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Ioneras

@ioneras.com
258 followers 692 following 7.3K posts

Ioneras™️ tracks Li-ion and Na-ion battery research developments globally. Providing specialized sodium-ion battery consulting, technical analysis, and strategic advisory services. Connect for Sodium-ion battery supply: ioneras.com

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Ioneras @ioneras.com · 27/11/2025
Ioneras home energy storage system, NFPP sodium-ion: safer chemistry, wider temperature tolerance, and true cost efficiency.#sodiumbattery#battery
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Ioneras @ioneras.com · 20/11/2025
We have been testing our new IONERAS™ BMS module across various vehicles, including cars, RVs, motorcycles, off-road trucks, and small boats. It is fascinating to observe how quickly sodium-ion systems are finding practical applications. #Sodiumion #battery #energy
Ioneras BMS
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Ioneras @ioneras.com · 06/11/2025
#sodiumionbattery #battery
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Ioneras @ioneras.com · 06/11/2025
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Ioneras @ioneras.com · 06/11/2025
Key Specifications - Nominal Voltage: 48V - Nominal Capacity: 74Ah - Energy: 3.55 kWh - Working Voltage Range: 25.5 ~ 55.25V - Configuration: 17S2P - Cell Type: 37Ah soft-pack sodium-ion cells - Cycle Life: > 5,000 cycles - Operating Temp (discharge): -40°C to 80°C
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Ioneras @ioneras.com · 06/11/2025
🚀 Introducing the IONERAS 48V Sodium-Ion Energy Storage Battery IONERAS brings a new generation of safe, durable, and cost-efficient energy storage. Our 48V sodium-ion rack battery is designed for telecom, data centers, and renewable energy storage systems.
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Ioneras @ioneras.com · 03/10/2025
Battery research update: 🔝 Fascinating approach: Could 5V all-solid-state batteries be the future of energy storage? A fluoride shielding layer boosts both stability and Li+ conductivity, unlocking high-voltage and high-ca... www.nature.com/articles/s41... #battchat #CleanEnergy
nature.com
Five-volt-class high-capacity all-solid-state lithium batteries - Nature Energy
Realizing >5 V batteries is hindered by the instability of electrolytes. Here, a fluoride shielding layer, LiCl-4Li2TiF6, enables high-voltage, high-capacity all-solid-state batteries because of its combined oxidative stability and Li+ conductivity.
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Ioneras @ioneras.com · 03/10/2025
Battery research update: New research on bringing deformability to lithium metal demonstrates potential advances in battery technology. ⚡ www.nature.com/articles/s41... #EnergyResearch #BatteryScience
nature.com
Bringing deformability to lithium metal - Nature Energy
Void formation between the solid electrolyte layer and electrode is a critical barrier to the long-term operation of solid-state batteries. Now, an electrochemically inactive yet mechanically soft metallic phase is integrated into the lithium metal anode, which preserves the electrical contact and enables reliable operation in practical cell settings.
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Ioneras @ioneras.com · 03/10/2025
🌱 Study highlights how overcoming high-voltage limits in all-solid-state batteries with a fluoride-based shielding layer could impact future energy storage systems. www.nature.com/articles/s41... #MaterialsScience #BatteryTechnology
nature.com
Overcoming high-voltage limits in all-solid-state batteries with a fluoride-based shielding layer - Nature Energy
Voltage instability of battery materials has hindered the realization of high-voltage all-solid-state batteries (ASSBs). Now, 5 V-class ASSBs are enabled by a fluoride-based shielding layer, LiCl–4Li2TiF6, that combines high oxidative stability and Li+ conductivity. Applied to high-voltage cathodes, the shielding layer mitigates interfacial degradation and enables stable cycling at >5 V, including under high-capacity conditions.
