3rd International Conference on Advances in Chemistry & Chemical Engineering (CHENG 2026)
July 28 ~ 29, 2026, Virtual Conference
Scope & Topics
3rd International Conference on Advances in Chemistry & Chemical Engineering (CHENG 2026) serves as a premier global platform for researchers, scientists, engineers, and industry professionals to exchange knowledge, present cuttingedge research, and explore emerging innovations across the full spectrum of chemistry and chemical engineering. As these fields continue to evolve at an unprecedented pace, driven by breakthroughs in artificial intelligence, sustainable technologies, advanced materials, and nextgeneration manufacturing, CHENG 2026 aims to foster meaningful dialogue and collaboration that will shape the future of chemical sciences and engineering. The conference brings together a diverse community from academia, research institutions, and industry to engage in crossdisciplinary discussions, share transformative ideas, and build new partnerships
Authors are invited to contribute original research articles, case studies, review papers, and industrial insights that highlight significant advances, emerging trends, and practical challenges in chemistry and chemical engineering. Submissions may address any of the conference themes, including—but not limited to—the following areas:
Topics of interest
Analytical, Physical and Theoretical Chemistry
- Analytical Chemistry
- Behavioral & Cognitive Sciences
- Advanced Spectroscopy andSpectromicroscopy
- Mass Spectrometry and Imaging MS
- Electrochemical Sensors and Biosensors
- Microfluidics, LabonChip and PointofCare Diagnostics
- Environmental and Forensic Analytical Chemistry
- Chemometrics, Machine Learning and DataDriven Analytics
- PFAS Detection and UltraTrace Contaminant Analysis
Physical Chemistry and Chemical Physics
- Ultrafast Spectroscopy and Reaction Dynamics
- Soft Matter, Complex Fluids and Colloidal Systems
- Surface Science and Interface Chemistry
- Photochemistry andPhotophysics
- HighPressure, HighTemperature and ExtremeCondition Chemistry
- Mechanochemistry and SolventFree Reaction Dynamics
Theoretical and Computational Chemistry
- Multiscale Modeling and Simulation
- Molecular Dynamics and Monte Carlo Methods
- AI/MLDriven Chemical Discovery and Predictive Modeling
- Neural Network Potentials and Reactive ML Models
- Computational Catalysis and Reaction Mechanisms
- Quantum Computing for Chemical Simulations
- Mechanochemistry and SolventFree Reaction Dynamics
Organic, Inorganic and Biological Chemistry
- Organic Chemistry
- Synthetic Methodology and Reaction Innovation
- Asymmetric Synthesis and Catalysis
- Organometallic Chemistry
- Supramolecular Chemistry and Host–Guest Systems
- ElectroOrganic Chemistry andElectrosynthesis
- Green and Sustainable Organic Synthesis
Inorganic, Bioinorganic and Biological Chemistry
- Bioinorganic Chemistry and Metalloproteins
- Chemical Biology and Chemical Genetics
- Enzyme Engineering andBiocatalysis
- Nucleic Acid Chemistry and Synthetic Biology
- Protein Engineering and Directed Evolution
- Metal–Organic Frameworks (MOFs) and Covalent Organic Frameworks (COFs)
Catalysis, Reaction Engineering and Process Chemistry
- Catalysis
- Homogeneous, Heterogeneous and Enzyme Catalysis
- Photocatalysis, Electrocatalysis andPlasmonic Catalysis
- SingleAtom Catalysts (SACs)
- Operando and InSitu Catalyst Characterization
- CO₂ Conversion, Hydrogenation and Sustainable Catalysis
- Plasma Catalysis and NonThermal Activation
Reaction Engineering
- Reaction Kinetics and Mechanistic Studies
- Microreactors, Flow Chemistry and Process Intensification
- HighThroughput Experimentation and Automation
- Autonomous Labs and ClosedLoop Reaction Optimization
- Industrial Process Chemistry and ScaleUp
Environmental, Green and Sustainable Chemistry
- Green Chemistry and Circular Chemical Processes
- Circular Polymers and Chemical Upcycling of Plastics
- Environmental Remediation and Pollution Control
