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battery research
Trends
- 1
Research in the Basque Country is putting Spain at the centre of European battery innovation, with a reported achievement of 10,000 charge cycles using chemistries that rely less on critical raw materials. The development is drawing attention as it could reduce dependence on scarce minerals and extend battery lifespan for electric vehicles and energy storage.
- 2New battery-based device captures CO2 using less energyβA new device captures CO2 by pumping it across a battery, requiring less energy than current carbon capture systems http
Researchers have developed a device that captures carbon dioxide by pumping the gas across a battery, an approach that requires less energy than existing carbon capture systems. The technology, reported by Ars Technica, could make direct air capture cheaper and more practical for tackling industrial emissions. Early coverage highlights it as a promising advance in climate and energy technology.
- 3New battery-based device captures CO2 with less energyβThe design requires less energy to capture CO 2 than current systems. # science # climate # energy https:// arstechnica.
Researchers have developed a new device that captures carbon dioxide by pumping it across a battery, requiring less energy than existing carbon capture systems. The design, covered by Ars Technica, could make direct CO2 removal from air or emissions more efficient and cheaper, a key step for climate mitigation. Coverage is drawing interest from science and climate communities focused on energy costs of carbon capture technology.
- 4
Researchers are applying semiconductor chipmaking techniques to build improved electric vehicle batteries, according to a report by SciTechDaily. The approach adapts lithography-based manufacturing methods from the chip industry to battery production, potentially improving battery performance. Details on which institutions are involved and the specific results have not been widely reported, but the cross-industry idea is drawing attention in technology and energy circles.
- 5Polymer-tuned perovskite boosts underwater solar cell efficiencyβΌPolymer-tuned perovskite creates high-efficiency underwater solar cells
Researchers report that a polymer-tuned perovskite material enables high-efficiency solar cells that can operate underwater, according to a report by Physics World. By modifying perovskite properties with a polymer, the cells can harvest light in aquatic environments where conventional silicon panels perform poorly. The advance could open the door to powering underwater sensors, monitoring equipment and other devices without batteries or cabling.
- 6Researcher Describes Analog Seismometer Setup in Campus LabβLatest tech weirdness: In my lab on campus, I have an analog seismometer connected to a datalogger, which is connected t
A researcher on a university campus has described an unusual combination of old and new technology: an analog seismometer linked to a datalogger, then to a PC over wired ethernet, with all equipment powered by a 100Ah LiFePO4 battery that is recharged every Thursday afternoon. The account, which cuts off mid-description, has drawn modest attention from science-minded readers.
- 7The Science Behind a Steady Supply of Critical MineralsβThe Science Enabling a Steady Supply of Critical Minerals
Berkeley Lab is highlighting the scientific research that supports a reliable supply of critical minerals, materials essential to batteries, electronics and clean energy technologies. The piece examines how laboratory science can help identify, extract and process these minerals more sustainably as demand grows and supply chains face pressure.
- 8MIT Builds Paper-Thin Swimming Robot Powered by Living MuscleβΌMITβs Paper-Thin Swimming Robot Is Powered by Living Muscle
Researchers at MIT have developed an ultra-thin swimming robot powered by living muscle tissue rather than conventional motors or batteries. The paper-thin design uses biological muscle to propel itself through liquid, pointing toward soft, biologically driven machines. The project is drawing attention for blending tissue engineering with robotics, with observers highlighting possible uses in medicine, environmental monitoring, and confined spaces where conventional robots cannot operate.
- 9Walking Robot Skin Turns Metal Surfaces Into Battery-Free Power SourceβΌWalking Robot Skin Turns Metal Surfaces Into a Power Source, No Battery Required
Researchers have unveiled a walking robotic skin that can transform ordinary metal surfaces into a source of power, eliminating the need for an onboard battery. The material is described as a skin-like layer that both moves across surfaces and harvests energy from them, suggesting potential uses for small robots and devices that operate without charging.
- 10Topological Insulator Combined with MXene for Clean EnergyβΌTopological Insulator Meets MXene in a Two-Dimensional Powerhouse for Clean Energy
Researchers are highlighting a new two-dimensional material combining a topological insulator with MXene, a class of ultrathin conductive compounds. The hybrid is being promoted as a promising platform for clean energy uses, potentially improving charge transport and catalytic performance in devices like batteries, supercapacitors and fuel cells. Details of the underlying study are limited.