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Ioneras @ioneras.com · 03/10/2025
Spotted compelling research: Could integrated lstm and reinforcement learning framework for predictive power forecasting and energy optimization in battery management systems be the key ... www.sciencedirect.com/science/arti... #BatteryChat #CleanEnergy
sciencedirect.com
Integrated LSTM and reinforcement learning framework for predictive power forecasting and energy optimization in battery management systems
As electric vehicles and microgrids become more widespread, smart battery energy management systems (BEMS) are essential for improving efficiency and …
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Ioneras @ioneras.com · 03/10/2025
Worth checking out: Is this what the battery industry needs? Could uneven lithium distribution inside cylindrical LFP cells be holding them back? A new 3D battery model reveals ele... www.sciencedirect.com/science/arti... #BatteryScience #EnergyResearch
sciencedirect.com
Understanding the internal electrochemical inhomogeneity in cylindrical LFP cells based on a 3D lithium-ion battery model
Electrochemical inhomogeneity in lithium-ion batteries (LIBs) significantly impacts performance and accelerates degradation over their lifespan. This …
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Ioneras @ioneras.com · 03/10/2025
Discovered compelling research: I think this fluorine doping transforms hard carbon for sodium-ion batteries, creating a tougher solid electrolyte interphase and boosting performance.... www.sciencedirect.com/science/arti... #CleanEnergy #Sustainability
sciencedirect.com
Synergistic modulation of defective engineering and solid electrolyte interphase film on hard carbon via F doping for high performance sodium-ion batteries
Hard carbon featured with the abundant precursor resources, low cost, and competitive specific capacity have garnered extensive interest as anode mate…
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Ioneras @ioneras.com · 03/10/2025
Reading about compelling research: Battery efficiency gains possible through innovative investigation into the thermal response of internal short-circuit treatment of a cylindrical li... www.sciencedirect.com/science/arti... #BatteryScience #CleanEnergy
sciencedirect.com
Investigation into the thermal response of internal short-circuit treatment of a cylindrical lithium-ion battery cell jacketed with passive cooling
This study investigates the influence of passive cooling of N-octadecane phase change material (PCM) on a cylindrical 18,650 Panasonic Lithium-ion (Li…
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Ioneras @ioneras.com · 03/10/2025
Reading about interesting research: In-situ powerline communication within lithium traction battery cells – analysis of channel in various configurations approach yields intriguing results ... www.sciencedirect.com/science/arti... #battchat #CleanEnergy
sciencedirect.com
In-situ powerline communication within lithium traction battery cells – Analysis of channel in various configurations
Smart cells—advanced battery units integrated with sensing, communication, and control capabilities—have emerged as a key enabler for next-generation …
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Ioneras @ioneras.com · 03/10/2025
Energy storage progress: 🔬 Growing li2o2 surfaces on discharge cause electrolyte degradation and capacity loss in li–o2 batteries approach yields intriguing results for battery applications. pubs.rsc.org/en/Content/A... #battchat #RenewableEnergy
pubs.rsc.org
Growing Li2O2 surfaces on discharge cause electrolyte degradation and capacity loss in Li–O2 batteries
Ether-based solvents have shown promise as the most stable candidates for the electrolyte solution in the Li–O2 battery. However, the yield of Li2O2 after discharge is less than 100%, despite achievin...
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Ioneras @ioneras.com · 03/10/2025
Anyone else seen this? Study highlights how highly conductive locally graphitized sheath on fibrous micro-si anode for high-energy li-ion battery could impact future energy stor... www.sciencedirect.com/science/arti... #BatteryScience #BatteryTechnology
sciencedirect.com
Highly conductive locally graphitized sheath on fibrous micro-Si anode for high-energy Li-ion battery
Silicon (Si) is a promising anode material for developing high-energy-density lithium-ion batteries, yet challenges remain in improving its mechanical…
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Ioneras @ioneras.com · 03/10/2025
Study highlights how lithium-exchanged molecular sieve-functionalized liquid crystal elastomer solid-state electrolyte for high-performance lithium metal batteries could impact ... www.sciencedirect.com/science/arti... #BatteryTechnology #BatteryScience
sciencedirect.com
Lithium-exchanged molecular sieve-functionalized liquid crystal elastomer solid-state electrolyte for high-performance lithium metal batteries
Interfacial problems associated with conventional polymer electrolytes, specifically lithium dendrite growth and side reactions, critically hinder sol…
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Ioneras @ioneras.com · 03/10/2025
New developments in Will this accelerate EV adoption? Could AI unlock longer-lasting batteries? A hybrid neural network now predicts lithium-ion battery health with greater accura... www.sciencedirect.com/science/arti... #Sustainability #RenewableEnergy
sciencedirect.com
A novel hybrid neural network-based state of health estimation method with multi-feature extraction for lithium-ion batteries
The reliable evaluation of lithium-ion battery state of health (SOH) holds paramount significance in sustaining its secure and stable operational perf…
