Italiano

Particles have "fuzzy memory" in solid-state batteries

412
2024-02-18 14:59:02
Vedi traduzione

When you shoot a laser at a solid-state battery, you find that the particles inside are not thrown into the chaos. This surprised a team of researchers from the United States and the United Kingdom.


The team discovered the persistence of memory in ions that help move electricity around solid-state batteries.
This discovery has improved the understanding of solid-state batteries, which are candidates for the next generation of safer and more powerful batteries.
A paper describing this study was published in the journal Nature.


The team is studying the behavior of ions in solid-state battery electrolytes when a laser emits a sudden voltage through it.
Previously, researchers observed that ions in these electrolytes "jump" from one place to another in a chaotic manner, ultimately causing charges to flow.

But the team found that within one billionth of a second, the ions briefly changed direction and returned to their previous position - then continued their chaotic way.
The main author Andrei Poletayev is a postdoctoral researcher at the University of Oxford, who refers to it as "fuzzy memory.".

"Researchers have been using macroscopic tools to study ion transport for a long time, and they cannot observe what we see in this study," Poletayev said.
Researchers use high-frequency lasers with pulses of only a few trillions of seconds to observe the movement of ions - the light reflected from the electrolyte can tell them what the ions are doing.

"Many strange and unusual things happen during ion hopping," said senior author Aaron Lindenberg, a professor at Stanford University and the SLAC National Accelerator Laboratory in the United States, where experiments were conducted.
When we apply the force of vibrating the electrolyte, ions do not react immediately like most materials.
Ions may sit there for a while, suddenly jump up, and then sit there for a long time. You may need to wait for a while before suddenly experiencing a huge displacement.
Therefore, there are randomness factors in this process, which makes these experiments difficult.

Source: Laser Net

Raccomandazioni correlate
  • Laser Photonics cleaning technology simplifies the removal of biofilms in industrial environments

    Laser Photonics Corporation is a leading global industrial developer of CleanTech laser systems for laser cleaning and other material applications, highlighting a key application of its CleanTech laser system.Wayne Tupuola, CEO of Laser Photonics, commented, "Our CleanTech laser cleaning system provides an efficient and cost-effective method for removing biofilms from various materials and surface...

    2023-09-20
    Vedi traduzione
  • Cannon-Brookes spotlights Singapore with SunCable solar

    Billionaire Mike Cannon-Brookes' plan to export clean energy from Australia to Singapore via a 4,200km undersea cable has gained new momentum after taking control of the stalled project.Cannon-Brookes' Grok Ventures has completed its acquisition of SunCable from the government and is advancing talks with authorities in Singapore and Indonesia, the investment firm said on Thursday. The revised plan...

    2023-09-08
    Vedi traduzione
  • Breakthrough! Extending the lifespan of solar panels to 50 years using lasers

    Recently, the National Renewable Energy Laboratory (NREL) under the US Department of Energy has made a revolutionary breakthrough by developing a concept validation method aimed at completely removing polymers from solar panel manufacturing, thereby achieving more efficient and environmentally friendly recycling.Solar panels have always been praised for their recyclability. However, the thin plast...

    2024-04-30
    Vedi traduzione
  • The Future of Data Center Communication: Quantum Dot Semiconductor Comb Laser

    In the constantly evolving field of technology and data communication, researchers have made significant breakthroughs: developing a continuous wave O-band quantum dot semiconductor comb laser for wavelength division multiplexing optical interconnection. With its impressive performance characteristics, this development is expected to completely change the way we manage and transmit data, especiall...

    2024-02-21
    Vedi traduzione
  • Nankai University makes progress in the field of free electron photon interactions

    Recently, a research team led by Professor Cai Wei and Professor Xu Jingjun from the School of Physical Sciences at Nankai University has experimentally confirmed for the first time the generation of polaritons, also known as Smith Purcell radiation, at the two-dimensional scale, and further demonstrated the ability of free electrons to regulate two-dimensional Smith Purcell radiation. The researc...

    02-11
    Vedi traduzione