Energy Storage Materials

Papers
(The H4-Index of Energy Storage Materials is 113. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2022-08-01 to 2026-08-01.)
ArticleCitations
Nanoporous polymeric membranes with tunable 10-nm pore sizes for fast Li+ ion mobility and enhanced cyclability in lithium metal batteries492
Dynamic stable interface between CNT and nanosilicon for robust anode with large capacity and high rate performance455
Improving the rate performance of lithium metal anodes: In-situ formation of 3D interface structures by mechanical mixing with sodium metal370
A review of flexible potassium-ion based energy storage devices330
A triphasic membrane-less battery based on salting-out effect employing metal-free redox materials312
Multifunctional amino-functionalized Zr-based metal-organic frameworks: A breakthrough in enhancing the stability and performance of Ni-rich cathode Li metal batteries in water-prone environments294
An induced recrystallization self-healing separator for stabilizing ultra-long cycles of aqueous sodium ion batteries279
The intermolecular interaction enables ordered ion transport in quasi-solid-state electrolyte for ultra-long life lithium-metal battery269
Lattice-oxygen-driven selective oxidation strategy for stable argyrodite solid-state lithium metal batteries265
Toward breakthroughs in wide-temperature aqueous sodium-ion batteries: Challenges, advances and prospects251
Solid polymer electrolytes with fragment-separated microphase for advanced Li ion transport and highly stable lithium metal batteries245
An aqueous Zn||Br2 battery by electrolyte activating the positive charge of cyanidin additive to resolve challenges of both anode and cathode242
Trade-off between reversibility and fast Zn2+ kinetics: Toward ultra-stable low-temperature aqueous zinc-ion batteries241
NASICON-type LATP solid electrolytes for lithium metal batteries: Fundamentals to AI-driven materials design234
Metal-N/P coordination assisted construction of robust heterointerface for stable and superior-rate electrodes in battery-type supercapacitors229
Enhancing high-rate plateau capacity of hard carbons by TiC-mediated closed pore formation and heterojunction engineering for sodium-ion batteries229
Degradation mechanism and assessment for different cathode based commercial pouch cells under different pressure boundary conditions228
Ion-selective covalent organic frameworks boosting electrochemical energy storage and conversion: A review223
Corrigendum to “Modulating metal-free Zn-bromine batteries with covalent organic framework anode” [Energy Storage Materials 67 (2024) 103294]217
Fabricating high-energy-density bimodal cathodes using radially oriented rod-shaped primary particles214
One plus one can be greater than two: Synergistic cathode–electrolyte engineering for high-voltage Ni-Rich cathodes214
Tailoring the electronic microenvironment of COF nanochannels enable fast ion transport kinetics in lithium metal batteries207
Coordination environment modulation to optimize d-orbit arrangement of Mn-based MOF electrocatalyst for lithium-oxygen battery205
Polarization-Induced full-space electric field enables photo-assisted Li-O2 batteries with low overpotential and long cycle life205
Mitigating chain degradation of lithium-rich manganese-based cathode material by surface engineering204
Interfacial engineering of sNCM811 cathodes with P3HT coatings for enhanced ion/electron transport and oxygen stability in sulfide-based all-solid-state batteries204
Dual-functional chloropyrazine additives for enhanced performance of lithium-sulfur batteries200
Spatial reconfiguration chemistry to boost closed-pore formation in polymer-derived hard carbon for superior sodium storage200
Materials advancements in solid-state inorganic electrolytes for highly anticipated all solid Li-ion batteries194
Thick electrodes for electrochemical relithiation to regenerate spent battery powder190
Prospects of high energy Ni-based lithium-rich layered oxides187
Layered/spinel heterostructured manganese-based oxide cathodes for advanced Li/Na-ion batteries185
Novel air-rechargeable aqueous Zn-based batteries with N-doped hierarchical-porous carbon as the capacitor-type cathode183
Decoupled measurement and modeling of interface reaction kinetics of ion-intercalation battery electrodes183
Composite lithium metal anode with fast ion conduction and interface passivation for sulfide-based all-solid-state batteries180
Tri-modal machine learning powers efficient catalyst discovery for high-performance energy storage180
Active stress-dissipating Si hybrid anode stabilizes sulfide solid-state battery interface180
