Characterizes a 21700 cell electrochemically, thermally and mechanically.
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Updated Sept 23, 2026
Electric vehicle technology covers the battery, the charger and the drivetrain in an electric vehicle. On Halo, the solutions cover cell casing and thermal safety, battery chemistry for vehicle duty, charging and power conversion, and heavy-duty powertrains. Sign up to search the full network and post your specific need.
Cell casing and thermal safety
Fraunhofer Institute
Prototype 21700 cells in an aluminum case, ready to evaluate.
King Abdulaziz University
Battery case development for cylindrical cells, as a forming problem.
Institute of Advanced Materials IAAM AB
Aluminum alloy casing argued on EV charge and discharge performance.
Indian Institute of Technology
An evaluation of aluminum alloy casing for lithium-ion cylindrical cells.

Northeastern University
Characterization of aluminum casing for safety and reliability.
Clemson University
Cooling channels manufactured into a lightweight battery enclosure.
UO
University of Tennessee, Knoxville
A validated active discharge strategy for arresting thermal runaway.
Battery chemistry for vehicle duty
AM
Colorado School of Mines
Predictive electrolyte design for an aqueous lithium-sulfur cell.
Silicon-carbon anodes aimed at a solid state cell.
Sulfide silicon solid-state cells, with the stress problem addressed.
University of Connecticut
An all-solid composite cathode built for fast charging.
Lithium-sulfur paired with a supercapacitor in one vehicle system.
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Who is working on electric vehicle technology
Organizations in electric vehicle technology
Universities, startups, and suppliers with solutions in electric vehicle technology.
Electric vehicle technology organizationsInnovators in electric vehicle technology
Researchers and inventors advancing electric vehicle technology.
Electric vehicle technology expertsAbout electric vehicle technology
The battery is almost the whole set on Halo. Eight entries work on the aluminum can and the thermal safety around it, seven on the chemistry inside, and five on charging and power conversion. Heavy-duty vehicles are named in six, and no two agree on what should power one. On Halo it spans four groups, including cell casing and thermal safety, battery chemistry for vehicle duty, and charging and power conversion.
Stage of development. Work on electric vehicle technology on Halo comes mostly from university programs. 40% of the solutions are in market. University of Tennessee, Knoxville has the most, followed by Syracuse University. Co-development and sponsored research are the usual partnering routes, and about 29% of the solutions that state terms offer equity investment.
Three trends in electric vehicle technology on Halo
The aluminum can, again. Eight entries work on cylindrical cell casing and thermal safety, six of them universities, covering alloy development, charge and discharge performance, safety characterization, integrated cooling channels and an active discharge strategy for runaway. It is the same cluster that runs through energy storage and critical minerals, reached from the vehicle side.
Six entries for heavy duty, six different answers. A solid-state cell, an aluminum-air flow battery with swappable anodes, direct methanol fuel cells, hybrid storage, lithium-sulfur with a supercapacitor, and wireless charging at high power. Nobody agrees on what should move a truck, and the duty cycle is the only thing they hold in common.
Charging is a power electronics problem. A multi-level converter, converters that monitor their own health in real time, resonance charging through a hypercapacitor, hybrid systems tuned for fast charge. Battery chemistry limits how fast a cell will take charge, and these five work on everything between the grid and that limit.
Frequently asked questions
What is electric vehicle technology?
Electric vehicle technology covers the battery, the charger and the drivetrain in an electric vehicle. It spans aluminum casings and cell formats, battery chemistry chosen for vehicle duty, charging and power conversion including wireless charging for heavy vehicles, and the powertrains built for heavy-duty work. Vehicle manufacturers, cell makers and charging operators are the buyers.
What are examples of electric vehicle technology?
Four examples of electric vehicle technology solutions on Halo include:
- Characterizes a 21700 cell electrochemically, thermally and mechanically. (Auburn University)
- Predictive electrolyte design for an aqueous lithium-sulfur cell. (Colorado School of Mines)
- A multi-level power converter built for vehicle charging. (University of Alberta)
- Hybrid storage sized for a heavy-duty electric vehicle duty cycle. (Purdue University, Northwest)
What are the latest electric vehicle technology innovations?
The most recently updated electric vehicle technology solutions on Halo include:
Which companies and suppliers are developing electric vehicle technology?
There are 443 organizations with electric vehicle technology solutions on Halo, 45 of them universities and research institutions. Among them are Auburn University, Fraunhofer Institute, and King Abdulaziz University. Most offer co-development or sponsored research. Sign up to see every organization working in the area and to send them your specific need.
How do I find electric vehicle technology research partners?
Browsing electric vehicle technology solutions on Halo is free. Sign up to search the full network and save the ones you want. Post your specific need to get exact matches. Organizations reply directly on the platform.
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