Polski

Molecular orientation is key: a new perspective on revealing electronic behavior using two-photon emission spectroscopy

477
2024-03-19 16:20:43
Zobacz tłumaczenie

Organic electronics has aroused great interest in academia and industry due to its potential applications in OLEDs and organic solar cells, with advantages such as lightweight design, flexibility, and cost-effectiveness. These devices are made by depositing organic molecular thin films onto a substrate that serves as electrodes and exerting their effects by controlling electron transfer between the film and substrate. Therefore, understanding the electronic behavior at the interface between the substrate and the thin film, as well as the electronic properties of organic thin films, is crucial for the further development of organic electronics. In addition, simultaneous observation of photocarrier electrons and intramolecular photoexcitation will provide more insights into organic molecular thin films.

Although a technique called photoelectron spectroscopy has been used to study the static electronic states of organic molecule films in detail, accurately detecting the dynamic behavior of electrons attempting to express their functions in devices has always been challenging and hindering progress.

The research team led by Associate Professor Masahiro Shibuta from the Graduate School of Engineering at Osaka City University used two-photon emission spectroscopy, scanning tunneling microscopy, and low-energy electron diffraction to observe the electronic behavior and surface structure of triphenyl molecular thin films deposited on graphite substrates. The results indicate that TP molecules exhibit a special structure, which adsorbs on the substrate in a standing structure. Under light irradiation, two electrons are injected into TP molecules from the substrate, and photoexcited electrons in the molecular thin film are successfully observed simultaneously in a single sample. In addition, strong photoluminescence was also observed on thin films with a special structure consisting of only one layer of molecules, where the molecules were diagonally adsorbed onto the substrate, similar to the case of TP molecules. It is expected that these results will contribute to the development of new luminescent materials and the further development of functional organic electronic devices.

"2PPE spectroscopy is still a new method for evaluating electronic states, but its drawback is that although well optimized measurements are time-consuming, electronic states are sometimes well observed and sometimes not," said Professor Shibuta. Our research findings emphasize that the visibility of electronic states is closely related to the adsorption mode and electronic properties of molecules on the substrate. In other words, not only the type of molecules, but also their arrangement must be appropriately controlled to create a device that can fully demonstrate their functions. I am pleased that our research provides insights for the development of functional materials for practical applications.

Source: Laser Net

Powiązane rekomendacje
  • Measurement of spectral line intensity of NO2 near 6.2 microns using a quantum cascade laser spectrometer

    Recently, a joint research team from the Key Laboratory of Optoelectronic Information Acquisition and Processing of Anhui University, the Laboratory of Laser Spectroscopy and Sensing of Anhui University, and Ningbo Haier Xin Optoelectronic Technology Co., Ltd. published a paper titled "Measures of line strengths for NO2 near 6.2" μ Research paper on using a quantum cascade laser spectrometer.Re...

    2024-01-02
    Zobacz tłumaczenie
  • Laser induced 2D material modification: from atomic scale to electronic scale

    Background IntroductionTwo dimensional materials have attracted widespread attention due to their atomic level thickness and unique properties, such as high binding energy, tunable bandgap, and new electronic degrees of freedom (valley electronics). They have many application prospects in fields such as microelectronics, nanophotonics, and nanoenergy. Various two-dimensional materials have their o...

    2024-02-23
    Zobacz tłumaczenie
  • Laser photonics helps simplify maintenance processes in the mining industry

    Laser Photonics Corporation (LPC) is a leading global developer of industrial laser systems for cleaning and other material processing applications, emphasizing the critical applications of its industrial laser cleaning systems in the mining industry.Laser Photonics provides a user-friendly, ethical, cost-effective, and time-saving solution for professionals in the mining industry to maintain heav...

    2024-06-14
    Zobacz tłumaczenie
  • Cambridge scientists have achieved the long-sought quantum state stability in new 2D materials

    Scientists at the Cavendish laboratory have discovered the spin coherence of hexagonal boron nitride (hBN) under normal conditions, providing new prospects for the application of quantum technology.Researchers at Cavendish Laboratory have found that a single "atomic defect" in a material called hexagonal boron nitride (hBN) maintains spin coherence at room temperature and can be manipulated using ...

    2024-05-27
    Zobacz tłumaczenie
  • Progress in research on neodymium doped strontium aluminate lanthanum magnesium laser crystals by Shanghai Optics and Machinery Institute

    Recently, the Advanced Laser and Optoelectronic Functional Materials Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in the research of Nd: ASL (Sr0.7Nd0.05La0.25Mg0.3Al22.7O19) laser crystals, and the related achievements were published in Infrared Physics&Technology under the title of "Tunable laser operations on Nd doped cont...

    2024-03-19
    Zobacz tłumaczenie