Paraclete Energy的封面图片
Paraclete Energy

Paraclete Energy

化工制造业

Chelsea,MI 854 位关注者

SM-Silicon/3590? Making Batteries Better.

关于我们

Paraclete Energy, Inc. based in Michigan, USA, produces oxide-free, cycle-stable nanoparticle silicon. Their flagship product, SM-Silicon/3590?, has a first cycle efficiency of over 90% and is 30% less expensive than graphite. SM-Silicon/3590? is designed for us in anodes and can be mixed with graphite or function independently. SM-Silicon/3590? contains significantly less inactive material than other silicon anode materials and offers three times the energy density of graphite and up to twice that of leading competitors. Unlike others that use inactive materials to overcome the challenges of silicon, Paraclete Energy uses a polymer matrix for long-term cycling stability and maximum energy density. Paraclete manufactures tons of SM-Silicon/3590? and expanding globally through distributed manufacturing at partner locations. Unlike the competition, Paraclete Energy's product is available in production quantities today. Their customers include world-class electric vehicle OEMs, battery manufacturers and anode material suppliers. Additionally, Paraclete Energy's proprietary Silicon Silo? technology improves the cycle life and stability of various silicon-based anode materials, turning potential competitors into potential customers.

网站
https://www.paracleteenergy.com/
所属行业
化工制造业
规模
11-50 人
总部
Chelsea,MI
类型
私人持股
创立
2010

地点

Paraclete Energy员工

动态

  • Paraclete Energy转发了

    Paraclete Energy highlights the potential of silicon technology to transform EV battery design. A recent study showcases how silicon anodes could reduce battery weight by 50% while doubling the driving range of electric vehicles. For example, an 80-kWh battery pack using silicon can shrink from 7,000 cells weighing 565 kg to fewer than 2,000 cells at just 150 kg, all while delivering the same driving range. By leveraging silicon, these advancements improve vehicle performance and address key barriers to EV adoption, such as range anxiety and cost. Learn more: https://lnkd.in/grUNmDWG #Batteries #BatteryDesign #Silicon #Materials #ElectricVehicles #EVs

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  • 查看Paraclete Energy的组织主页

    854 位关注者

    Breaking Innovation in EV Technology! Paraclete Energy is proud to unveil the results of our latest study on SILO Silicon?—a revolutionary battery technology that reduces weight by 50% while doubling the driving range of electric vehicles. This breakthrough addresses two major challenges in EV adoption: cost and range anxiety, paving the way for a more sustainable, efficient future. Learn more about how SILO Silicon? is transforming the EV landscape: Read the full press release: https://lnkd.in/eDBb7N-s And join us at Booth 707 at the Advanced Automotive Battery Conference in Las Vegas, December 9-12. #EVInnovation #BatteryTechnology #Sustainability #ParacleteEnergy #AABC

  • 查看Paraclete Energy的组织主页

    854 位关注者

    Paraclete has been busy since AABC 2023! We’re launching our first standard product, SILO-Silicon?, in December 2024, providing our customers with a disruptive silicon-based anode material that uniquely fulfills the promise of silicon to dramatically improve EV range, charging times, and cycle stability. At the core of our product is our industry-unique polymer matrix architecture – the Magic is indeed in the Matrix! We look forward to seeing many of you in Vegas in December! Paraclete will be at booth 707 and presenting at 5:10 pm on Wednesday, December 11, as part of the xEV Market Expansion track.

    查看Cambridge EnerTech的组织主页

    3,131 位关注者

    Final Days to Register for AABC in Las Vegas! https://lnkd.in/eQCUEyBM To see why AABC has been described as "the best networking event for automotive energy storage", enjoy this short video. If you plan to join us in Las Vegas, reserve your spot by December 6 to SAVE $200! Hear 30+ presentations directly from leading OEMs and key battery developers, plus 170 more talks from the entire advanced battery supply chain. #AABC #batteries #electricvehicles #emobility #electrification #lithium #decarbonization #sustainability #charging

  • 查看Paraclete Energy的组织主页

    854 位关注者

    Silane Gas Crisis: Paraclete Energy’s SILO Silicon? Removes the Hidden Hurdle to Affordable EV Batteries As the EV market grows, silane gas dependency poses a major hurdle for silicon anode production. High costs, toxicity, supply shortages, and environmental risks tied to silane gas threaten scalability. Paraclete Energy's SILO Silicon? technology offers a game-changing solution, eliminating the need for silane gas and reducing production costs by up to 33%. It’s safer, environmentally sustainable, and boosts energy density by 200%, ensuring longer battery life and increased EV range. Additionally, our technology is independent of supply chains reliant on China, securing scalable production. Paraclete Energy is driving the future of cost-effective, high-performance EV batteries. Read the full press release here: https://lnkd.in/eKJM_EfA #EV #BatteryInnovation #Sustainability #ParacleteEnergy #SILOSilicon

  • 查看Paraclete Energy的组织主页

    854 位关注者

    A recent MSN article highlighted Paraclete Energy’s breakthrough battery innovation that could revolutionize the electric vehicle market by making electric vehicles more affordable, cost-effective, and more powerful. SILO Silicon? has the potential to reshape energy storage and accelerate the transition to clean energy. Want to know how this breakthrough could impact the future of transportation? Check out the full article below! #EnergyStorage #EVRevolution #Sustainability #CleanTech #Innovation

