural transformations in disordered rock salt cathodes
Open Access Edge Article

Highly entangled P(VDF-TrFE) solid-state electrolytes for enhanced performance of solid-state lithium batteries

Poly(vinylidene fluoride-co-trifluoroethylene) solid-state polymeric electrolyte not only stabilizes all-trans conformation that forms continuous fluorine channels but also establishes a 3D interconnected ion transport network.

Graphical abstract: Highly entangled P(VDF-TrFE) solid-state electrolytes for enhanced performance of solid-state lithium batteries
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Revisiting the ion dynamics in LixCoO2 and NaxCoO2

By combining operando muon spin spectroscopy and molecular dynamics simulations, this study reveals how ion size, electrostatic interactions, and crystal structure influence self-diffusion in layered LixCoO2 and NaxCoO2.

Graphical abstract: Revisiting the ion dynamics in LixCoO2 and NaxCoO2
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Enhanced ion intercalation in NixK1−2xTiNbO5 enabled by redox active Ni exchange for potassium-ion batteries

The ion-exchange of structural K+ in KTiNbO5 with Ni2+ can increase the electrochemical intercalation of K+, enhancing the performance as a negative electrode material for potassium-ion batteries.

Graphical abstract: Enhanced ion intercalation in NixK1−2xTiNbO5 enabled by redox active Ni exchange for potassium-ion batteries
From the themed collection: 2025 Chemical Science HOT Article Collection
Open Access Edge Article

Hierarchical hollow nanospheres of imine-based covalent organic frameworks with built-in Ag sites for fast-charging lithium metal batteries

Lithiophilic imine-based covalent organic frameworks (ICOFs) with built-in silver (Ag) sites (Ag@ICOFs) are demonstrated to effectively guide dendrite-free lithium deposition.

Graphical abstract: Hierarchical hollow nanospheres of imine-based covalent organic frameworks with built-in Ag sites for fast-charging lithium metal batteries
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Unlocking the potential of a multi-electron p-type polyheterocycle cathode: when it meets a small-size and high-charge anion

A multi-electron p-type polyheterocycle cathode compatible with the small-size and high-charge SO42− anion unlocks high utilization (99.5%) of phenothiazine/piperazine units with ultralow activation energy (0.20 eV) for better Zn-organic batteries.

Graphical abstract: Unlocking the potential of a multi-electron p-type polyheterocycle cathode: when it meets a small-size and high-charge anion
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Umpolung of a covalent organic framework for high-performance cathodic sodium ion storage

Umpolung of the typical p-type TPA into n-type ATTO contributes to the COF electrode with a remarkable cathodic capacity of 286.31 mA h g−1 at a current density of 0.1 A g−1 in SIBs.

Graphical abstract: Umpolung of a covalent organic framework for high-performance cathodic sodium ion storage
Open Access Edge Article

Dissecting ionic favorable hydrogen bond chemistry in hybrid separators for aqueous zinc-ion batteries

Hydrogen bond chemistry in a boron nitride-polyacrylonitrile separator is elucidated through in situ detections with its effect on Zn2+ desolvation and ion transport, providing aqueous zinc-ion batteries with improved electrochemical performance.

Graphical abstract: Dissecting ionic favorable hydrogen bond chemistry in hybrid separators for aqueous zinc-ion batteries
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Stereochemical expression of Bi 6s2 lone pairs mediates fluoride-ion (De)insertion in tunnel-structured Bi2PdO4 and Bi1.6Pb0.4PtO4

An energy storage concept using anions as charge carriers is explored based on solution-phase fluoride-ion insertion in periodic solids. Redox reactions are mediated by d-block centers, whereas Bi3+ lone pairs enable reversible F-ion diffusion.

Graphical abstract: Stereochemical expression of Bi 6s2 lone pairs mediates fluoride-ion (De)insertion in tunnel-structured Bi2PdO4 and Bi1.6Pb0.4PtO4
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

High temperature in situ gas analysis for identifying degradation mechanisms of lithium-ion batteries

This study uses online electrochemical mass spectrometry to track the gassing behavior of carbonate-based electrolyte mixtures in lithium-ion batteries, uncovering key thermal degradation processes.

Graphical abstract: High temperature in situ gas analysis for identifying degradation mechanisms of lithium-ion batteries
From the themed collection: Most popular 2025 energy storage articles
Open Access Edge Article

Li1.6AlCl3.4S0.6: a low-cost and high-performance solid electrolyte for solid-state batteries

The Cl–S mixed-anion sublattice of Li1.6AlCl3.4S0.6 creates face- and edge-shared octahedra that connect to form 3D ion conduction pathways with low activation energy barriers.

Graphical abstract: Li1.6AlCl3.4S0.6: a low-cost and high-performance solid electrolyte for solid-state batteries
From the themed collection: Most popular 2025 energy storage articles
16 items

About this collection

This specially curated collection highlights some of our most popular articles from 2025 focusing on energy storage research.

This collection presents some outstanding contributions to the field, covering work looking at batteries (including manufacture, new electrode materials and mechanistic understanding) as well as alternative energy storage technologies, such as supercapacitors and hydrogen storage.

As with all Chemical Science articles, this collection is completely free to access and read. We hope you enjoy browsing through this collection.

If a particular article has inspired you, do feel free to share on social media using the buttons on each article landing page and use our hashtag: #ChemSciMostPopular


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