- 11New analysis tracks Germany's battery storage expansionβ# Steady # Klimacrew Wie genau entwickelt sich der Ausbau von # Batteriespeicher βn in Deutschland β und was verraten di
A researcher is analysing how battery storage capacity in Germany is developing, using raw data from the Bundesnetzagentur's Marktstammdatenregister. The work, shared with the Steady Klimacrew community, applies the same data-driven approach previously used to track the growth of balcony solar installations, aiming to show concrete trends in the rollout of stationary electricity storage.
- 12MIT's Paper-Thin Aquabot Swims Using Living Muscle CellsβΌLiving Muscle Cells Power a Paper-Thin MIT Aquabot Through a Maze
MIT researchers have developed an aquabot β a paper-thin swimming robot powered by living muscle cells rather than motors or batteries. The cell-driven swimmer can navigate its way through a maze, demonstrating precise, untethered movement at tiny scales. The work highlights how biological actuators could enable soft, miniature robots for medicine or environmental sensing, and it is drawing attention across robotics and biotech communities.
- 13University of Tsukuba develops integrated EV charger-inverterβΌUT spearheads development of novel integrated EV charger-inverter
Researchers at the University of Tsukuba have led the development of a novel integrated charger-inverter unit for electric vehicles. The device combines two power electronics functions that are normally separate, a battery charger and a traction inverter, into one system. A combined unit could cut cost, weight and component count in EVs, a step the team says points toward simpler, more efficient vehicle powertrains.
- 14Toyota opens $50 million EV battery lab near SalineβΌToyota opens new $50M electric vehicle battery lab near Saline
Toyota has opened a new electric vehicle battery laboratory near Saline, Michigan, in a $50 million investment. The facility adds to the growing cluster of battery and EV research operations taking shape in the state, and is being reported by regional outlets as a sign of Toyota's continued push into electric vehicle development in the United States.
- 15
Fast Company outlines three key considerations for shoppers weighing a used electric vehicle, covering factors buyers should check before committing. The piece arrives as interest in second-hand EVs grows alongside a maturing market and falling prices, prompting many consumers to weigh battery health, charging compatibility and depreciation against the savings of buying used.
- 16
A new technical article examines how engineers are tackling the hardest problem in underwater robotics: supplying reliable power to vehicles operating deep below the surface. It outlines the main design hurdles, including energy density limits, pressure resistance, battery safety and endurance, and discusses emerging solutions such as improved battery systems and more efficient power management for subsea robots.
- 17Moist-Electric Wallpaper Generates Power and Controls HumidityβMoist-Electric Wallpaper for Indoor Energy Harvesting and Humidity Management Article URL: https:// advanced.onlinelibra
Researchers have developed a wallpaper material that generates small amounts of electricity from moisture in indoor air while also helping regulate humidity. The work, published in the journal Advanced Energy Materials, is drawing attention among technology enthusiasts, with discussion focusing on how such indoor energy harvesting could power low-energy sensors and smart-home devices without batteries.
- 18Toyota Opens New Battery Research Center in North AmericaβToyota Launches New North America Battery Research Center
Toyota has launched a new battery research center in North America, strengthening its push into electrified vehicle technology. The facility will focus on developing advanced battery systems, including work relevant to electric vehicles and hybrids. The announcement has drawn attention as automakers race to secure battery expertise and localize research and production in the region.
- 19Lion Battery Technologies Advances Platinum-Based Lithium-Sulfur Battery WorkβΌLion Battery Technologies Advances Platinum and Palladium Based Lithium-Sulfur Battery Technology
Lion Battery Technologies reports progress on its lithium-sulfur battery technology that uses platinum and palladium. The company is developing the metals as catalysts to improve the performance and durability of lithium-sulfur cells, an alternative battery chemistry that could offer higher energy density than conventional lithium-ion batteries. The announcement gives investors and battery industry watchers an update on the company's research efforts, though detailed technical or commercial results were not specified in the headline.
- 20Cartilage-inspired nanocoating promises longer-lasting batteriesβResearchers develop new cartilage-inspired polymer nanocoating to substantially extend battery lifespan meaning your hea
Researchers have developed a new polymer nanocoating inspired by cartilage that substantially extends battery lifespan. The coating could allow small devices such as hearing aids to run far longer before their batteries degrade, prompting jokes that hearing aids may now outlast the wearer's knees. The finding is drawing attention for its potential to improve everyday electronics and reduce battery waste.
- 21Oak Ridge lab opens new quantum and battery research facilityβORNLβs new 100,000-square-foot facility pushes the frontiers of quantum computing, battery tech
Oak Ridge National Laboratory has opened a new 100,000-square-foot research facility aimed at advancing quantum computing and battery technology. The building expands the Tennessee lab's capacity for work on next-generation energy storage and quantum systems, areas seen as critical to US scientific and industrial competitiveness.