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Recent developments in and perspectives on three-coordinate boron materials: a bright future. | LitMetric

Recent developments in and perspectives on three-coordinate boron materials: a bright future.

Chem Sci

Institut für Anorganische Chemie and Institute for Sustainable Chemistry & Catalysis with Boron , Julius-Maximilians-Universität Würzburg, Am Hubland , 97074 Würzburg , Germany . Email:

Published: February 2017

AI Article Synopsis

  • The empty p-orbital in three-coordinate organoboron compounds gives them unique electron-deficient properties, making them effective π-acceptors in organic materials.
  • Bulky groups are often added to these compounds to enhance stability, yet they can still interact with certain anions, leading to their use in selective sensors.
  • These organoboron compounds exhibit notable features like strong two-photon absorption for biological imaging and applications in OLEDs, including efficient thermally activated delayed fluorescence (TADF).

Article Abstract

The empty p -orbital of a three-coordinate organoboron compound leads to its electron-deficient properties, which make it an excellent π-acceptor in conjugated organic chromophores. The empty p-orbital in such Lewis acids can be attacked by nucleophiles, so bulky groups are often employed to provide air-stable materials. However, many of these can still bind fluoride and cyanide anions leading to applications as anion-selective sensors. One electron reduction generates radical anions. The π-acceptor strength can be easily tuned by varying the organic substituents. Many of these compounds show strong two-photon absorption (TPA) and two-photon excited fluorescence (TPEF) behaviour, which can be applied for biological imaging. Furthermore, these chromophores can be used as emitters and electron transporters in OLEDs, and examples have recently been found to exhibit efficient thermally activated delayed fluorescence (TADF). The three-coordinate organoboron unit can also be incorporated into polycyclic aromatic hydrocarbons. Such boron-doped compounds exhibit very interesting properties, distinct from their all-carbon analogues. Significant developments have been made in all of these areas in recent years and new applications are rapidly emerging for this class of boron compounds.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5452272PMC
http://dx.doi.org/10.1039/c6sc04245gDOI Listing

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