Journal Article10.1002/ANIE.201210236
Borylated Dibenzoborepin: Synthesis by Skeletal Rearrangement and Photochromism Based on Bora-Nazarov Cyclization
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About: This article is published in Angewandte Chemie. The article was published on 25 Mar 2013. The article focuses on the topics: Photochromism.
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Citations
Diboron(4) Compounds: From Structural Curiosity to Synthetic Workhorse
TL;DR: Although known for over 90 years, only in the past two decades has the chemistry of diboron(4) compounds been extensively explored and these compounds now feature prominently in both metal-catalyzed and metal-free methodologies for the formation of B-C bonds and other processes.
861
Four-coordinate organoboron compounds for organic light-emitting diodes (OLEDs).
TL;DR: An overview of the progress in the molecular construction of four-coordinate organoboron compounds with an emphasis on their applications in OLEDs is provided.
504
Reversible photochromic system based on rhodamine B salicylaldehyde hydrazone metal complex.
TL;DR: Rhodamine B salicylaldehyde hydrazone metal complex was found to undergo intramolecular ring-open reactions upon UV irradiation, which led to a distinct color and fluorescence change both in solution and in solid matrix, and the thermal bleaching rate was tunable by using different metal ions, temperatures, solvents, and chemical substitutions.
238
Fused polycyclic aromatics incorporating boron in the core: fundamentals and applications
Aude Escande,Michael J. Ingleson +1 more
TL;DR: The incorporation of boron into the core structure of fused polycyclic aromatics generates compounds with highly attractive properties that have recently received significant attention, and this feature article summarizes the recent key developments.
218
Planar Chiral Organoboranes with Thermoresponsive Emission and Circularly Polarized Luminescence: Integration of Pillar[5]arenes with Boron Chemistry
Jin-Fa Chen,Xiaodong Yin,Bowen Wang,Kai Zhang,Guoyun Meng,Songhe Zhang,Yafei Shi,Nan Wang,Suning Wang,Pangkuan Chen +9 more
TL;DR: An efficient and straightforward approach is presented to achieve early examples of highly luminescent chiral systems ( P5NN and P5BN) and an interesting thermochromic shift of the emission over a wide range of temperature is afforded.
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