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Ioneras @ioneras.com · 03/10/2025
I think this will this accelerate ev adoption? a heat-resistant, flame-retardant battery separator made from electrospun poly(m-phenylene isophthalamide) could make li ion batteries safer a... www.sciencedirect.com/science/arti... #CleanEnergy #battchat
sciencedirect.com
Superior and safer lithium-ion batteries enabled by electrospun poly(m-phenylene isophthalamide)-based separator with high heat resistance and flame retardance
Safety issues are the most urgent and challenging problems faced by lithium-ion batteries (LIBs) during their application. Promoting the whole safety …
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Ioneras @ioneras.com · 03/10/2025
Following this research: 🔋 Battery breakthrough? Scientists exploring inconsistency assessment of lithium-ion battery pack for electric vehicles based on randomized charging segme... www.sciencedirect.com/science/arti... #BatteryScience #EnergyResearch
sciencedirect.com
Inconsistency assessment of lithium-ion battery pack for electric vehicles based on randomized charging segments
With the widespread application of electric vehicles, the inconsistency problem within lithium-ion battery packs is becoming increasingly serious, whi…
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Ioneras @ioneras.com · 03/10/2025
Just found interesting research: Just published: topology-optimized binary composite conductive additive enabling 3d percolation networks for high-rate capability lithium-ion battery ... www.sciencedirect.com/science/arti... #battchat #BatteryTechnology
sciencedirect.com
Topology-optimized binary composite conductive additive enabling 3D percolation networks for high-rate capability lithium-ion battery
Graphene has emerged as a promising conductive additive candidate for commercial cathode materials (e.g., LiMn2O4, LiFePO4, and LiCoO2) to enhance the…
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Ioneras @ioneras.com · 03/10/2025
Battery research update: 🚗 Is this what the battery industry needs? Can fuzzy logic make batteries smarter? This study shows how integrating T–S fuzzy control with energy storage... www.sciencedirect.com/science/arti... #RenewableEnergy #BatteryScience
sciencedirect.com
Enhanced stability analysis of a delayed T–S fuzzy load frequency control system integrated with a battery energy storage system
This paper investigates the delay-dependent stability of load frequency control (LFC) power systems integrated with a battery energy storage system (B…
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Ioneras @ioneras.com · 03/10/2025
Interesting findings here: Exciting development in an expansion force-based method for accurate state of charge estimation across the entire lifecycle of lithium-ion batteries could a... www.sciencedirect.com/science/arti... #CleanEnergy #BatteryScience
sciencedirect.com
An expansion force-based method for accurate state of charge estimation across the entire lifecycle of lithium-ion batteries
Accurate state-of-charge (SOC) estimation is critical for lithium-ion battery safety and performance. Conventional approaches relying solely on voltag…
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Ioneras @ioneras.com · 03/10/2025
🔬 Could bn/rgo nanocomposites as efficient iodine hosts for triiodide confinement and accelerated i₂/i− redox kinetics in zinc-iodine batteries be the key to better energy storage?... www.sciencedirect.com/science/arti... #MaterialsScience #CleanEnergy
sciencedirect.com
BN/rGO nanocomposites as efficient iodine hosts for triiodide confinement and accelerated I₂/I− redox kinetics in zinc-iodine batteries
The aqueous zinc‑iodine batteries (AZIBs) have emerged as a promising candidate in the realm of next-generation energy storage technologies, primarily…
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Ioneras @ioneras.com · 03/10/2025
Battery research update: I think this 🪫 i'm particularly interested in how this can retired batteries be sorted smarter? this method uses impedance and relaxation time data to efficien... www.sciencedirect.com/science/arti... #battchat #RenewableEnergy
sciencedirect.com
An impedance-based consistency sorting method for retired batteries via distribution of relaxation time and specific frequency features
With a large number of batteries entering retirement, how to accurately detect the internal performance of batteries and effectively categorize them h…
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Ioneras @ioneras.com · 03/10/2025
🔬 Study highlights how dual-function triethyl phosphate@fumed silica-based gel electrolytes for enhancing anode performance in lead‑carbon batteries could impact future energy sto... www.sciencedirect.com/science/arti... #Sustainability #BatteryScience
sciencedirect.com
Dual-function triethyl phosphate@fumed silica-based gel electrolytes for enhancing anode performance in lead‑carbon batteries
The irreversible sulfation of the anode and hydrogen evolution issues in lead-acid batteries pose critical challenges that constrain their development…
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Ioneras @ioneras.com · 03/10/2025
Spotted compelling research: New research on simulation of li-ion battery electrolyte vapour dispersion in an enclosed and quiescent environment demonstrates potential advances in ... www.sciencedirect.com/science/arti... #CleanEnergy #BatteryTechnology
sciencedirect.com
Simulation of Li-ion battery electrolyte vapour dispersion in an enclosed and quiescent environment: an experimental and computational fluid dynamics approach
The leakage of electrolyte from a Li-ion battery cell can generate a dangerous atmosphere in enclosed environments due to the high volatility, flammab…
