Português

Wearable Breakthrough! A rubber like deformable energy storage device using laser precision manufacturing

526
2024-04-26 15:50:05
Ver tradução

Recently, foreign researchers have made remarkable breakthroughs in the field of flexible energy storage devices, successfully developing a small energy storage device that can stretch, twist, fold, and wrinkle freely. This significant achievement has been published in the journal npj Flexible Electronics.

With the booming development of wearable technology, the demand for energy storage solutions that can adapt to the flexibility and stretchability of soft electronic devices is becoming increasingly urgent. Micro supercapacitors (MSCs) have become a highly promising deformable energy storage material due to their high power density, fast charging, and long cycle life.

However, the brittleness of traditional electrode materials such as gold (Au) poses a significant challenge in manufacturing cross electrode modes that can maintain stable performance through repeated stretching and twisting. At the same time, although eutectic gallium indium liquid metal (EGaIn) has attracted attention for its high conductivity and excellent deformability, its extremely high surface tension makes fine patterning operations exceptionally difficult.

Faced with these challenges, the research team demonstrated extraordinary innovative spirit. They cleverly utilized laser technology to accurately depict the fine patterns of EGaIn and graphene (as active materials) on stretchable polystyrene block copolymer (SEBS) substrates.

During the laser ablation process, the underlying SEBS substrate is intact and undamaged, ensuring the flexibility and durability of MSC devices. Excitingly, the surface capacitance of this new MSC can still maintain its original value after undergoing up to 1000 stretching cycles. What is even more remarkable is that these prepared MSCs can maintain stable operation under various mechanical deformations, such as stretching, folding, twisting, and wrinkling.

The research team brought together several outstanding scientists, including Professor Jin Kon Kim and Dr. Keon Woo Kim from the Department of Chemical Engineering at POSTECH, as well as Dr. Yang Chanwoo and Researcher Seong Ju Park from the Korea Institute of Industrial Technology (KITECH). Their joint efforts and wisdom have injected new vitality into the development of flexible energy storage.

Professor Jin Kon Kim is confident in this achievement, stating, "The application of laser patterned liquid metal electrodes marks an important step in the development of truly deformable energy storage solutions. With the continuous advancement of wearable technology, such innovation will play a crucial role in ensuring that our devices can adapt to dynamic lifestyles. We look forward to this technology bringing more convenient and efficient energy storage experiences to future wearable devices."

Source: OFweek

Recomendações relacionadas
  • Silicon Valley giants compete for a new 3D printing space race track

    Recently, Eric Schmidt, former CEO of Google, will take over as CEO of Relativity Space, marking his first CEO position since leaving Google.Relativity Space is known for producing rockets using unusual technologies, including 3D printers, automated robots, and artificial intelligence. In 2023, Relativity Space successfully launched the Terran 1 rocket, proving that its 3D printing technology can ...

    03-24
    Ver tradução
  • Laser Photonics wins a large order from Lufthansa Technologies subsidiary

    Recently, American laser cleaning system developer Laser Photonics announced that the company has successfully secured an order for a cleaning technology laser cleaning system from Lufthansa Technik Puerto Rico, a technology subsidiary of Lufthansa, the largest aviation group in Europe.Lufthansa Technik is the world's largest independent provider dedicated to providing maintenance, repair, and com...

    2023-12-19
    Ver tradução
  • Progress in the study of ultrafast electron dynamics using short light pulses

    When electrons move in molecules or semiconductors, their time scale is unimaginably short. The Swedish German team, including Dr. Jan Vogelsang from the University of Oldenburg, has made significant progress in these ultrafast processes: researchers are able to track the dynamics of electrons released on the surface of zinc oxide crystals using laser pulses with nanoscale spatial resolution and p...

    2024-01-08
    Ver tradução
  • Laser link between European Space Agency containers and space

    The latest expansion of the European Space Agency's laboratory is essentially portable: this European Space Agency's mobile optical ground station is housed in a standard container and can be transported throughout Europe as needed for laser based optical communication with satellites - including NASA's Psyche mission, in space millions of kilometers away.The station has officially become a part o...

    2024-02-12
    Ver tradução
  • The Welding Application of Fiber Laser in the Food and Beverage Industry

    As is well known, food and beverage product manufacturers have strict requirements in ensuring the hygiene and cleanliness of their equipment. Once these devices and components are designed or manufactured improperly, they are likely to cause pollution, ultimately leading to health hazards, brand reputation damage, and expensive recall actions. The shortage of labor and raw materials further exace...

    2023-10-19
    Ver tradução