Quantum Yields over 80% Achieved in Luminescent Europium Complexes by Employing Diphenylphosphoryl Tridentate Ligands was written by Wei, Chen;Sun, Boxun;Cai, Zelun;Zhao, Zifeng;Tan, Yu;Yan, Weibo;Wei, Huibo;Liu, Zhiwei;Bian, Zuqiang;Huang, Chunhui. And the article was included in Inorganic Chemistry in 2018.Formula: C12H7BrN2 This article mentions the following:
Four tridentate Eu(III) complexes containing a diphenylphosphoryl group are prepared with strong bonding between the ligands and centered ion, convinced by crystal structures. Compared to their parent bidentate complexes, the tridentate complexes display improved and exceptionally high luminescence quantum yields (PLQYs) in powder (all over 80%, best 91%), as well as in a CH2Cl2 solution and poly(Me methacrylate) films, benefiting from compact, stable, and saturated coordination. Crystallog. data are given. In the experiment, the researchers used many compounds, for example, 2-Bromo-1,10-phenanthroline (cas: 22426-14-8Formula: C12H7BrN2).
2-Bromo-1,10-phenanthroline (cas: 22426-14-8) belongs to organobromine compounds. Most organobromine compounds, like most organohalide compounds, are relatively nonpolar. The reactivity of organobromine compounds resembles but is intermediate between the reactivity of organochlorine and organoiodine compounds. For many applications, organobromides represent a compromise of reactivity and cost.Formula: C12H7BrN2
Referemce:
Bromide – Wikipedia,
bromide – Wiktionary