High-performance environmental adaptive microsupercapacitors from multifunctional hydrogel via modulating ionic hydration and hydrogen bonds177
Upgrading carbon utilization and green energy storage through oxygen-assisted lithium-carbon dioxide batteries176
Acetamide-based hydrated eutectic electrolytes for supercapacitors with high voltage and low self-discharge175
Interfacial bonding enhances MXene/Sb2Se3 composites toward cyclic stability and fast aluminum storage174
Efficient implementation of kilogram-scale, high-capacity and long-life Si-C/TiO2 anodes169
Interface engineering of electron-ion dual transmission channels for ultra-long lifespan quasi-solid zinc-ion batteries169
Thermal effects of solid-state batteries at different temperature: Recent advances and perspectives167
Regulating the Fe-spin state by Fe/Fe3C neighbored single Fe-N4 sites in defective carbon promotes the oxygen reduction activity167
Enabling durable electrolyte-free silicon anode in thin sulfide electrolyte membrane-based all-solid-state lithium batteries via failure mechanism study166
Flexible solid-state lithium-sulfur batteries based on structural designs166
Evaluating the functions of the key dopant elements in multi-metal oxide electrocatalysts for high-performance Li-O2 batteries164
An optimized electrically conductive Si-Fe matrix to boost the performance of Si electrodes in Li-ion batteries163
Balance of sulfur doping content and conductivity of hard carbon anode for high-performance K-ion storage161
Regulating closed-pore concentration of hard carbon for ultrahigh plateau capacity sodium-ion batteries161
New insights into the critical role of inactive element substitution in improving the rate performance of sodium oxide cathode material161
Reduced eg-t2g gap of high-entropy alloys enables lithium-sulfur battery to stably operate under ultra-wide temperature range160
Strategically tailored polyethylene separator parameters enable cost-effective, facile, and scalable development of ultra-stable liquid and all-solid-state lithium batteries158
Monitoring and control of internal temperature in power batteries: A comprehensive review157
A data-driven method for extracting aging features to accurately predict the battery health155
Tailoring the nucleation and growth routes of discharge products for lithium-oxygen batteries through the facet engineering of Ni2P catalysts153
Tailored electronegative-driven MOF channels with bimetallic coordination for synergistic Zn2+ transport enabling dendrite-free Zn anodes151
Multiscale interfacial stress evolution and regulation strategies for lithium metal deposition in solid-state batteries151
Decorating silicon surface by an electroactive covalent organic framework to develop high-performance lithium-ion batteries151
Breaking kinetic bottlenecks: A full-range kinetic analysis to accelerate industrial-scalable ultrahigh-nickel cathodes151
Central metal coordination environment optimization enhances Na diffusion and structural stability in Prussian blue analogues150
Construction of lithophilic solid electrolyte interfaces with a bottom-up nucleation barrier difference for low-N/P ratio Li-metal batteries150
Electrodeposition of metal foils for battery current collectors: Status and challenges149
Electrolytes for bromine-based flow batteries: Challenges, strategies, and prospects149
Important consideration for interface engineering of carbon-based materials in sulfide all-solid lithium-ion batteries148
Green synthesis and applications of MXene for lithium–sulfur batteries147
Molecularly engineered three-dimensional covalent organic framework protection films for highly stable zinc anodes in aqueous electrolyte146
Polymer dielectrics intercalated with a non-contiguous granular nanolayer for high-temperature pulsed energy storage144
Identifying the importance of functionalization evolution during pre-oxidation treatment in producing economical asphalt-derived hard carbon for Na-ion batteries142
Advancing high-voltage halide-based solid-state batteries: Interfacial challenges, material innovations, and applications139
Competitive solvation with regulated ion-coordination chemistry toward dendrite-free and long-life Zn metal anodes138
Zwitterionic interface engineering enables ultrathin composite membrane for high-rate vanadium flow battery138
Progress and challenges in ultrasonic technology for state estimation and defect detection of lithium-ion batteries134
Specialized convolutional transformer networks for estimating battery health via transfer learning134
A design guideline of graphite/silicon composite electrode for extremely fast charging Li ion batteries134
