Materials for Energy Storage

Development of Low-Cost Sodium-ion Battery: Fabrication and Application of NASICON Based Electrodes

Development of Low-Cost Sodium-ion Battery: Fabrication and Application of NASICON Based Electrodes Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) High potential (3.0V) and high capacity (75mAh/g) Stable intercalation cathode (Na3Fe2(SO4)2PO4) (at 1C and after 50cycle) prepared at low temperature flexible synthesis process. New […]

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Solid state supercapacitor

Solid state supercapacitor Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Activated carbon plays a crucial role in energy storage systems, particularly in the field of electrochemical energy storage and Capacitive deionization due to its electrode material properties, high porosity, capacitance, reversibility, long cycle

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Development of Ni/Co/Mn/MWCNTs based Nanocomposites as Positive Electrode and Low cost ‘Green’ Carbon obtained from Bio-wastes as Negative Electrode Materials for Hybrid Supercapacitors

Development of Ni/Co/Mn/MWCNTs based Nanocomposites as Positive Electrode and Low cost ‘Green’ Carbon obtained from Bio-wastes as Negative Electrode Materials for Hybrid Supercapacitors Subcategory (under Clean Energy): Storage Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Asymmetric / Symmetric Supercapacitors were fabricated in the form of coin Transition metal oxides

Development of Ni/Co/Mn/MWCNTs based Nanocomposites as Positive Electrode and Low cost ‘Green’ Carbon obtained from Bio-wastes as Negative Electrode Materials for Hybrid Supercapacitors Read More »

Graphene Protected Si Nano Spheres (Interconnected) For Developing High Energy Density Li Ion Battery

Graphene Protected Si Nano Spheres (Interconnected) For Developing High Energy Density Li Ion Battery Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Co-deposition of Si nano-spheres and grapheme has been carried out from ionic liquid bath at room temperature on Au, grapheme coated Cu

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Reversible Alkali Metal Based Hydrides for High Temperature Thermal Energy Storage

Reversible Alkali Metal Based Hydrides for High Temperature Thermal Energy Storage Subcategory (under Clean Energy): Hydrogen Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) MH- based tri-generation system that can provide simultaneous cooling, heat upgradation, and thermal energy storage at higher temperatures is developed. The performances of thermal-driven and compressor-driven

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Development of Bipolar Lead Acid Battery for Renewable Energy Storage Applications

Development of Bipolar Lead Acid Battery for Renewable Energy Storage Applications Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Various types of substrates such as carbon composites, metallic substrates, oxide coated metallic substrates, Silicon sub- strates and multilayered hybrid substrates are tested for the

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Design and Development of PCM based Pilot Solar Hybrid Thermal Storage System for Low Temperature Application

Design and Development of PCM based Pilot Solar Hybrid Thermal Storage System for Low Temperature Application Subcategory (under Clean Energy): Solar (thermal) Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) This research work has innovated a technology that could bridge a demand supply gap caused by the non-availability of solar

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Design and processing of nanostructured hybrid composite materials for electrochemical energy storage

Design and processing of nanostructured hybrid composite materials for electrochemical energy storage Subcategory (under Clean Energy): Storage Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) We started the project by working on three different materials Co3O4, MnO2 and MoS2 and then we focused on MoS2 as a promising electrode material

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Low-cost Iron Based Redox Flow Batteries For Energy Storage Applications

Low-cost Iron Based Redox Flow Batteries For Energy Storage Applications Subcategory (under Clean Energy): Storage Technology Readiness Level (TRL): TRL 5 – Large prototype Technology Outline (Process Description) Low-cost Iron-based Redox Flow Batteries (IRFBs) are a promising technology for efficient and sustainable energy storage in renewable energy systems. IRFBs utilize abundant and inexpensive iron-based electrolytes,

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Thermoelectric Materials

Thermoelectric Materials Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Phase boundaries, interfacial dislocations, and optimal graphene nano-inclusions play a significant role in improving phonon scattering and thus decreasing lattice thermal conductivity. An order of magnitude rise in the thermoelectric (TE) performance of the

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