Deutsch

Southeast University makes new progress in quantum efficiency research of van der Waals light-emitting diodes

896
2024-10-28 11:56:42
Übersetzung anzeigen

Recently, Professor Ni Zhenhua from the School of Electronic Science and Engineering at Southeast University, Professor Lv Junpeng from the School of Physics, Professor Liu Hongwei from the School of Physical Science and Technology at Nanjing Normal University, and Professor Zhou Peng from the School of Microelectronics at Fudan University collaborated to propose a van der Waals light-emitting diode based on two-dimensional perovskite and combined with low-temperature van der Waals transfer technology, achieving a quantum efficiency of over 10% at room temperature. The related results were published in Science Advances under the title "Van der Waals integrated single functional light emitting diodes exceeding 10% quantum efficiency at room temperature".

At present, the main bottleneck in the development of optoelectronic integrated chips is the lack of high-performance on-chip light sources. Among numerous material systems, two-dimensional semiconductor materials have become an ideal material for building new generation optoelectronic systems and breaking through the bottleneck of high-performance on-chip light sources due to their excellent optoelectronic properties and integration advantages. Although significant progress has been made in two-dimensional semiconductor based light-emitting diode devices at present, their luminous efficiency at room temperature and high injection state is generally low, which limits their practical application in optoelectronic chips.

This study utilizes the characteristics of two-dimensional semiconductor materials with multiple quantum wells and combines them with low-temperature van der Waals transfer technology to achieve on-chip integrated high-efficiency light-emitting diodes. By utilizing the advantages of the two-dimensional perovskite multi quantum well structure and high fluorescence quantum yield, combined with the low potential barrier height of the graphene/two-dimensional perovskite interface, an external quantum efficiency of over 10% at room temperature has been achieved through efficient carrier tunneling recombination process, which is the highest level of current van der Waals light-emitting diodes. This scheme has universality and can be extended to other layered two-dimensional materials. This achievement lays a solid foundation for the future development of large-area, high-efficiency, high brightness, and on-chip integrated two-dimensional semiconductor light-emitting devices.

Ni Zhenhua, Lv Junpeng, Liu Hongwei, and Zhou Peng are the co corresponding authors of this article. Hu Zhenliang, a postdoctoral fellow at the School of Physics, Southeast University, and Fu Qiang, a doctoral student, are co first authors of this article. This work is supported by projects such as the National Key Research and Development Program, the National Natural Science Foundation of China, and the Jiangsu Provincial Natural Science Foundation.

Source: Opticsky

Ähnliche Empfehlungen
  • Marvin Panaco launches the Mastersizer 3000 for laser diffraction particle size determination+

    Marvin Panaco, a subsidiary of Spectris plc located in Egham, Surrey, UK, announced the launch of its new laser diffraction particle size measurement instrument Mastersizer 3000+. Mastersizer 3000+utilizes integrated artificial intelligence and data science driven software solutions, providing method development support, data quality feedback, instrument monitoring, and troubleshooting recommendat...

    2024-03-22
    Übersetzung anzeigen
  • Industrial laser giant Coherent receives $33 million investment

    Recently, according to media reports, industrial laser giant Coherent has signed a "preliminary terms memorandum" with the US Department of Commerce, which will receive up to $33 million in investment under the Chip and Science Act.It is reported that the funds will mainly be used to support the modernization and expansion project of the cutting-edge manufacturing cleanroom in Coherent's existing ...

    2024-12-12
    Übersetzung anzeigen
  • Scientists demonstrate powerful UV-visible infrared full-spectrum laser

    Figure: a. Schematic diagram of the HCF-LN-CPPLN experimental setup. W. CaF? Window M, mirror.b. The bright white light circular spots emitted by the CPPLN sample.c. The first-order diffraction beam of B displays a colorful rainbow pattern from purple to red.d. The HCF-LN-CPPLN module generates normalized spectra of the output full spectrum laser signal through the second NL HHG and third NL SPM e...

    2023-08-25
    Übersetzung anzeigen
  • Nature Photonics reports a new type of nonlinear optical crystal - all band phase matched crystal

    Short wave ultraviolet all solid-state coherent light sources have the characteristics of strong photon energy, practicality and precision, and high spectral resolution. They have significant application value in laser precision processing, information communication, cutting-edge science, and aerospace fields.The core component of obtaining all solid-state shortwave ultraviolet lasers is nonlinear...

    2023-10-07
    Übersetzung anzeigen
  • Latest breakthrough! 3500W free output blue semiconductor laser

    The 3500W free output blue semiconductor laser beam is output in a free space manner, with a rectangular spot directly acting on the material surface without the need for fiber optics or laser processing heads. This laser has a wavelength of 455 ± 10nm, with continuously adjustable power and a maximum output power of over 3500W. It is mainly used for non-ferrous metal cladding, quenching, etc., to...

    2024-09-03
    Übersetzung anzeigen