Chrome Extension
WeChat Mini Program
Use on ChatGLM

Extremely Stable Perylene Bisimide-Bridged Regioisomeric Diradicals and Their Redox Properties.

Chemistry(2023)

Cited 0|Views14
No score
Abstract
Excellent stability is an essential premise for organic diradicals to be used in organic electronic and spintronic devices. We have attached two tris(2,4,6-trichlorophenyl)methyl (TTM) radical building blocks to the two sides of perylene bisimide (PBI) bridges and obtained two regioisomeric diradicals (1,6-TTM-PBI and 1,7-TTM-PBI). Both of the isomers show super stability rather than the monomeric TTM under ambient conditions, due to the increased conjugation and the electron-withdrawing effects of the PBI bridges. The diradicals show distinct and reversible multistep redox processes, and a spectro-electrochemistry investigation revealed the generation of organic mixed-valence (MV) species during reduction processes. The two diradicals have singlet ground states, very small singlet-triplet energy gaps (Delta ES-T) and a pure open-shell character (with diradical character y0=0.966 for 1,6-TTM-PBI and 0.967 for 1,7-TTM-PBI). This work opens a window to developing very stable diradicals and offers the opportunity of their further application in optical, electronic and magnetic devices. The partially conjugated connection via C-C single bonds between a PBI bridge and TTM segments can restrain the formation of closed-shell quinone resonance structures to obtain pure diradicals. The three building blocks not only keep their inherent characteristics but also exist electronic communication that causes distinct and reversible multistep redox processes and contributes to extremely high stability under ambient conditions.image
More
Translated text
Key words
diradicals,perylene bisimides,regioisomers,stability,tris(2,4,6-trichlorophenyl)methyl radical
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined