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Researchers from Japan’s NIMS (National Institute for Materials Science), the University of Tokyo and Hiroshima University have jointly conducted a techno-economic analysis for hydrogen production from photovoltaic power generation (PV) utilizing a battery-assisted electrolyzer. This approximately converts to US$1.92 to US$3.00/kg
Scientists from Tohoku University have developed a new fluorine-free calcium (Ca) electrolyte based on a hydrogen (monocarborane) cluster that could potentially realize rechargeable Ca batteries. High-energy-density and low-cost calcium (Ca) batteries have been proposed as ‘beyond-Li-ion’ electrochemical energy storage devices.
Schematic illustration of the aqueous rechargeable lithium battery (ARLB) using the coated lithium metal as anode, LiMn 2 O 4 as cathode and 0.5 Researchers from Fudan University in China and Technische Universität Chemnitz in Germany have developed an aqueous rechargeable lithium battery (ARLB) using coated Li metal as the anode.
Friend Family Distinguished Professor of Engineering, have been exploring the use of low-cost materials to create rechargeablebatteries that will make energy storage more affordable. These materials could also provide a safer and more environmentally friendly alternative to lithium-ion batteries.
MIT researchers have engineered a new rechargeable, membrane-less hydrogen bromine laminar flow battery with high power density. For applications that require the storage of large quantities of energy economically and efficiently, flow batteries have received renewed attention. Credit: Braff et al. Click to enlarge.
A team of researchers from Kyoto University has demonstrated ion-exchanged MgFeSiO 4 as a feasible cathode material for use in high-energy-density rechargeable magnesium batteries. 3 , which is approximately five times higher than that of the conventional graphite anodes in lithium ion batteries (LIBs). —Orikasa et al.
million (US$5 million) research project to create a new class of fast rechargeable zinc-polymer batteries for hybrid and small electric vehicle applications. The PolyZion (Fast rechargeable zinc-polymer battery based on ionic liquids) received funding of €2.4 An EU consortium is two years into a 3-year, €3.5
John Goodenough from the University of Texas as Austin, has found one of the most effective catalysts yet discovered for the oxygen evolution reaction (OER) for use in water-splitting to produce hydrogen or in rechargeable metal-air batteries. rechargeable metal-air batteries (MxO 2 ? H 2 + ½O 2 , and. Mx + O 2 ).
Scientists from the Daegu Gyeongbuk Institute of Science and Technology, Korea, have developed a novel silica-based cathode for lithium–sulfur batteries, thereby enabling the realization of batteries that can last for more than 2,000 charge/discharge cycles. However, using sulfur in batteries is tricky for two reasons.
The high surface area and large pore volume of aCNS in the positive electrode facilitated NaCl or LiCl deposition and trapping of Cl 2 for reversible NaCl/Cl 2 or LiCl/Cl 2 redox reactions and battery discharge/charge cycling. This work could open up widely available, low-cost graphitic materials for high-capacity alkali metal/Cl 2 batteries.
An international team of researchers led by Quanguan Pang at Peking University and Donald Sadoway at MIT reports a bidirectional, rapidly charging aluminum–chalcogen battery operating with a molten-salt electrolyte composed of NaCl–KCl–AlCl 3. The battery requires no external heat source to maintain its operating temperature.
Yet-Ming Chiang (co-founder of A123 Systems), report on their development of a new energy storage concept—a semi-solid flow cell (SSFC) combining the high energy density of rechargeablebatteries with the flexible and scalable architecture of fuel cells and flow batteries—in a paper published in the journal Advanced Energy Materials.
Schematic representation of the super-valent battery during charge/discharge process. A team from the University of Science and Technology Beijing is proposing a new super-valent battery based on aluminium ion intercalation and deintercalation. Herein, we define this kind of battery as super-valent battery. Wang et al.
The average cost to trial participants for recharging at home is between 25p and £1 (US$0.40 The phenomenon known as ‘range anxiety’—concern about battery life when undertaking long journeys—is falling as drivers become more familiar with their vehicles. Tags: Electric (Battery) Market Background Trials.
