Liam Critchley
- Indexed articles, last 90 days
- 9
- Latest publication
- Sep 10, 2026
- Outlet visibility, for Energy-Storage.News
- Top 5M sites
- Earliest in this view
- Jul 10, 2026
Latest articles
Ore Energy's iron-air technology: LDES applications, trade-offs, deployments and next-gen cells (opens the original)
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We look at the iron-air battery technology of startup Ore Energy, including how it works and technology developments it is pursuing after a recent US$43 million fundraise. Netherlands-based Ore Energy has been developing its technology over the last few years and raising money along the way. In a recent funding round, Ore Energy secured US$43 million of Series A funding to take its iron-air BESS technology to the next level of commercialisation. This latest funding round brings the total raised
Under the hood: Inside Tesla's Megapack 3 as Texas production begins (opens the original)
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Tesla was one of the pioneers of the grid-scale battery storage market, but has faced increasing competition in the past few years. In this article we look under the hood of its latest grid-scale BESS product, the Megapack 3. Wood Mackenzie’s most recent figures pegged Tesla as the largest battery energy storage system (BESS) integrator last year, while others showed Sungrow taking the top spot. Companies generally launch new products about once a year to stay up to date and stay competitive, an
Ford Energy's grid-scale BESS product: an analysis (opens the original)
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In May, US automotive group Ford made the surprise announcement that it was launching a BESS product via new division Ford Energy. In this deep dive article, we look at its product’s specifications and how they compare to other existing solutions. Known for its automobiles, Ford, has joined some of its peers in making moves into the BESS space. The company has been using new battery innovations in its EVs, but this signals a move into other areas of the energy sector, and it has come in with a p
What 4th generation LFP batteries mean for BESS (opens the original)
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What are the technology improvements of the 4th generation of lithium iron phosphate (LFP) batteries, and what do they mean for battery energy storage system (BESS) applications? LFP batteries have been gaining a larger share of BESS and EV markets because of their safety, longevity and low cost compared to nickel manganese cobalt (NMC) batteries. The trade-off is that they have a lower energy density compared to NMC batteries, but as the generations of LFP have evolved, their energy density has
Hydrogen-iron flow batteries: How Elestor’s tech works (opens the original)
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Elestor claims its hydrogen-iron flow battery delivers 75%+ round-trip efficiency, a 20-25 year lifespan, and has a potential capex at gigawatt-hour scale of 15€/kWh for long-duration storage. In this article, we provide a breakdown of the chemistry, cost economics and real-world case studies behind Elestor’s hydrogen–iron flow battery for long-duration energy storage (LDES) using scientific papers the company has published. Long-duration energy storage (LDES) systems need low capital expenditur
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