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Ioneras @ioneras.com · 03/10/2025
I think this could this revolutionize energy storage? could lithium-metal batteries finally deliver on their promise? a lithium zeolite-coated separator boosts ion conductivity and... www.sciencedirect.com/science/arti... #BatteryTechnology #CleanEnergy
sciencedirect.com
Lithium zeolite–coated separator for lithium-metal batteries with improved ion conductivity and long-term cycling stability
In this study, a novel ceramic-coated separator incorporating lithium-containing zeolite bikitaite (BKT; Li₂(Al₂Si₄O₁₂)) is developed to improve the e…
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Ioneras @ioneras.com · 03/10/2025
Worth checking out: Just published: chromium doped nasicon-structured na3v2(po4)3/nc@cnts cathode with multielectron transport property for high-performance sodium-ion batteri... www.sciencedirect.com/science/arti... #BatteryTechnology #MaterialsScience
sciencedirect.com
Chromium doped NASICON-structured Na3V2(PO4)3/NC@CNTs cathode with multielectron transport property for high-performance sodium-ion batteries
Na superionic conductor (NASICON)-structure Na3V2(PO4)3(NVP) material is considered to be a very promising sodium-ion battery (SIBs) cathode material …
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Ioneras @ioneras.com · 03/10/2025
Reading about fascinating research: 🚀 New research on novel equivalent circuit battery model with adaptive parameters for hybrid state of charge estimation demonstrates potential... www.sciencedirect.com/science/arti... #RenewableEnergy #BatteryScience
sciencedirect.com
Novel equivalent circuit battery model with adaptive parameters for hybrid state of charge estimation
Due to the increasing demand in electric vehicles (EVs), developments in lithium-ion battery technology are progressing rapidly. As the performance, r…
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Ioneras @ioneras.com · 03/10/2025
🌱 Lithium-ion battery state of health estimation based on statistical features derived from voltage and temperature probability density functions under realistic randomized cycl... www.sciencedirect.com/science/arti... #Sustainability #MaterialsScience
sciencedirect.com
Lithium-ion battery state of health estimation based on statistical features derived from voltage and temperature probability density functions under realistic randomized cycling conditions
Accurate battery state of health (SoH) estimation remains challenging, particularly under the variable load conditions typical of real-world operation…
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Ioneras @ioneras.com · 03/10/2025
Fascinating approach: Why do some battery packs degrade faster? This study reveals how resistance differences and state-of-health imbalances between parallel cells accelerate wear—ins... www.sciencedirect.com/science/arti... #CleanEnergy #BatteryScience
sciencedirect.com
Effect of terminal resistance and SoH asymmetry on parallel cell interaction and battery system degradation
In large-scale battery systems, differences in internal and terminal resistance among individual cells induce current imbalance and circulating curren…
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Ioneras @ioneras.com · 03/10/2025
Spotted fascinating research: Battery efficiency gains possible through innovative hybrid metallic phase change materials based battery thermal management system embedded with cir... www.sciencedirect.com/science/arti... #BatteryScience #RenewableEnergy
sciencedirect.com
Hybrid metallic phase change materials based battery thermal management system embedded with circular hollow fins for higher discharge rates
Battery thermal management systems (BTMS) require advanced and effective solutions for fast charging/discharging scenarios. The application of phase c…
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Ioneras @ioneras.com · 03/10/2025
Recent advancements in polymer matrices-based composite electrolytes for all-solid-state lithium metal batteries approach yields intriguing results for battery applications. 🚀 www.sciencedirect.com/science/arti... #BatteryTechnology #RenewableEnergy
sciencedirect.com
Recent advancements in polymer matrices-based composite electrolytes for all-solid-state lithium metal batteries: Challenges, strategies, and future directions
Organic liquid electrolytes in lithium-ion batteries pose significant safety risks, including flammability, leakage, and thermal instability. As a saf…
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Ioneras @ioneras.com · 03/10/2025
Discovered impressive research: 🌱 Solvent-free processing of lithium-ion batteries via plasma treatment of electrodes for adhesive interfaces might transform how we think about en... www.sciencedirect.com/science/arti... #EnergyResearch #BatteryScience
sciencedirect.com
Solvent-free processing of lithium-ion batteries via plasma treatment of electrodes for adhesive interfaces
The demand for lithium-ion batteries (LIBs) continues to increase as the world shifts toward sustainable energy solutions. However, conventional elect…
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Ioneras @ioneras.com · 02/10/2025
Anyone else seen this? 🚀 Just published: overcoming misconceptions in lithium metal polymer electrolyte batteries study reveals interesting battery performance improvements. pubs.rsc.org/en/Content/A... #MaterialsScience #BatteryChat
pubs.rsc.org
Overcoming misconceptions in lithium metal polymer electrolyte batteries
Lithium metal is the holy grail of anodes due to its 10-fold higher gravimetric capacity than graphite. All-solid-state lithium polymer electrolyte batteries are receiving significant attention due to...
