Español

LIS Technologies closes $11.88 million seed round of financing

341
2024-08-22 15:24:26
Ver traducción

On August 19th, local time, LIS Technologies, a U.S.-based developer of laser uranium enrichment technology, announced the latest closing of an $11.88 million seed round of financing.

 



According to reports, LIS Technologies is a company focused on developing advanced laser technology and is the only U.S.-based laser uranium enrichment company to hold a homegrown patent. The round attracted a number of investors including 28 Ventures Fund, a leading U.S. advanced nuclear technology company, and several active investors in the nuclear technology sector.

The financing was originally set at $1.3 million, but given the overwhelming response and high level of market acceptance of LIST's Laser Isotope Separation Technology (L.I.S.T.), a significant expansion was ultimately realized, underscoring investors' unwavering confidence in the company's vision and growth potential.

The funding will directly assist the Company in relaunching and accelerating the development and application of its proprietary, patented advanced laser enrichment technology. This technology previously demonstrated its potential in the 1980s and early 1990s and was rated Technology Maturity Level (TRL) 4 by the National Nuclear Security Administration (NNSA), signifying a solid foundation of technological maturity.

LIST plans to utilize the additional funding to build a new R&D facility in Oak Ridge, Tennessee to advance physical testing and demonstration programs, and plans to recruit additional top scientists and engineers to join its elite team to drive technology innovation.

The company's CRISLA technology has a wide range of applications, not limited to the enrichment of uranium for nuclear fuel, but also involves the production of stable isotopes in fields such as medicine and scientific research, as well as cutting-edge applications in quantum computing, particularly semiconductor manufacturing.

The technology is capable of producing Low Enriched Uranium (LEU) and Highly Enriched Uranium (HALEU) in a single or dual-stage process, respectively, through the high selectivity of laser light. Its high throughput, high duty cycle, and simplified process flow herald lower capital and operating costs compared to conventional technologies, demonstrating a strong market competitiveness.

We are honored that LIST and its vision to modernize the U.S. nuclear energy industry and its fuel supply chain is receiving such strong support,” said Christo Liebenberg, CEO of LIS Technologies Inc. This marks an important milestone not only for our company, but also a critical step in a new chapter for the U.S. nuclear energy industry. We are confident that the renaissance of L.I.S.T. technology will lead the world into a new era of more cost-effective uranium enrichment, ensure a stable domestic supply of LEU and HALEU fuel, and lay a solid foundation for a thriving and innovative nuclear energy industry. The investment support from the advanced nuclear technology sector is undoubtedly the best proof of our relentless pursuit and strong commitment.”

About LIS Technologies

LIS Technologies Inc. is a U.S.-based company specializing in the development of advanced laser technologies that utilize infrared wavelengths to precisely excite molecules of targeted isotopes for efficient separation. As a leader in the field of laser uranium enrichment, LIST's L.I.S.T. technology not only outperforms traditional methods (e.g., gaseous diffusion, centrifuges, etc.) in terms of energy efficiency, but also demonstrates significant advantages in terms of capital and operating costs. The technology is widely used in LEU production, HALEU supply for SMRs and micro reactors, stable isotope preparation for medical and scientific research, and semiconductor innovation for quantum computing. The company brings together the world's leading nuclear technology experts and works closely with industry leaders, governments and the private nuclear sector to advance the future of nuclear technology.

Source: OFweek

Recomendaciones relacionadas
  • Processing application of ultrafast laser on bulk metallic glass

    Recently, an international research team led by Professor Zhang Peilei from the School of Materials Science and Engineering at Shanghai University of Engineering and Technology published a review paper titled "Research status of femtosecond lasers and nanosecond lasers processing on bulk metallic glasses (BMGs)" in the renowned journal Optics&Laser Technology in the field of optics and lasers....

    2023-09-18
    Ver traducción
  • Laser Photonics officially launches its SaberTech laser cutting system

    Recently, Laser Photonics (LPC) officially launched its SaberTech laser cutting system. This system not only enriches the product line of LPC's laser cleaning, welding, marking, and engraving systems, but also marks another important breakthrough for the company in the field of laser technology. This product release is another heavyweight measure after LPC's latest generation laser cleaning system...

    2024-06-19
    Ver traducción
  • The laser direct writing lithography equipment market is expected to reach $160.25 million in 2029 with a compound growth rate of 5.21%

    Lithography machine is the key equipment for making high precision mask plate. Using a very fine laser beam, the highly precise line pattern is drawn on the mask substrate under the control of an extremely precise automatic control system.Laser direct writing is to use a laser beam with variable intensity to implement variable dose exposure on the resist material (photoresist) on the subst...

    2023-08-04
    Ver traducción
  • Scientists build high-power cladding-pumped Raman fiber laser in 1.2 μm band

    Laser sources operating in the 1.2 μm band have some unique applications in photodynamic therapy, biomedical diagnostics, and oxygen sensing. In addition, they can be used as pump sources for mid-infrared optical parameter generation and visible light generation through frequency doubling.Laser generation in the 1.2 μm band has been achieved by different solid-state lasers, including semicon...

    2024-01-31
    Ver traducción
  • Shanghai Optical Machinery Institute has made progress in high-efficiency optical parametric amplification technology

    Recently, a joint research team composed of Sun Meizhi, associate researcher of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Precision Mechanics, and Tu Xiaoniu, associate researcher of the Chinese Academy of Sciences Shanghai Institute of Silicate, proposed a new configuration of cross Fabry Perot intracavity optical parametric ...

    2024-07-11
    Ver traducción