  • 查看Paraclete Energy的组织主页

    854 位关注者

    ?? Breakthrough in Battery Technology! ?? Cleanerwatt, a trusted voice in EV and clean energy, has just released an in-depth look at Paraclete Energy’s SILO Silicon? technology—an innovative silicon anode material that’s already in production and set to revolutionize electric vehicles. This video, which Paraclete had no prior knowledge of, highlights how our technology enables faster-charging, more energy-dense, and cost-effective batteries, bringing the future of EVs closer than ever. ?? Watch the video to see how Paraclete Energy is driving the future of transportation: https://lnkd.in/eFD5z8b2 #BatteryTechnology #SiliconAnode #EV #CleanEnergy #Innovation #EnergyStorage #ParacleteEnergy About Paraclete Energy Paraclete Energy has the potential to revolutionize the electric vehicle and lithium-ion battery markets with its proprietary SILO Silicon? highly conductive, polymer matrix technology, delivering energy densities up to 300% greater than graphite and 200% higher than competing silicon anodes. Batteries using SILO Silicon? are 33% less expensive per kilowatt hour than traditional carbon-based products. Paraclete Energy’s distributed manufacturing capability enables production plants near or at a customers’?site further enhancing efficiency and reducing costs.

  • 查看Paraclete Energy的组织主页

    854 位关注者

    Paraclete Energy Achieves Cost-Effective Energy Storage at $35/kWh vs LFP at $53/kWh Chelsea, MI, August 14, 2024 – In light of recent reports highlighting the declining cost of LFP batteries, Paraclete Energy, a leading provider of silicon-based anode materials for the electric vehicle and Li-ion battery markets, today announced a significant advancement in battery technology. The company's new 100% SILO Silicon? anode materials offer exceptional energy density and cost-efficiency, achieving a breakthrough cost-per-kilowatt-hour (kWh) of $35. This positions Paraclete Energy's SILO Silicon? anode materials as a highly competitive alternative to traditional graphite anodes, which are commonly used in LFP batteries currently costing $53/kWh. The cost reduction achieved by SILO Silicon? is driven by advanced materials science and optimized manufacturing processes, solidifying Paraclete Energy’s technology as a transformative force in the industry. "The recent decline in LFP battery prices underscores the industry's commitment to affordability and sustainability," said Jeff Norris, CEO of Paraclete Energy. "Our SILO Silicon? anode technology serves as a strong proxy for cost-effective and high-performance energy storage, indicating not only significant cost reductions but also setting a new benchmark for the rapid adoption of electric vehicles and renewable energy solutions." Paraclete Energy's SILO Silicon? anode materials offer an impressive energy density over 520 Wh/kg, significantly exceeding the capabilities of traditional graphite anodes. This increased energy density allows batteries to deliver more energy for longer periods of time, making them ideal for electric vehicles and stationary energy storage applications. The company's commitment to pushing the boundaries of battery technology aligns with the global shift toward renewable energy and increasing demand for efficient and affordable energy storage solutions. Paraclete Energy is dedicated to advancing battery technology and improving the access and affordability of renewable energy solutions. The company's groundbreaking developments will play a critical role in reducing global carbon emissions and supporting the widespread adoption of sustainable energy practices. About Paraclete Energy Paraclete Energy is a leading silicon anode materials company serving electric vehicle and lithium-ion battery markets. Its unique SILO Silicon? polymer matrix technology enables energy densities up to 300% that of graphite and more than 200% that of other silicon anode competitors. Batteries made with SILO Silicon? are 33% less expensive per kilowatt hour than traditional carbon-based products. Paraclete Energy’s distributed manufacturing model enables production near or at customers’ production sites, further increasing efficiency and reducing costs.

  • 查看Paraclete Energy的组织主页

    854 位关注者

    ??????????????, ???? ???????? ????, ???????? – Paraclete Energy, a leading silicon anode materials company, today announced the launch of SILO Silicon?, a revolutionary silicon anode material that will transform the Li-ion battery market, particularly the electric vehicle (EV) battery sector. This innovative technology offers unprecedented energy density and cost efficiency, enabling longer range, faster charging and more affordable electric vehicles. SILO Silicon? represents a significant advance in battery technology. Its unique polymer matrix architecture enables industry-leading silicon concentration, delivering up to 300% the energy density of traditional graphite anodes and outperforming competing silicon anode technologies by over 200%. This breakthrough results in significantly increased battery capacity, allowing electric vehicles to travel significantly longer distances on a single charge. “SILO Silicon? is a game-changer for the electric vehicle industry,” said Jeff Norris, CEO of Paraclete Energy. “This technology directly addresses the critical needs of the market, offering longer range, faster charging and lower costs – all essential factors in accelerating the adoption of electric vehicles." Paraclete Energy specializes in developing high-performance silicon anode materials for electric vehicles and other lithium-ion battery applications. Paraclete Energy’s polymer matrix technology offers breakthrough performance and cost advantages over competing silicon anode technologies based on carbon architectures. The company is committed to providing innovative solutions that advance the transition to sustainable energy and transportation. Paraclete Energy is shipping SILO Silicon? in the fourth quarter of 2024, years ahead of projected competitor projects. ?????????? ?????????????????? ???????????? Paraclete Energy is a leading silicon anode materials company serving electric vehicle and lithium-ion battery markets. Its unique SILO Silicon? polymer matrix technology enables energy densities up to three times that of graphite and more than twice that of other silicon anode competitors. Batteries made with SILO Silicon? are 33% less expensive per kilowatt hour than traditional carbon-based products. Paraclete Energy’s distributed manufacturing model enables production near or at customers’ production sites, further increasing efficiency and reducing costs.

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