2020
DOI: 10.1002/ejic.202000557
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9‐Borabicyclononane Bipyridyl Complexes: Synthesis, Luminescence, and Electronic Characterization

Abstract: This work presents the use of organoboron compounds as anolytes in redox flow batteries. Through the study of their structural, electrochemical, and photophysical properties, four bipyridyl boronium salts show potential for application in such batteries. The compounds were synthesized in moderate to high yields by previously published methods. We find [a

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Cited by 3 publications
(6 citation statements)
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References 24 publications
(56 reference statements)
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“…2–5 They also act as functional compounds such as hypergolic ionic liquids, 6–8 anion receptors, 9 fluorescent materials, 10,11 and disinfectants. 12 Among them, bipyridine-boronium complexes have attracted attention as redox-active compounds in 4,4′-bipyridine-boronium 13 or 2,2′-bipyridine-boronium complexes, 10,14–21 because their bi(pyridinium) structures resemble viologens or diquats, which makes them easily reducible.…”
Section: Introductionmentioning
confidence: 99%
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“…2–5 They also act as functional compounds such as hypergolic ionic liquids, 6–8 anion receptors, 9 fluorescent materials, 10,11 and disinfectants. 12 Among them, bipyridine-boronium complexes have attracted attention as redox-active compounds in 4,4′-bipyridine-boronium 13 or 2,2′-bipyridine-boronium complexes, 10,14–21 because their bi(pyridinium) structures resemble viologens or diquats, which makes them easily reducible.…”
Section: Introductionmentioning
confidence: 99%
“…1 These complexes are of interest as research targets in various fields because of their characteristic molecular structures and properties, for example, they are key intermediates in some catalytic reactions. [2][3][4][5] They also act as functional compounds such as hypergolic ionic liquids, [6][7][8] anion receptors, 9 fluorescent materials, 10,11 and disinfectants. 12 Among them, bipyridine-boronium complexes have attracted attention as redox-active compounds in 4,4′-bipyridine-boronium 13 or 2,2′-bipyridine-boronium complexes, 10,[14][15][16][17][18][19][20][21] because their bi( pyridinium) structures resemble viologens or diquats, which makes them easily reducible.…”
Section: Introductionmentioning
confidence: 99%
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“…In fact, many boron heterocycles also have important applications in supramolecular chemistry and materials science. 17–21…”
Section: Introductionmentioning
confidence: 99%
“…In fact, many boron heterocycles also have important applications in supramolecular chemistry and materials science. [17][18][19][20][21] Accordingly, the synthesis of new boron heterocyclic compounds has attracted significant attention. The most common design strategy employed in developing boron heterocycles involves replacing the C-X (X = O, N) unit with isosteric and isoelectronic B-N or B-O bonds.…”
Section: Introductionmentioning
confidence: 99%