Scopes
(The following topics include but are not limited to)
Track 1: Energy Chemistry
Electrochemical thermodynamics and kinetics
Electrode processes and charge transfer
Electrochemical interfaces and double layer theory
Electrochemical impedance spectroscopy and analytical techniques
In-situ/operating condition electrochemical characterization methods
Electrochemical calculation methods and multi-scale simulation
Ionic liquids and electrolyte chemistry
Solid-state electrochemistry and interface science
Molecular electrochemistry and electrochemical synthesis mechanism
Molten salt electrochemistry and high-temperature electrochemistry
Photoelectrochemistry and photoelectrocatalysis
Electrochemical sensing and bioelectroanalytical techniques
Application of quantum chemical calculations in electrochemistry
Artificial intelligence-assisted electrochemical research
Track 2: Battery Materials
Positive/negative electrode materials for lithium-ion batteries
Solid-state batteries and solid electrolytes
Sodium/kali/magnesium/zinc/aluminum ion batteries
Lithium-sulfur batteries and lithium-air batteries
Flow batteries and redox flow batteries
Supercapacitors and hybrid energy storage devices
Battery electrolytes, additives, and separators
Battery interface engineering and stability control
Battery failure analysis and degradation mechanism
Battery safety and thermal management technologies
Battery recycling and resource utilization
Battery manufacturing processes and equipment
Data-driven design of energy storage materials
High-energy batteries and next-generation batteries
Green hydrogen and fuel cell materials
Track 3: Electrochemical Catalysis
Electrochemical hydrogen evolution, oxygen evolution, and oxygen reduction reactions
Electrochemical carbon dioxide reduction and resource utilization
Electrochemical nitrogen reduction and green ammonia synthesis
Electrochemical organic synthesis and fine chemical conversion
Single-atom electrocatalyst design and regulation
Nanoelectrocatalysts and morphology regulation
Non-precious metal electrocatalysts development
Electrocatalyst carriers and interface engineering
Electrochemical reaction mechanism and theoretical calculation
Electrochemical activation and conversion of small molecules
Photoelectrochemical and solar fuel conversion
High-temperature electrolysis and solid oxide electrolyzers
Green electrochemistry and sustainable chemical processes
Key materials and system integration for fuel cells
Application of electrochemical catalysis in carbon neutrality and circular economy ......
Track 1: Energy Chemistry
Electrochemical thermodynamics and kinetics
Electrode processes and charge transfer
Electrochemical interfaces and double layer theory
Electrochemical impedance spectroscopy and analytical techniques
In-situ/operating condition electrochemical characterization methods
Electrochemical calculation methods and multi-scale simulation
Ionic liquids and electrolyte chemistry
Solid-state electrochemistry and interface science
Molecular electrochemistry and electrochemical synthesis mechanism
Molten salt electrochemistry and high-temperature electrochemistry
Photoelectrochemistry and photoelectrocatalysis
Electrochemical sensing and bioelectroanalytical techniques
Application of quantum chemical calculations in electrochemistry
Artificial intelligence-assisted electrochemical research
Track 2: Battery Materials
Positive/negative electrode materials for lithium-ion batteries
Solid-state batteries and solid electrolytes
Sodium/kali/magnesium/zinc/aluminum ion batteries
Lithium-sulfur batteries and lithium-air batteries
Flow batteries and redox flow batteries
Supercapacitors and hybrid energy storage devices
Battery electrolytes, additives, and separators
Battery interface engineering and stability control
Battery failure analysis and degradation mechanism
Battery safety and thermal management technologies
Battery recycling and resource utilization
Battery manufacturing processes and equipment
Data-driven design of energy storage materials
High-energy batteries and next-generation batteries
Green hydrogen and fuel cell materials
Track 3: Electrochemical Catalysis
Electrochemical hydrogen evolution, oxygen evolution, and oxygen reduction reactions
Electrochemical carbon dioxide reduction and resource utilization
Electrochemical nitrogen reduction and green ammonia synthesis
Electrochemical organic synthesis and fine chemical conversion
Single-atom electrocatalyst design and regulation
Nanoelectrocatalysts and morphology regulation
Non-precious metal electrocatalysts development
Electrocatalyst carriers and interface engineering
Electrochemical reaction mechanism and theoretical calculation
Electrochemical activation and conversion of small molecules
Photoelectrochemical and solar fuel conversion
High-temperature electrolysis and solid oxide electrolyzers
Green electrochemistry and sustainable chemical processes
Key materials and system integration for fuel cells
Application of electrochemical catalysis in carbon neutrality and circular economy ......
Important Dates/重要日期
- Submission Deadline: 2026.9.11
- Registration Deadline: 2026.9.18
- Conference Date: 2026.9.26
- Notification Date: About a week after the submission
Submission Portal/投稿方式
Mail Address: coartn_aeps@163.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
蒋老师
+86-15680824672(微信同号)
3761629232
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