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Ioneras @ioneras.com · 02/10/2025
Thoughts on this research? Next steps for battery diagnostics might transform how we think about energy storage. 🚀 www.sciencedirect.com/science/arti... #BatteryChat #BatteryScience
sciencedirect.com
Next steps for battery diagnostics
Batteries are a cornerstone of expanding sustainable infrastructure. Battery behavior has an impact on consumers recharging their electric vehicles, i…
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Ioneras @ioneras.com · 02/10/2025
Exciting development! Might this solve our battery limitations? Could a natural polymer unlock zinc battery potential? This study introduces a protective layer that fights corrosion and boosts pe... pubs.rsc.org/en/Content/A... #MaterialsScience #BatteryTechnology
pubs.rsc.org
A Multifunctional Natural Polymer Protective Layer Enables Improved Anti-Corrosion and Kinetics Performances for Highly Stable Zinc Anode
Aqueous zinc-ion batteries (AZIBs) featuring high theoretical capacity, intrinsic safety, and cost-effectiveness are emerging as an ideal candidate for grid-scale energy storage devices. Unfortunately...
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Ioneras @ioneras.com · 02/10/2025
New developments in I think this 💪 might this solve our battery limitations? could aqueous zinc-ion batteries finally overcome dendrite issues? this study introduces a self-healing hybrid interphase that ... pubs.rsc.org/en/Content/A... #battchat #RenewableEnergy
pubs.rsc.org
Trace molecular chelation engineering of a self-healing hybrid interphase for highly stable aqueous zinc-ion batteries
Aqueous Zn-ion batteries (AZIBs) hold promise for grid-scale storage due to their intrinsic safety and low cost, yet face critical irreversible anode degradation from dendritic proliferation and paras...
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Ioneras @ioneras.com · 02/10/2025
Impressed by this research: Just published: challenges and design opportunities for high-energy-density aqueous zinc-ion batteries study reveals interesting battery performance improvements. 🔬 pubs.rsc.org/en/Content/A... #MaterialsScience #BatteryTechnology
pubs.rsc.org
Challenges and Design Opportunities for High-Energy-Density Aqueous Zinc-Ion Batteries: From Electrochemically Active to Functional Components
Aqueous zinc-ion batteries (AZIBs) have garnered increasing attention as next-generation rechargeable batteries owing to their inherent safety, environmental friendliness, and cost-effectiveness, whic...
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Ioneras @ioneras.com · 02/10/2025
⚡ I think this promising innovation! what if your battery could store energy and make valuable chemicals? zinc-nitrate/glycerol batteries do just that—combining energy storage with chemical valorizati... pubs.rsc.org/en/Content/A... #EnergyResearch #BatteryScience
pubs.rsc.org
Rechargeable asymmetric zinc-nitrate/glycerol batteries synergizing chemical valorization and energy conversion
Aqueous rechargeable zinc (Zn)-based batteries are promising for safe and sustainable energy storage. In addition to energy storage, Zn-based batteries can be utilized for value-adding electro-reducti...