John Goodenough, known around the world for his pioneering work that led to the invention of the rechargeable lithium-ion battery, have devised a new strategy for a safe, low-cost, all-solid-state rechargeable sodium or lithium battery cell that has the required energy density and cycle life for a battery that powers an all-electric road vehicle.
In its quest to keep the system very affordable, Ford wanted to keep the supporting battery a 12V battery, but also didn’t want to compromise durability, said Birgit Sorgenfrei, Ford’s Auto Start-Stop program manager. One of the critical parameters for a start-stop system battery is dynamic charge acceptance (DCA).
The investors include companies from the battery manufacturing, consumer electronic and electric vehicle ecosystem which will be working with the company to speed the development of its solid polymer electrolyte battery material. Lowcost precursors. Key properties of Ionic Materials’ polymer include: Up to 1.3
Minah Lee of the Energy Storage Research Center at the Korea Advanced Institute of Science and Technology (KIST) has developed a chemical activation strategy of magnesium metal that enables efficient operation of magnesium batteries in common electrolytes that are free of corrosive additives and can be mass-produced. 2c08672
The resulting improved electrical capacity and recharging lifetime of the nanowires. low-cost Na-ion battery system for upcoming power and energy. Lithium-ion rechargeablebatteries perform well, but are too expensive for widespread use on the grid. Sodium-ion batteries have been discussed in the literature.
As described in an open access paper in the journal NPG Asia Materials , the system is an intermediate between a battery and a fuel cell, and is accordingly referred to as a hybrid fuel cell. Sodium can serve as an alternative to lithium in rechargeablebatteries as the reversible storage mechanisms for sodium ions are very similar (e.g.,
Hercules vehicles will offer integrated solar charging, long-range batteries and optional fuel-cell range-extender options. Hercules is commencing the Series A financing to support product development and add team members; the company currently is scouting locations for production of its components, including solid-state batteries.
F 0.7 , for sodium-ion (Na-ion) batteries (NIBs). While high-energy Li-ion batteries (LIBs) are expected to contribute in part to the solution, the high cost and low stability prohibit wide application in this area, the researchers observe. In a prior study, they developed a new Li-ion battery electrode—Li 1.1
A team of Penn State engineers has demonstrated a thermally modulated lithium iron phosphate (LFP) battery to offer an adequate cruise range per charge that is extendable by a 10-minute recharge in all climates, essentially guaranteeing EVs that are free of range anxiety. There is no more range anxiety and this battery is affordable.
Organic and polymer materials are of great interest as electrode materials for rechargeable lithium batteries because of the lowcost, raw materials abundance, environmental benignity, and high sustainability. Our findings open up a pathway, in terms of battery chemistry, for ultrahigh-energy-density Li-organic batteries.
The Hyliion Hypertruck ERX is an electric range extender semi-truck powertrain solution using onboard power generation to recharge the batteries. Cummins’ ISX12N ( earlier post ) will be optimized with the Hyliion Hypertruck ERX, so that it can use the existing 700 natural gas stations across North America for low-cost refueling.
A new rechargeable aqueous magnesium battery provides an environmentally friendly, safe, low-cost energy alternative. The post New rechargeable magnesium battery demonstrates excellent performance appeared first on Innovation News Network.
ARPA-E’s new program, Robust Affordable Next Generation Energy Storage Systems (RANGE) ( earlier post ), aims to accelerate widespread EV adoption by dramatically improving driving range and reliability, and by providing low-cost, low-carbon alternatives to today’s vehicles. Advanced Aqueous Lithium-Ion Batteries.
Researchers from Griffith University in Australia and Peking University in China have synthesized low-cost, hierarchically porous, and nitrogen-doped loofah sponge carbon (N-LSC) derived from the loofah sponge via a simple calcining process and applied it as a multifunctional blocking layer for Li–S, Li–Se, and Li–I 2 batteries.
has exclusively licensed five battery technologies from the Department of Energy’s Oak Ridge National Laboratory (ORNL) designed to eliminate the use of cobalt metal in lithium-ion batteries. The metal is specifically used in a battery’s cathode, the positively charged end that determines much of a battery’s performance.
