18150888. PHOTOELECTRIC DEVICES AND SENSORS AND ELECTRONIC DEVICES simplified abstract (SAMSUNG ELECTRONICS CO., LTD.)

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PHOTOELECTRIC DEVICES AND SENSORS AND ELECTRONIC DEVICES

Organization Name

SAMSUNG ELECTRONICS CO., LTD.

Inventor(s)

Seok-Hwan Hong of Seoul (KR)

Sung Jun Park of Yongin-si (KR)

Kyung Bae Park of Hwaseong-si (KR)

Sung Young Yun of Suwon-si (KR)

Chul Joon Heo of Busan (KR)

PHOTOELECTRIC DEVICES AND SENSORS AND ELECTRONIC DEVICES - A simplified explanation of the abstract

This abstract first appeared for US patent application 18150888 titled 'PHOTOELECTRIC DEVICES AND SENSORS AND ELECTRONIC DEVICES

Simplified Explanation

The abstract describes a photoelectric device that consists of two electrodes, a photoelectric conversion layer, and a charge transport layer. The photoelectric conversion layer absorbs light and converts it into an electrical signal, while the charge transport layer facilitates the movement of charges between the electrodes and the photoelectric conversion layer. The charge transport layer is made up of two different materials that form a heterojunction.

  • The photoelectric device includes electrodes, a photoelectric conversion layer, and a charge transport layer.
  • The photoelectric conversion layer absorbs light and converts it into an electrical signal.
  • The charge transport layer allows charges to move between the electrodes and the photoelectric conversion layer.
  • The charge transport layer is composed of two different materials that create a heterojunction.

Potential Applications

  • Solar cells: The photoelectric device can be used in solar cells to convert sunlight into electricity.
  • Photodetectors: The device can be used in photodetectors to detect and measure light intensity.
  • Image sensors: The device can be utilized in image sensors to capture and convert light into digital images.

Problems Solved

  • Efficient light absorption: The photoelectric conversion layer is designed to absorb light in a specific wavelength spectrum, ensuring efficient conversion of light into electrical signals.
  • Charge transport: The charge transport layer facilitates the movement of charges, ensuring efficient transfer of electrical signals.

Benefits

  • Improved energy conversion: The device's ability to efficiently convert light into electrical signals results in improved energy conversion in applications such as solar cells.
  • Enhanced sensitivity: The device's design allows for effective light absorption and charge transport, leading to enhanced sensitivity in applications like photodetectors and image sensors.


Original Abstract Submitted

A photoelectric device includes a first electrode, a second electrode, a photoelectric conversion layer between the first electrode and the second electrode, and a charge transport layer between the first electrode and the photoelectric conversion layer. The photoelectric conversion layer is configured to absorb light in a wavelength spectrum and converting the absorbed light into an electrical signal. The charge transport layer includes a first charge transport material and a second charge transport material which collectively define a heterojunction.