Sustainable Energy and Applied Innovation (SEAI) is an international, peer-reviewed, open access journal dedicated to publishing high-quality research in sustainable energy, applied sciences, engineering, technology, and innovation. The journal provides a scholarly platform for research that supports the development, integration, and application of clean, efficient, resilient, and sustainable energy systems.
The journal welcomes original research articles, review papers, technical studies, case studies, modelling studies, experimental research, and applied innovation reports. It encourages interdisciplinary contributions that connect scientific discovery with practical implementation in areas such as renewable energy, energy storage, smart grids, energy efficiency, sustainable materials, environmental technologies, applied engineering, and industrial sustainability.
With a strong emphasis on real-world impact, the journal aims to support solutions for energy transition, climate change mitigation, resource efficiency, and sustainable technological development. It serves researchers, engineers, scientists, industry professionals, policymakers, and innovators working across energy systems and applied sciences.
Aims & Scope
Sustainable Energy and Applied Innovation aims to advance research and innovation in sustainable energy, applied sciences, engineering, and technology. The journal welcomes theoretical, experimental, computational, industrial, and policy-relevant studies that contribute to sustainable development and applied technological progress.
Areas of Interest
- Renewable energy technologies and systems
- Solar, wind, hydro, geothermal, bioenergy, and thermal energy applications
- Energy storage technologies, including batteries, supercapacitors, and hybrid storage systems
- Battery materials, interfaces, diagnostics, degradation, and recycling
- Hydrogen technologies, fuel cells, and related energy systems
- Smart grids, microgrids, distributed energy systems, and grid integration
- Power systems, electrical engineering, and advanced engineering components
- Energy efficiency and demand-side management
- Clean fuels and low-carbon energy technologies
- Sustainable transport and electrification technologies
- Building energy systems and sustainable infrastructure
- Carbon capture, utilization, and storage
- Climate change mitigation technologies and climate-resilient innovation
- Sustainable materials, functional materials, and structural materials for energy applications
- Materials synthesis, processing, characterization, and computational materials design
- Materials informatics and data-driven materials discovery
- Additive manufacturing and advanced fabrication methods
- Green manufacturing, sustainable manufacturing, and circular manufacturing systems
- Smart manufacturing, Industry 4.0, and cyber-physical production environments
- Digital twins, industrial robotics, automation, and intelligent process control
- Predictive maintenance, condition monitoring, and quality control analytics
- Environmental engineering and pollution control technologies
- Waste-to-energy systems and circular resource systems
- Industrial sustainability and resource efficiency
- Applied physics, applied chemistry, and applied engineering
- Digital technologies, artificial intelligence, and data analytics for energy and applied sciences
- Techno-economic analysis, life-cycle assessment, and sustainability assessment
- Energy policy, planning, and transition pathways
- Applied innovation for sustainable development and climate resilience