Close Menu
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
What's Hot

JA SOLAR, ARTSOLAR agrees to expand the PV module production in South Africa

June 17, 2025

Different substance, different impact on PV module performance – PV Magazine International

June 17, 2025

Molecular relay structure makes faster photon -up conversion possible for solar and medical use

June 17, 2025
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram
Solar Energy News
Tuesday, June 17
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
Solar Energy News
Home - News - Molecular relay structure makes faster photon -up conversion possible for solar and medical use
News

Molecular relay structure makes faster photon -up conversion possible for solar and medical use

solarenergyBy solarenergyJune 17, 2025No Comments2 Mins Read
Facebook Twitter Pinterest LinkedIn Tumblr Email
Share
Facebook Twitter LinkedIn Pinterest Email

Molecular relay structure makes faster photon -up conversion possible for solar and medical use






A new molecular architecture developed by researchers at Kobe University accelerates light conversion by making faster intramolecular energy movement possible. This progress could pave the way for more efficient solar energy technologies and improved medical diagnostics.

Foton Upconversion, a process in which two light energy light particles combine into one higher energy yield, promises for applications from photovoltaic to targeted therapies. However, the method usually depends on rare and inefficient molecular collisions with precise alignment. Researchers have sought ways to improve both the reliability and the efficiency of this process.

Under the leadership of photoscientist Kobori Yasuhiro, the KOBE team came up with a molecule that considerably increases the chance of successful energy manual events. By arranging three anthracene molecules around a central drill atom, the team created a structure where an excited state, or triplet excitone, can quickly jump between the anthracens. This internal hopping increases the effective interaction space and maintains energy levels, so that the energy merger is known as triplet-triplet destruction-lake probably during molecular encounters.

“Our analysis clarifies how absorbed energy moves and transforms the molecule,” said Kobori. “This concept can guide the design of more effective upconverters.”

Reported in Angewandte Chemie International Edition, the new molecular configuration showed a 20% faster speed of triplet fusion compared to earlier designs. The hopping speed of the triplet exciton exceeded the typical duration of molecular collisions, which improves the orientation match that is needed for up conversion.

See also  Can I add more solar panels to my system in the future? (2024)

Moreover, the researchers discovered that luminescence -efficiency can be coordinated by adjusting the viscosity of the medium. A more viscous environment reduces both molecular encounters and exciton mobility in the molecule. This opens the possibilities for the use of up conversion -luminescence to study cellular micro environments.

By showing how internal energy mobility can be designed for better efficiency, the KOBE team proposes a broader design strategy that can lead to new classes of powerful upconverters. Kobori said: “We expect that this development can contribute to solving global energy problems, and to extend to a wide range of areas such as cancer therapy and diagnostics, by using harmless low-energy light and in-situ upconversion.”

Research report:Vibronic trimer design improve intramolecular triplet exciton hopping to speed up the destruction of the triplet triplet for photon upconversion



Source link

conversion faster medical molecular Photon relay solar structure
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
solarenergy
  • Website

Related Posts

JA SOLAR, ARTSOLAR agrees to expand the PV module production in South Africa

June 17, 2025

India launches 2 GW Solar, 4 GWH Storage Tender – PV Magazine International

June 17, 2025

Verogy and NJR Clean Energy Ventures break site on the Solar Project of Connecticut Community

June 17, 2025
Leave A Reply Cancel Reply

Don't Miss
Cummunity

Think Community Solar announces market expansion

By solarenergyMay 10, 20240

Michael Fallquist Subsidiary of Energywell Consider community solar enters ten…

Large-scale battery storage on the rise in Chile – SPE

June 5, 2024

China deploys first large-scale sodium-ion battery – SPE

May 15, 2024

Strategic value in Europe’s C&I Solar Segment – PV Magazine International

June 12, 2025
Stay In Touch
  • Facebook
  • Twitter
  • Pinterest
  • Instagram
  • YouTube
  • Vimeo
Our Picks

JA SOLAR, ARTSOLAR agrees to expand the PV module production in South Africa

June 17, 2025

Different substance, different impact on PV module performance – PV Magazine International

June 17, 2025

Molecular relay structure makes faster photon -up conversion possible for solar and medical use

June 17, 2025

India launches 2 GW Solar, 4 GWH Storage Tender – PV Magazine International

June 17, 2025
Our Picks

JA SOLAR, ARTSOLAR agrees to expand the PV module production in South Africa

June 17, 2025

Different substance, different impact on PV module performance – PV Magazine International

June 17, 2025

Molecular relay structure makes faster photon -up conversion possible for solar and medical use

June 17, 2025
About
About

Stay updated with the latest in solar energy. Discover innovations, trends, policies, and market insights driving the future of sustainable power worldwide.

Subscribe to Updates

Get the latest creative news and updates about Solar industry directly in your inbox!

Facebook X (Twitter) Instagram Pinterest
  • Contact
  • Privacy Policy
  • Terms & Conditions
© 2025 Tsolarenergynews.co - All rights reserved.

Type above and press Enter to search. Press Esc to cancel.