VictoriaPark
Science··1 min read

Changing counterions gives molecular materials new electronic behaviors

Researchers have developed new molecular materials by combining electron-donating and electron-accepting units in orthogonally arranged π-electronic systems, fine-tuning their electronic structure to control photoinduced electron transfer. Specifically, complexing boron with 1,3-diketones and 9-oxidophenalenone may produce electron-deficient cationic π-electronic systems with distinct electronic and photophysical behaviors. For more details, refer to the original source: [Link].

Changing counterions gives molecular materials new electronic behaviors
Image: Phys.org

Researchers have developed new molecular materials by combining electron-donating and electron-accepting units in orthogonally arranged π-electronic systems, fine-tuning their electronic structure to control photoinduced electron transfer. Specifically, complexing boron with 1,3-diketones and 9-oxidophenalenone may produce electron-deficient cationic π-electronic systems with distinct electronic and photophysical behaviors. For more details, refer to the original source: [Link].

Sources

  • Phys.org — Changing counterions gives molecular materials new electronic behaviors

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