Cyclonatix, Inc is developing an industrial-sized motor/controller to operate with either DC or AC power sources, for applications in electric vehicles, solar-powered pumps, HVAC&R, gas compressors, and other commercial and industrial machines which require high efficiency, variable speed/torque, and lowcost. rechargeablebattery?technology?that
Schematic illustration of the the hybrid Mg-Li battery designed in this work. This battery has a piece of Mg foil as the anode, Mo 6 S 8 as the cathode, and the electrolyte contains both Mg 2+ and Li +. Interest in rechargeable magnesium batteries has increased due to a number of factors. Cheng et al. Click to enlarge.
The company says that its principal innovation lies in the cathode chemistry that, when combined with conductive additive and small amounts of solid-state electrolyte, forms a composite cathode the capacity of which is nearly triple that of the cathode capacity used in lithium-ion batteries. Earlier post.).
Battery startup Anzode Inc. million award for a three-year effort to develop a new generation of non-lithium batteries, as part of the California Energy Commission (CEC) Grant Funding Opportunity “Developing non-Lithium Ion Energy Storage Technologies to Support California’s Clean Energy Goals.” ( GFO-19-305 ). has received a $1.7-million
University of Sydney team advances rechargeable zinc-air batteries with bimetallic oxide–graphene hybrid electrocatalyst. Zinc-air batteries are powered by zinc metal and oxygen from the air. Zinc-air batteries are powered by zinc metal and oxygen from the air. Amorphous Fe 0.5 mA cm −2 at 0.6 —Professor Yuan Chen.
Kentucky Governor Steve Beshear announced that start-up lithium-sulfur battery company NOHMs (Nano Organic Hybrid Materials) Technologies Inc. has selected to locate its research, manufacturing and product development facility for military, cell phone and electric vehicle lithium-ion batteries in Lexington. Batteries'
Daimler Trucks also presented for the first time a preview of a purely battery-powered long-haul truck, the Mercedes-Benz eActros LongHaul, which is designed to cover regular journeys on routes that can be planned in an energy-efficient manner. Its range on one battery charge will be approximately 500 kilometers. ePowertrain.
In a paper published in the ACS journal Nano Letters , they suggest that this material represents a promising cathode material for rechargeable Li-ion batteries with high energy density. Sulfur also possesses other advantages such as lowcost and environmental benignity. Earlier post.) Nevertheless, Wang et al.
The US Department of Energy (DOE) will award $42 million to 12 projects to strengthen the domestic supply chain for advanced batteries that power electric vehicles (EVs). Project K is developing and commercializing a potassium-ion battery, which operates similarly to Li-ion batteries. Award amount: $3,198,085).
The path to delivering low-cost aircraft systems starts with engineering services, then parts fabrication, and finally system integration supporting the launch of ASX’s all-electric eVTOL aircraft, the MOBi-One. The program aims to converge automotive mass production techniques with the reliability of commercial-grade aerospace.
The second round was focused specifically on three areas of technology representing new approaches for advanced microbial biofuels (electrofuels); much higher capacity and less expensive batteries for electric vehicles; and carbon capture. Better Batteries - Batteries for Electrical Energy Storage in Transportation (BEEST).
The working concept of I3 – /I – redox reaction in the aqueous Li-I 2 battery. A team from Japan’s RIKEN, led by Hye Ryung Byon, has developed a lithium-iodine (Li-I 2 ) battery system with a significantly higher energy density than conventional lithium-ion batteries. Zhao et al. Click to enlarge. kWh kg -1 cell (1.0
The American Ceramics Society awarded A123Systems the Corporate Technical Achievement Award for developing breakthrough ceramics that enable new technologies such as stable, high-power, rechargeablebatteries that are safer and more powerful than earlier lithium-ion rechargeable varieties. A123Systems launched in 2005.
Supercapacitors bridge the gap between conventional capacitors and rechargeablebatteries. The goal of the project is the development of low-cost integrated ultra-high voltage supercapacitor units by a high-rate reel-to-reel process. Lomiko Metals Inc. currently owns a 40% stake in Graphene ESD and Mr. A. Earlier post.).
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