The Centre of Excellence in Deep Technology (CoEDT)
The Centre of Excellence in Deep Technology (CoEDT) focuses on sustainable energy, advanced energy storage, and climate engineering to address critical 21st-century challenges. The centre develops green deep-tech solutions, including robotic systems for handling and recycling spent batteries, enabling a circular economy. CoEDT advances next-generation Advanced Chemistry Cells while supporting deep-tech startups by solving fundamental science and engineering problems.
Energy and energy storage technologies, alongside environmental and climate engineering, are the lifelines of 21st-century socioeconomic growth and prosperity. However, the rapid industrialization of energy storage devices poses significant challenges to climate sustainability, resource security, and global geopolitical balance. The Centre of Excellence in Deep Technology (CoEDT) is dedicated to developing technology-driven, sustainable green solutions across the energy and storage ecosystem. A key focus area is the design and deployment of advanced robotic systems for the safe handling, disassembly, and recycling of spent energy storage devices, enabling a robust circular economy. CoEDT concentrates on leveraging and advancing state-of-the-art technologies to deliver novel, market-ready solutions for complex and often unresolved challenges. In parallel, the center actively pursues the invention of next-generation technologies in the domain of Advanced Chemistry Cells (ACC). Advanced Chemistry Cell (ACC) batteries constitute a foundational deep-technology layer of the global energy transition. They are critical to electric mobility, renewable energy integration, grid stability, and industrial decarbonization. India is rapidly positioning itself as a strategic battery manufacturing and innovation hub, supported by strong policy backing, rising domestic demand, and increasing private capital participation. For investors, the ACC sector in India represents a long-term structural opportunity with multiple value-creation pathways, cell manufacturing, next-generation chemistries, battery management software, and circular economy solutions.
Beyond technology development, CoEDT plays a strategic role in strengthening the deep-tech innovation ecosystem. The centre supports deep-tech startups by addressing fundamental scientific and engineering challenges rather than merely commercializing existing solutions. CoEDT also serves as a coordination platform to align academic research with industrial needs, ensuring effective knowledge transfer, accelerated innovation, and scalable impact.
Vision
To become a global leader in deep-technology innovation for sustainable energy, advanced storage, and climate engineering, driving long-term socioeconomic growth through green, resilient, and circular solutions.
Mission
- To develop breakthrough deep-tech solutions in energy storage, Advanced Chemistry Cells, and climate engineering.
- To enable a circular economy through automation, robotics, and sustainable recycling of energy storage systems.
- To strengthen the deep-tech ecosystem by bridging academia, industry, and startups around fundamental scientific and engineering challenges.
Our Core Team
Advisory Members
Research Advisory Board
Research Focus Areas
Our interdisciplinary research ecosystem focuses on advanced technologies, sustainability, automation, and innovation-driven entrepreneurship to build impactful solutions for the future.
Advanced Energy Storage & Chemistry Cells
Research on next-generation batteries, advanced materials, and innovative cell technologies for efficient and sustainable energy storage systems.
Sustainable Manufacturing & Circular Economy
Developing green manufacturing processes, lifecycle design methodologies, and resource-efficient systems to promote sustainability and circular economy principles.
Robotics & Automation for Battery Recycling
Intelligent robotic systems and automation technologies for efficient handling, dismantling, and recycling of spent energy storage devices.
Climate & Environmental Engineering
Technologies and engineering solutions focused on reducing environmental impact and improving sustainability across the energy and industrial value chain.
Deep-Tech Startup Enablement
Supporting early-stage deep-tech ventures solving core scientific and technical challenges through mentorship, incubation, and innovation ecosystems.
Expected Technological Breakthroughs
Advancing next-generation recycling, automation, and sustainability technologies to redefine the future of energy storage and battery ecosystems.
Direct Recycling
Achieving 80β90% recovery of Cathode Active Materials (CAMs) at commercial scale through advanced direct recycling technologies.
AI & Robotics
Full automation of mixed-stream battery sorting and handling using intelligent AI-driven robotic systems.
Electrochemical Recycling
Zero-liquid-discharge recycling systems with minimal reagent usage for environmentally sustainable battery recovery processes.
Digital Product Passport (DPP)
Development of global battery traceability and digital passport systems to improve lifecycle transparency and sustainability tracking.
LFP Recycling
Efficient and profitable recovery of iron and phosphorus (Fe/P) enabling reuse in manufacturing of new LFP battery cells.
India-Focused Deep Tech Opportunities
CoEDT is driving innovation through advanced deep-tech solutions tailored to Indiaβs evolving energy, sustainability, and circular economy ecosystem.
Urban Mining Hubs
Development of urban mining hubs strategically co-located with EV manufacturing clusters for efficient battery material recovery and recycling operations.
LFP-Dominant Recycling
Recycling technologies aligned with Indiaβs growing Lithium Iron Phosphate (LFP) battery chemistry ecosystem for sustainable material recovery.
AI-Powered Disassembly Systems
Intelligent AI-enabled systems for automated disassembly and processing of e-waste-dominated battery sources.
Modular Micro-Recycling Units
Compact and modular recycling units designed for distributed EV battery collection and localized material recovery.
Biomass-Based Leachants & DES Research
Advanced academic research focused on sustainable biomass-based leachants and Deep Eutectic Solvent (DES) innovations for greener recycling technologies.
Policy & Regulatory Support
Strong regulatory momentum through initiatives such as the Battery Waste Management Rules, enabling accelerated adoption of sustainable recycling ecosystems.
Contact Details
For technological collaborations, industrial partnerships, research initiatives, and innovation opportunities, connect with us.
Dr. Pradeep K Jha
Professor, Department of Chemistry and Management
School of Basic and Applied Science
Director, Center of Excellence Deep Technology (CoEDT)
Advance Chemistry Cells (ACCs) β Energy, Storage and Climate Engineering
SGT University, Gurugram, Haryana, India
