Español

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

803
2024-03-19 16:20:43
Ver traducción

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

Recomendaciones relacionadas
  • The construction of Hefei Advanced Light Source Project held a launch ceremony, expected to be completed and released in 5 years

    Recently, in the Future Science City of Hefei City, Anhui Province, the National Major Science and Technology Infrastructure Project and Supporting Projects of Hefei Advanced Light Source announced the start of construction, with a planned land area of approximately 656 acres. The first phase of the project is expected to be completed by September 2028.After completion, it will become an internati...

    2023-09-23
    Ver traducción
  • Gooch&Housego successfully acquires Phoenix Optical Technologies

    Recently, renowned precision optical technology manufacturer Gooch&Housego (G&H) announced the successful acquisition of Phoenix Optical Technologies, a precision optical manufacturer located in St. Asaf, Wales, UK. The acquisition transaction amounts to £ 6.75 million, which not only consolidates G&H's market position in the aerospace and defense sectors, but also significantly expa...

    2024-11-04
    Ver traducción
  • $75 million, this laser equipment manufacturer will be acquired

    Rocket Lab USA continues its path of vertical integration and has signed an exclusive but non binding agreement with MynaricAG, a German laser communication terminal (LCT) supplier and Rocket Lab supplier, to acquire the company for $75 million in cash or stock.If Mynaric achieves its revenue target, it will pay an additional revenue of up to $75 million. This acquisition depends on whether Myna...

    03-25
    Ver traducción
  • Fraunhofer ISE develops a faster laser system for wafer processing

    By using a new type of laser, the processing speed of wafers can be 10 to 20 times faster than before. This is the result of a research project at the Fraunhofer Institute for Solar Systems in Germany.Researchers have developed a prototype that can use ultraviolet waves to carve the most intricate structures on silicon wafers. The new system concept enables solar cell manufacturers to perform lase...

    2023-12-23
    Ver traducción
  • IMEC Introduces World's First 110GHz+ C-Band GeSi EA Modulator

    The nanoelectronics research center IMEC from Belgium announced the successful completion of a significant trial: the fabrication of a 110GHz C-band GeSi electro-absorption modulator on a 300mm silicon photonics platform.Achieving a net data rate of 400Gb/s per lane and optimized for compactness, low latency, and high energy efficiency, imec says its modulator “establishes the foundation for next-...

    10-09
    Ver traducción