Our recently published paper (ACS Omega 2016, 1(6), 1336-1342) on sultam-based deep-blue organic emitters has seen almost 1000 downloads in under three months, making it the most viewed article of Volume 1, Issue 6 (Dec 2016). Link to article
Pushing boundaries with novel functional organic materials!
Showing posts with label deep-blue luminogen. Show all posts
Showing posts with label deep-blue luminogen. Show all posts
Wednesday, March 15, 2017
Wednesday, December 28, 2016
Sulfonamides for Organic Electronics - Deep-Blue Emitter
My team recently reported a sulfonamide-based blue-emitting organic fluorophore that exhibits crystallization-induced emission enhancement.[1] Sulfonamides remain highly underutilized as functional groups in organic electronics and should be further explored as versatile molecular motifs for engineering structure-property-function relationships.
[1] Sultam-Based Hetero[5]helicene: Synthesis, Structure, and Crystallization-Induced
Emission Enhancement, ACS Omega 2016, 1, 1336-1342. [link]
[1] Sultam-Based Hetero[5]helicene: Synthesis, Structure, and Crystallization-Induced
Emission Enhancement, ACS Omega 2016, 1, 1336-1342. [link]
Labels:
AIE,
AIEE,
bandgap,
blue emitter,
chemistry,
CIEE,
deep-blue luminogen,
helicene,
materials,
OLED,
OLEDs,
optoelectronics,
organic electronics,
sulfonamide,
sultam,
University of Ottawa,
uOttawa
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