Completed Clean Energy Materials & Manufacturing

Multi optimal Solutions for Energy Storage Systems

In plain English

AI plain-English summary

McLaren Automotive is leading a consortium to build lighter, longer-range batteries for high-performance electric cars, using new materials and modular design. Current electric vehicle batteries are too heavy, too limited in range, and too difficult to manage for the demands of supercars. The consortium—which includes a cell manufacturer, a materials technology company, and a university—aims to solve these problems by developing advanced cell materials and a modular battery architecture that can be tailored for different power and energy needs. If successful, the project could first enable high-performance electric sports cars that match the usability of petrol-powered equivalents. The modular approach and materials advances may later trickle down to volume-market electric cars, reducing their weight and improving range for everyday drivers. Beyond vehicles, lighter, more flexible battery systems could also benefit energy storage for homes and grids, where weight and modularity matter less but cost and performance still drive adoption. The work is applied engineering, not fundamental science—its goal is a practical step toward making electric powertrains viable across more vehicle types.

View original technical description
A consortium led by McLaren Automotive, the pioneering British creator of luxury sportscars and supercars, along with partners including a world-class cell manufacturer, a technology company at the forefront of materials innovation and a leading university, aims to accelerate the development of electrified powertrains to help reduce vehicle mass, minimise emissions, and match traditional powertrain usability characteristics. The consortium identifies that current electric technology is not sufficiently mature for the demands of high performance cars due to high weight, range limitations and battery management challenges. Through the development of new materials for cells and a modular designed battery, the consortium aims at delivering advances needed to achieve improved levels of functionality and performance, which may one day benefit volume car buyers.

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Original classification

Collaborative R&D

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