- Atmospheric and Aquatic Chemistry
- Microplastics andNanoplastics: Fate, Transport and Toxicology
- PFAS Degradation and Remediation Technologies
- WastetoValue Chemical Technologies
- LifeCycle Assessment (LCA) and Sustainable Process Design
- Climate Chemistry and Carbon Capture, Utilization and Storage (CCUS)
- Direct Air Capture (DAC) and Electrochemical CO₂ Capture
Energy, Electrochemistry and Advanced Chemical Systems
- Energy Chemistry
- Batteries: Liion, Naion, Kion and Multivalent Systems
- SolidState Electrolytes and SolidState Batteries
- Fuel Cells, Electrolyzers and Hydrogen Technologies
- Solar Fuels, Artificial Photosynthesis and Photovoltaics
- Thermochemical and Electrochemical Energy Storage
- Organic Batteries and RedoxActive Polymers
Electrochemistrys
- Electrocatalysis andPhotoelectrochemistry
- Redox Flow Batteries
- Electrochemical CO₂ Reduction
- Electrochemical Sensors and Interfaces
Advanced Chemical Systems
- Plasma Chemistry
- HighEnergy Materials
- Thermoelectrics and HeattoEnergy Materials
Materials Chemistry, Polymers and Nanoscience
- Materials Chemistry
- Functional Materials and Smart Materials
- Hybrid Organic–Inorganic Materials
- Crystallography and SolidState Chemistry
- Biomaterials and BioInspired Materials
- Quantum Materials and Strongly Correlated Systems
- MXenes and Emerging 2D Materials
Polymers and Soft Matter
- Polymer Synthesis and Characterization
- Sustainable Polymers and Biodegradable Plastics
- Polymer Composites and Nanocomposites
- Rheology and Polymer Physics
- SelfHealing and StimuliResponsive Polymers
Nanoscience and Nanotechnology
- Nanomaterials: Synthesis, Properties and Applications
- Nanomedicine and Drug Delivery
- NanoCatalysis and NanoElectrochemistry
- Quantum Dots, Nanophotonics andPlasmonics
- Nanoparticle Toxicology and Environmental Nanoscience
Chemical Engineering, Process Systems and Biotechnology
- Chemical Engineering
- Transport Phenomena and Multiphase Flow
- Colloids, Interfaces and Emulsions
- Separation Processes and Membrane Technologies
- Thermodynamics and Phase Behavior
- Advanced Membranes for Water, Gas and Ion Separation
Process Systems Engineering (PSE)
- Process Modeling, Simulation and Optimization
- Digital Twins for Chemical Plants
- Process Control, Automation and Industry 4.0
- Safety, Risk Assessment and Process Intensification
- Process Safety 4.0 and AIBased Hazard Prediction
Biotechnology and BioSystems Engineering
- Bioprocess Engineering and Fermentation
- Metabolic Engineering and Synthetic Biology
- Bioreactors andBiomanufacturing
- Biomanufacturing 4.0 and Continuous Bioprocessing
- BioRefineries and BioBased Chemicals
- Tissue Engineering andBiomolecular Engineering
- CellFree Biomanufacturing
Emerging and Interdisciplinary
- AI/ML for Chemical Discovery and Materials Design
- Autonomous Chemistry Labs and Robotic Experimentation
- Quantum Materials and Quantum Chemistry Applications
- Chemical Robotics, Automation and HighThroughput Labs
- Chemoinformatics and Big Data in Chemistry
- Space Chemistry andAstrochemistry
- Chemical Sensors for Health, Food and Security
- Chemical Safety, Regulation and Policy
- Education, Outreach and Diversity in Chemical Sciences
Paper Submission
Authors are invited to submit papers through the conference Submission System by May 02, 2026. Submissions must be original and should not have been published previously or be under consideration for publication while being evaluated for this conference. The proceedings of nde conference will be published by International Journal of Advances in Chemistry (IJAC) (Confirmed).
Selected papers from CHENG 2026, after further revisions, will be published in the special issue of the following journals.
Important Dates
| Submission Deadline | : | May 02, 2026 |
| Authors Notification | : | May 30, 2026 |
| Final Manuscript Due | : | June 06, 2026 |
Co - Located Event
***** The invited talk proposals can be submitted to cheng@cheng2026.org