Glutamate as a bio-compatible electrolyte additive for sustainable high-performance magnesium-air batteries133
Rate-limiting mechanism of all-solid-state battery unravelled by low-temperature test-analysis flow133
Can sulfide solid electrolytes for lithium-ion batteries be handled in dry rooms? – A multiprobe approach132
Advanced design strategies for enhancing the thermal stability of Ni-rich co-free cathodes towards high-energy power lithium-ion batteries132
Interface Compatibility in Sulfide-Based All-Solid-State Batteries: Challenges and Strategies at the Electrode–Electrolyte Interfaces131
In-situ constructing surface intergranular carbonaceous conductive frameworks and protective layers of Ni-rich layered oxide cathodes131
Transformer enables ion transport behavior evolution and conductivity regulation for solid electrolyte130
Conversion mechanism of sulfur in room-temperature sodium-sulfur battery with carbonate-based electrolyte130
Strategies for mitigating the dissolution of organic electrodes in rechargeable batteries129
Engineering pore-anchored d-π-d spin channels in carbon fibers for efficient oxygen electrocatalysis in flexible zinc-air batteries129
Dual-site reinforcement unlocks high-energy O3-type layered cathodes for sodium-ion batteries127
Coupled electro-chemo-mechanical degradation in lithium-ion batteries under forced vibration: a multiphysics analysis127
Spherical metal mechanism toward revolution of Zn growth for ultrafast plating/stripping kinetics126
Initiating cationic-anionic chemistry with stepwise surface-to-inner conversion in copper selenide superstructures for high-energy rechargeable magnesium batteries126
g-C3N4 in situ derived ionic-electronic dual-conducting interlayer with N-rich sites for long lifespan sodium metal anodes125
Editorial Board125
Quasi-solid-state sulfur cathode with ultralean electrolyte via in situ polymerization124
Thermal decomposition mechanism of lithium methyl carbonate in solid electrolyte interphase layer of lithium-ion battery123
Synergistic biomass electrolyte via mechanochemistry enables ultralong-life dendrite-free zinc anodes123
Conduction channel creation by interstitial site engineering in otherwise insulating Na6ZnS4 for Na-conducting solid-state electrolytes123
High-Capacity spatial confined deposition/stripping enabled by biphasic modulation strategy for highly reversible zinc anodes119
Nitrogen and atomic Fe co-doped hollow carbon nanocages supporting RuPd nanoclusters as extraordinary high-performance nanoreactor-like cathode for lithium–oxygen batteries119
An Janus-type buffer layer with ion conductive and electron insulative interface enabling dendrite-free solid-state lithium metal batteries119
Tuning ion transport and interfacial stability in solid-state electrolytes: The critical role of dielectric constant119
Rare-earth ions induced pre-excitation of intercalation-conversion anode to achieve fast potassium-ion storage119
A farewell message from the founding editor-in-chief, prof. Hui-Ming Cheng118
Achieving high capacity retention for SnS2 anodes via the solvent-driven reversible conversion-alloying reactions118
Failure mechanisms and current collector design for sodium metal anodes: From thermodynamic-kinetic coupling to structural-functional optimization117
Electrolyte-free graphite electrode with enhanced interfacial conduction using Li+-conductive binder for high-performance all-solid-state batteries117
Unraveling the intercalation chemistry of multi-electron reaction for polyanionic cathode Li3V2(PO4)3117
Regulating solvation structure and enhancing anion-derived solid electrolyte interphase with N, N'-Dimethylpropyleneurea Co-solvent for long-term and dendrite-free Zn metal anodes117
S-p and p-p orbital hybridization induced electronic structure reconfiguration toward manipulating redox behavior of Li-Argyrodite electrolyte for enhanced lithium-compatibility116
Ferromagnetic Ru1Co: breaking linear scaling relation via electronic-spin synergy for high-efficiency lithium-oxygen batteries116
Enhancing structural flexibility in P2-type Ni-Mn-based Na-layered cathodes for high power-capability and fast charging/discharging performance116
Synergizing self-expandable ion channels and electrokinetic phenomena in supramolecular anodes enables extremely fast-charging lithium-ion batteries115
Dynamic solvation shielding electrolyte enables ultra-wide temperature Zn metal batteries115
Enhancing the stability of Li-Rich Mn-based oxide cathodes through surface high-entropy strategy113
Efficient Li2O2 oxidation kinetics of perovskite-type lanthanum chromium-based oxide by promoter interface formation for lithium-oxygen batteries113
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