NEO Battery Materials announced that the company and its South Korean subsidiary, NBM Korea Co., have entered into a definitive lease agreement with ENPLUS Co. to lease an operational battery electrode manufacturing facility. The facility provides … [Read more...]
New silicon-anode battery manufacturing facility to support EV and storage markets
NEO Battery Materials announced that it has secured an expansion site in South Korea to establish battery cell manufacturing capabilities and scale up silicon battery material production and research operations. The site, located adjacent to NEO’s … [Read more...]
Lithium-ion battery program launched for drone applications
NEO Battery Materials, a developer of low-cost silicon battery materials designed to enable rapid-charging lithium-ion batteries, announced the initiation of a new development program focused on high-performance batteries for drones and unmanned … [Read more...]
Advanced silicon battery achieved over 90% capacity retention at 300 cycles
NEO Battery Materials, a developer of silicon anode materials for lithium-ion batteries, announced that its latest prototype, P-300N, has exceeded initial performance targets during long-term capacity testing. The company also shared updates on … [Read more...]
Silicon-anode platform aims to boost charging speed, safety, and stability
NEO Battery Materials, a low-cost silicon anode materials developer that enables longer-running, rapid-charging lithium-ion batteries, announced a collaboration agreement with Elementium Materials, an advanced battery electrolyte technology … [Read more...]
Optimizing US silicon-anode manufacturing with automation integration
NEO Battery Materials is collaborating with Rockwell Automation to integrate automation solutions at its planned silicon anode manufacturing facility in Windsor, Ontario. The partnership aims to improve production efficiency, quality control, and … [Read more...]
New silicon-anode facility to support North America’s EV battery supply chain
NEO Battery Materials, a developer of low-cost silicon anode materials for longer-running, rapid-charging lithium-ion batteries, has signed a definitive lease agreement with the City of Windsor, Ontario, Canada. This step represents significant … [Read more...]
Advances in silicon anode and solid-state batteries for eVTOLs and space applications
NEO Battery Materials, a low-cost silicon anode materials developer, announced the launch of an advanced high-performance silicon anode product with breakthrough battery capacity. Alongside its core focus on electric vehicles (EVs), the company is … [Read more...]
A year in review: Electric vehicle highlights from 2024
The electric vehicle (EV) industry made steady progress in 2024, marked by advancements in core technologies like batteries, charging systems, and power management. From the announcement of 10-minute fast-charging batteries to the rollout of … [Read more...]
New agreement to advance silicon anode materials for EV batteries
NEO Battery Materials, a low-cost silicon anode materials developer, announced the joint development agreement (JDA) with an un-named North American battery cell manufacturer effective November 30th, 2024. This collaboration aims to develop and … [Read more...]
Scaling up silicon anode production for Li-ion batteries
NEO Battery Materials, a silicon anode materials developer, announced that it is collaborating with Linde Korea Co. to scale up NEO’s silicon anode manufacturing for lithium-ion batteries. The aim is to produce longer-running, rapid-charging … [Read more...]
Collaboration to optimize silicon anodes for advanced battery technology
NEO Battery Materials has recently signed a Memorandum of Understanding (MOU) with the University of Windsor to establish a partnership focused on advancing new battery and energy storage technologies in Canada’s electric vehicle (EV) … [Read more...]
Silicon-anode breakthrough enhances battery life and charging speed
NEO Battery Materials, a low-cost silicon-anode materials developer that enables longer-running, rapid-charging lithium-ion batteries, announced technological advancements to its silicon-anode technology -- longer battery capacity retention while … [Read more...]












