18678353. PHOTORESPONSIVE MATERIAL AND PHOTORESPONSIVE COMPOSITION simplified abstract (CANON KABUSHIKI KAISHA)

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PHOTORESPONSIVE MATERIAL AND PHOTORESPONSIVE COMPOSITION

Organization Name

CANON KABUSHIKI KAISHA

Inventor(s)

Yutaka Yoshimasa of Kanagawa (JP)

Yoshihiro Ohashi of Tokyo (JP)

PHOTORESPONSIVE MATERIAL AND PHOTORESPONSIVE COMPOSITION - A simplified explanation of the abstract

This abstract first appeared for US patent application 18678353 titled 'PHOTORESPONSIVE MATERIAL AND PHOTORESPONSIVE COMPOSITION

Simplified Explanation:

The patent application describes a photoresponsive material that includes a nanoparticle with a perovskite crystal structure and a shell-like ligand with binding portions containing an ionic structural unit and a polymer portion bound to the nanoparticle at multiple positions.

  • The material is photoresponsive, meaning it can react to light stimuli.
  • The nanoparticle has a perovskite crystal structure, which is known for its unique properties.
  • The ligand has binding portions with an ionic structural unit, enhancing the material's stability and reactivity.
  • The polymer portion of the ligand is bound to the nanoparticle at multiple positions, providing structural support and flexibility.
  • Overall, the material combines the properties of perovskite crystals with the versatility of polymers, making it suitable for various applications.

Potential Applications: The technology could be used in photovoltaic cells, sensors, light-emitting devices, and other optoelectronic applications.

Problems Solved: The material addresses the need for photoresponsive materials with enhanced stability and reactivity.

Benefits: The material offers improved performance in light-sensitive applications, potentially leading to more efficient devices.

Commercial Applications: The technology could revolutionize the field of optoelectronics, leading to advancements in renewable energy and sensor technologies.

Questions about the Technology: 1. How does the perovskite crystal structure enhance the material's properties? 2. What are the potential challenges in scaling up production of this material?


Original Abstract Submitted

A photoresponsive material contains a nanoparticle with a perovskite crystal structure and a shell-like ligand that has a plurality of binding portions with an ionic structural unit and that has a polymer portion bound to the nanoparticle at a plurality of positions via the plurality of binding portions.