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Ioneras @ioneras.com · 02/10/2025
🌱 Study highlights how sulfur-assisted thermal reduction synthesis of moo2/mo4o11 materials as high-performance cathodes for aqueous zinc-ion batteries could impact future energy ... www.sciencedirect.com/science/arti... #BatteryScience #EnergyResearch
sciencedirect.com
Sulfur-assisted thermal reduction synthesis of MoO2/Mo4O11 materials as high-performance cathodes for aqueous zinc-ion batteries
A MoO2/Mo4O11 hetero-junction material prepared by a simple sulfur-assisted thermal reduction technique as the cathode of a water-based zinc-ion batte…
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Ioneras @ioneras.com · 02/10/2025
Really excited about this research: Research team tackles combined effect of cycle aging and temperature on the variation of the open-circuit voltage of lithium cobalt oxide batter... www.sciencedirect.com/science/arti... #BatteryScience #EnergyResearch
sciencedirect.com
Combined effect of cycle aging and temperature on the variation of the open-circuit voltage of lithium cobalt oxide batteries
A key focus in studying lithium-ion batteries (LiBs) is the estimation of their actual capacity. To this end, many algorithms rely on the relationship…
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Ioneras @ioneras.com · 02/10/2025
Worth checking out: Will this accelerate EV adoption? Can a sea urchin-inspired nanocomposite power the future? NiCo₂O₄/Fe₃O₄ designs deliver superior e... www.sciencedirect.com/science/arti... #BatteryTech #Innovation #BatteryTechnology #BatteryScience
sciencedirect.com
Sea urchin-like NiCo2O4/Fe3O4 nanocomposite as a high-performance dual-functional material for advanced lithium-ion batteries and supercapacitors
The development of advanced electrode materials with multifunctional electrochemical properties is critical for next-generation energy storage systems…
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Ioneras @ioneras.com · 02/10/2025
Worth checking out: Battery breakthrough? Scientists exploring in-situ polymerized electrolyte enabling high-voltage (4.6 v) full-cell lithium-ion batteries report promising results. 🔋 www.sciencedirect.com/science/arti... #RenewableEnergy #BatteryChat
sciencedirect.com
In-situ polymerized electrolyte enabling high-voltage (4.6 V) full-cell lithium-ion batteries
The commercial deployment of lithium batteries is limited by the safety concerns of liquid electrolytes and the poor ionic conductivity of solid-state…
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Ioneras @ioneras.com · 02/10/2025
Battery research update: Game-changing potential: Sodium-ion batteries just got a boost! By tweaking local structures, this study unlocks reversible anionic redox chemistry, paving... www.sciencedirect.com/science/arti... #Sustainability #BatteryScience
sciencedirect.com
Complete solid-solution reaction and reversible anionic redox chemistry in sodium-ion batteries enabled by local structure regulation and charge compensation
Layered iron/manganese-based oxides, recognized as promising cathode candidates for sustainable energy storage due to their high energy density and na…
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Ioneras @ioneras.com · 02/10/2025
Impressed by this research: Could a hierarchical channel structured separator with regulated ion transport and high thermal stability for lithium-ion batteries be the key to better... www.sciencedirect.com/science/arti... #Sustainability #BatteryScience
sciencedirect.com
A hierarchical channel structured separator with regulated ion transport and high thermal stability for lithium-ion batteries
The separator plays an important role in transporting ions and preventing thermal runaway, which affects the safety of lithium-ion batteries (LIBs). H…
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Ioneras @ioneras.com · 02/10/2025
Discovered notable research: An electro-thermal approach for improving safety in lithium iron phosphate batteries might transform how we think about energy storage. 🌱 www.sciencedirect.com/science/arti... #RenewableEnergy #BatteryChat
sciencedirect.com
An electro-thermal approach for improving safety in lithium iron phosphate batteries
The growing shift towards clean energy has increased the demand for electric vehicles and energy storage systems powered by lithium-ion batteries (LIB…
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Ioneras @ioneras.com · 02/10/2025
New research on analysis of battery lifespan improvement with soc battery balancing technique demonstrates potential advances in battery technology. 🔋 www.sciencedirect.com/science/arti... #CleanEnergy #RenewableEnergy
sciencedirect.com
Analysis of battery lifespan improvement with SOC battery balancing technique
The longevity and safety of lithium-ion batteries are critical in the context of electric vehicles (EVs). This paper evaluates the effectiveness of ba…
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Ioneras @ioneras.com · 02/10/2025
Battery efficiency gains possible through innovative improved storage capability and reaction mechanisms of cu/mn metal-organic framework-derived composite for aqueous zinc-ion ba... www.sciencedirect.com/science/arti... #EnergyResearch #RenewableEnergy
sciencedirect.com
Improved storage capability and reaction mechanisms of Cu/Mn metal-organic framework-derived composite for aqueous zinc-ion batteries
Excessive consumption causes severe environmental crisis, and renewable energy sources exist instability and discontinuity, developing efficient elect…
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