^James S. Nowick, Guido Lutterbach, “Sodium Bromide” in Encyclopedia of Reagents for Organic Synthesis John Wiley & Sons, 2001. doi:10.1002/047084289X.rs054
^L. Carroll King; G. Kenneth Ostrum. Selective Bromination with Copper(II) Bromide. The Journal of Organic Chemistry. 1964, 29 (12): 3459–3461. doi:10.1021/jo01035a003.
^Dennis P. Bauer; Roger S. Macomber. Iodide catalysis of oxidations with dimethyl sulfoxide. Convenient two-step synthesis of .alpha. diketones from .alpha.-methylene ketones. The Journal of Organic Chemistry. 1975, 40 (13): 1990–1992. doi:10.1021/jo00901a027.
^Cupples, A. M., R. A. Sanford, and G. K. Sims. 2005. Dehalogenation of Bromoxynil (3,5-Dibromo-4-Hydroxybenzonitrile) and Ioxynil (3,5-Diiodino-4-Hydroxybenzonitrile) by Desulfitobacterium chlororespirans. Appl. Env. Micro. 71(7):3741-3746.
^Jayme N. Carter-Franklin, Alison Butler "Vanadium Bromoperoxidase-Catalyzed Biosynthesis of Halogenated Marine Natural Products" Journal of the American Chemical Society 2004, volume 126, 15060-15066. doi:10.1021/ja047925p
^Gordon W. Gribble "The diversity of naturally occurring organobromine compounds" Chemical Society Reviews, 1999, volume 28, pages 335 – 346.doi:10.1039/a900201d
^Rhoda A. Marshall, John T.G. Hamilton , M.J. Dring, D.B. Harper. Do vesicle cells of the red alga Asparagopsis (Falkenbergia stage) play a role in bromocarbon production? Chemosphere 52 (2003) 471–475.