한국어

Particles have "fuzzy memory" in solid-state batteries

209
2024-02-18 14:59:02
번역 보기

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

관련 추천
  • The research team has solved decades long challenges in the field of microscopy

    When observing biological samples under a microscope, if the medium in which the objective lens is located is different from the sample, the light beam will be interfered with. For example, when observing a water sample with a lens surrounded by air, the light bends more strongly in the air around the lens than in water.This interference can cause the measured sample depth to be smaller than the a...

    2024-04-27
    번역 보기
  • The Glory of Laser and the Odyssey of "Deep Technology"

    The British engineering and construction company Metz Group has a delegation in Spain to be responsible for the expansion and renovation of the central laser facility at Rutherford Appleton Laboratory near Oxford. More commonly, the construction of the powerful laser Vulcan 20-20 has just been obtained, with a delivery date of 2029.It will emit a main excitation beam that is billions of times larg...

    2023-12-09
    번역 보기
  • The world's highest power industrial grade fiber laser is released in Tianjin

    On August 31st, Tianjin Kaipulin Optoelectronics Technology Co., Ltd. (hereinafter referred to as Kaipulin), a Tianjin Port Free Trade Zone enterprise, officially released the world's first 200000 watt ultra-high power industrial grade fiber laser, breaking the record for the highest power of industrial grade fiber lasers in the world and marking China's stable position in the international advanc...

    2024-09-02
    번역 보기
  • Overview: High throughput preparation of alloy composition design in additive manufacturing

    Researchers from the New Materials Technology Research Institute of Beijing University of Science and Technology and the Beijing Modern Transportation Metal Materials and Processing Laboratory reported a review of high-throughput preparation of alloy composition design in additive manufacturing. The relevant research is titled "High throughput preparation for alloy composition design in additive m...

    2024-07-08
    번역 보기
  • Showcasing the world's fastest photonics alignment system for SiPh chips on Photonics West

    With its proprietary fast multi-channel photon alignment algorithm and professional high-precision machinery, PI helps customers improve production efficiency to participate in the rapidly growing silicon photonics market. Over the past decade, PI has been continuously expanding its range of automatic photon alignment engines and will launch new systems at both ends of the spectrum in this year's ...

    2024-01-19
    번역 보기