Lithium-ion is the most popular rechargeable battery chemistry used today. Lithium-ion batteries power the devices we use every day.
Get a quote >>
Research in lithium-ion batteries has produced many proposed refinements of lithium-ion batteries. Areas of research interest have focused on improving energy density, safety, rate capability, cycle durability, flexibility, and reducing cost.
Get a quoteAt the Technical University of Munich, an interdisciplinary network is researching battery systems along their entire value chain. Why battery research? Electrical energy storage and battery systems have become an indispensable part of our everyday lives.
Get a quoteIt outlines the expected developments in lithium-ion battery technology and alternative or competing energy storage solutions up to 2030 and highlights dependencies between technologies for electromobility and stationary applications. Long-term scenarios up to 2050 allow questions of raw material availability, the influence of technical
Get a quoteLithium-ion battery-powered devices — like cell phones, laptops, toothbrushes, power tools, electric vehicles and scooters — are everywhere. Despite their many advantages, lithium-ion batteries have the potential to overheat, catch fire, and
Get a quoteIn order to develop future batteries, partners from science and industry from all over Europe have launched the BATTERY 2030+ research initiative. A roadmap specifies the milestones: a platform for material development using artificial
Get a quoteOne of the primary risks related to lithium-ion batteries is thermal runaway. Thermal runaway is a phenomenon in which the lithium-ion cell enters an uncontrollable, self-heating state. Thermal runaway can result in
Get a quoteAt the Technical University of Munich, an interdisciplinary network is researching battery systems along their entire value chain. Why battery research? Electrical energy storage and battery systems have become an
Get a quoteThe electrochemical safety team carries out research on cells and batteries to advance safer energy storage through science. Our current focus is on the lithium-ion battery chemistry and the issues that exist with this chemistry. We
Get a quoteNew research-based lithium-ion battery designs should be developed to provide firefighters direct access to electric vehicle (EV) batteries during car fires, said Judy Jeevarajan of UL Research Institutes (ULRI) during a recent congressional hearing.
Get a quoteProducts powered by lithium-ion batteries – from wearable technology and mobile phones to satellites and electric buses – require a range of specifications for optimum and safe performance with respect to energy, power and life span. Learn about the
Get a quoteLithium-ion batteries power the devices we use every day, like our mobile phones and electric vehicles. Lithium-ion batteries consist of single or multiple lithium-ion cells, along with a protective circuit board. They are referred to as batteries once the cell, or cells, are installed inside a device with the protective circuit board. What are
Get a quoteAccording to Research Interfaces, PNNL is a hub of amazing battery research, connected in every direction with distinguished laboratories in the US and around the world. Its $50 million Battery500 consortium aims to develop batteries that are better, cheaper, and safer—and lithium-metal anode and Jun Liu are at the center of it all.
Get a quoteThe eleven research partners of SeNSE – five research institutes and six industrial companies – are conducting research on next-generation lithium-ion batteries – the so-called "generation 3b". In contrast to current traction batteries, this next generation will have higher energy density and improved cell chemistry and battery management
Get a quoteOverview of 16 research groups at the Helmholtz Institute Ulm (HIU) Prof. Dr. Maximilian Fichtner Solid-State Chemistry The research group Solid State Chemistry is concerned with the newest
Get a quoteThe Faraday Institution research programme spans ten major research projects in lithium-ion and beyond lithium-ion technologies. Together, these projects bring together 27 UK universities, 500 researchers and 120 industry partners to drive discovery in application-inspired research, working to solve some of the most challenging energy storage issues. Lithium Ion. Battery
Get a quoteIt outlines the expected developments in lithium-ion battery technology and alternative or competing energy storage solutions up to 2030 and highlights dependencies between
Get a quoteThe eleven research partners of SeNSE – five research institutes and six industrial companies – are conducting research on next-generation lithium-ion batteries – the so-called "generation 3b". In contrast to current traction
Get a quoteProducts powered by lithium-ion batteries – from wearable technology and mobile phones to satellites and electric buses – require a range of specifications for optimum and safe performance with respect to energy, power and life span. Learn about the
Get a quoteAt the Battery Research and Innovation Hub, our world-class researchers aim to enable the delivery of safer next-generation solid-state lithium-ion cells. Lithium-ion batteries can be found in almost every electrical item we use daily – from our phones to our wireless headphones, toys, tools, and electric vehicles.
