Italiano

Observation of nanoscale behavior of light driven polymers using combination microscopy technology

104
2024-03-12 14:02:46
Vedi traduzione

Expanding our scientific understanding often boils down to observing what is happening as closely as possible. Now, researchers from Japan have observed the nanoscale behavior of azo polymer films and triggered them with lasers.

In a study published in Nano Express last month, researchers at Osaka University used a combination of cutting-edge scanning high-speed atomic force microscopy and optical microscopy to create films as polymer films changed.

Azo polymers are photoactive materials, which means they undergo changes when light shines on them. Specifically, light can alter their chemical structure, thereby altering the surface of thin films. This makes them very interested in applications such as optical data storage and providing light triggered motion.

The ability to use focused laser to initiate these changes during image capture is called in situ measurement.
"Usually, changes in polymer films are studied by processing them, such as by irradiating them with light and then measuring or observing them. However, the information provided is limited," explained Keishi Yang, the main author of the study. "The use of HS-AFM devices, including inverted optical microscopes with lasers, allows us to trigger changes in azo polymer films while observing them in real-time with high spatiotemporal resolution."

HS-AFM measurement can track the dynamic changes on the surface of polymer films in movies at a speed of two frames per second. It was also found that the direction of polarized light used has an impact on the final surface pattern.

Further research using in-situ methods is expected to thoroughly understand the mechanism of photo driven azo polymer deformation, thereby maximizing the potential of these materials.

"We have demonstrated our technique for observing polymer membrane deformation," said Takayuki Umakoshi, senior author of the study. However, in doing so, we have demonstrated the potential to combine cutting-edge scanning HS-AFM with laser sources for materials science and physical chemistry.

Materials and processes that respond to light are important in a wide range of fields in chemistry and biology, including sensing, imaging, and nanomedicine. In situ technology provides an opportunity to deepen understanding and maximize potential, and therefore has the potential to be applied to various optical devices.

Source: Laser Net

Raccomandazioni correlate
  • Laser blasting promises to solve global plastic problem

    Recently, researchers announced the development of a way to use laser blasting to break down plastic and other material molecules into their smallest parts for future reuse.This method involves placing these materials on a two-dimensional material called transition metal dichalcogenides and then irradiating them with light.This discovery has the potential to improve the way we handle plastics that...

    2024-07-16
    Vedi traduzione
  • Trumpf collaborates with Mercedes Benz to focus on digital real-time laser maintenance

    In the era of smart factories, Mercedes Benz monitors all fast lasers in its global production network based on cloud, significantly improving system resilience and reducing the risk of machine downtime. The connection between the Mercedes Benz digital ecosystem MO360 and the Trumpf laser for digital prediction services has helped achieve very good dynamic maintenance, and achieved demand based ...

    2024-06-17
    Vedi traduzione
  • UK to Build World's Largest Power Laser: Accelerating the Use of Nuclear Fusion and Promising to Obtain Clean Energy

    According to reports, British scientists will build the world's largest power laser. They hope that this £ 85 million (approximately $103 million) device can accelerate the use of nuclear fusion and potentially obtain clean energy, which is inexhaustible.According to the report, the "Vulcan" 20-20 laser will be built in Havel, Oxfordshire, and it will produce a laser brightness that is 24 t...

    2023-10-09
    Vedi traduzione
  • Patterned waveguide enhanced signal amplification within perovskite nanosheets

    Researchers at Busan National University, led by Kwangseuk Kyhm, Professor of Ultra Fast Quantum Optoelectronics from the Department of Optics and Mechatronics, are enhancing signal amplification inside cesium bromide lead perovskite nanosheets through patterned waveguides.Perovskite is a highly attractive material in solar cell applications, but its nanostructure is now being explored as a new la...

    2024-01-10
    Vedi traduzione
  • Laser based deformation may lead to self optimized aircraft wings

    Due to advances in materials science by Stockholm researchers, changing the shape during flight to better handle airflow passing through its aircraft wings may be imminent. The trick involves the melting and drilling capabilities of lasers.Researchers from KTH Royal Institute of Technology in Stockholm, Sweden conducted experiments on paraffin. Using the 2D version of the material, they were able ...

    2024-01-18
    Vedi traduzione