Get a quoteResearch in lithium-ion batteries has produced many proposed refinements of lithium-ion batteries. Areas of research interest have focused on improving energy density, safety, rate
Get a quoteAccording to Research Interfaces, PNNL is a hub of amazing battery research, connected in every direction with distinguished laboratories in the US and around the world. Its $50 million Battery500 consortium aims to
Get a quoteAt the Battery Research and Innovation Hub, our world-class researchers aim to enable the delivery of safer next-generation solid-state lithium-ion cells. Lithium-ion batteries
Get a quoteIn order to develop future batteries, partners from science and industry from all over Europe have launched the BATTERY 2030+ research initiative. A roadmap specifies the milestones: a platform for material development using artificial intelligence (AI), networked sensors and self-healing technology for batteries as well as sustainable
Get a quoteDr. Steven Sloop, president and founder of OnTo Technology, talks to us about the past, the present and the future of lithium-ion battery recycling. We discuss the different recycling processes currently available and why many end-of-life lithium-ion batteries are currently not processed. He highlights how the rapidly growing lithium-ion
Get a quoteThe European Lithium Institute eLi is an international non-profit organization under Belgian law (AISBL) with headquarters in Brussels (Rue Royale 94, 1000 Brussels, Belgium) and Würzburg (Neunerplatz 2, 97082 Würzburg, Germany). The virtual institute links up competences and infrastructure along the whole lithium value chain to generate focused international
Get a quoteLithium-ion batteries make advances in consumer electronics and electric mobility possible. High energy and power density — in addition to improved cycle and calendar life — make Li-ion the battery chemistry of choice for applications from portable consumer devices to electric vehicles (EVs) and grid energy storage. The question of what should be done with the batteries at the
Get a quoteLithium-ion battery research. To address the growing challenges posed by lithium-ion batteries, ULRI has a multitude of research projects underway to evaluate their safety — from extraction and manufacturing to transport and proper disposal. Learn more about the wide range of scientific research we do on a multitude of topics to help make the world a safer
Get a quoteOverview of 16 research groups at the Helmholtz Institute Ulm (HIU) Prof. Dr. Maximilian Fichtner Solid-State Chemistry The research group Solid State Chemistry is concerned with the newest battery systems to follow today''s lithium-ion battery.
Get a quoteThe electrochemical safety team carries out research on cells and batteries to advance safer energy storage through science. Our current focus is on the lithium-ion battery chemistry and the issues that exist with this chemistry. We collaborate with academia, national labs and other organizations in the private and government sectors to conduct
Get a quoteResearch in lithium-ion batteries has produced many proposed refinements of lithium-ion batteries. Areas of research interest have focused on improving energy density, safety, rate capability, cycle durability, flexibility, and cost.
Lithium-ion batteries power the devices we use every day, like our mobile phones and electric vehicles. Lithium-ion batteries consist of single or multiple lithium-ion cells, along with a protective circuit board. They are referred to as batteries once the cell, or cells, are installed inside a device with the protective circuit board.
At the Technical University of Munich, an interdisciplinary network is researching battery systems along their entire value chain. Why battery research? Electrical energy storage and battery systems have become an indispensable part of our everyday lives.
Prof. Dr. Birger Horstmann Theory of Electrochemical Materials The research group models batteries as part of Prof. Latz's department at DLR. Various methods such as quantum simulation, machine learning and theoretical thermodynamics enable a deeper understanding of everything from individual atoms to the entire battery cell.
At the Battery Research and Innovation Hub, our world-class researchers aim to enable the delivery of safer next-generation solid-state lithium-ion cells. Lithium-ion batteries can be found in almost every electrical item we use daily – from our phones to our wireless headphones, toys, tools, and electric vehicles.
Lithium-ion batteries consist of single or multiple lithium-ion cells, along with a protective circuit board. They are referred to as batteries once the cell, or cells, are installed inside a device with the protective circuit board. What are the components of a lithium-ion cell? Electrodes: The positively and negatively charged ends of a cell.
Our team brings extensive knowledge in solar solutions, helping you stay ahead of the curve with cutting-edge technology and solar power trends for sustainable energy development.
Stay updated with the latest insights from the solar photovoltaic and energy storage sectors. Our expert market analysis helps you make smart choices to foster innovation and maximize growth.
We offer personalized solar energy storage systems, engineered to match your unique requirements, ensuring peak performance and efficiency in both power storage and usage.
Our extensive global network of partners and experts allows for the smooth integration of solar energy solutions, bridging gaps between regions and fostering global collaboration.
We pride ourselves on offering premium solar photovoltaic energy storage solutions tailored to your needs.
With our in-depth expertise and a customer-first approach, we ensure every project benefits from reliable, sustainable energy systems that stand the test of time.