Wendl Sebastian, Zipkat Mirjam, Strobel Philipp, Schmidt Peter J, Schnick Wolfgang
Department of Chemistry, University of Munich (LMU), Butenandtstr. 5-13, 81377, München, Germany.
Lumileds Phosphor Center Aachen, Lumileds (Germany) GmbH, Philipsstr. 8, 52068, Aachen, Germany.
Angew Chem Int Ed Engl. 2021 Feb 23;60(9):4470-4473. doi: 10.1002/anie.202012722. Epub 2020 Dec 23.
The recently introduced nitridophosphate synthesis in a hot isostatic press (HIP) enabled simple access to large-scale product quantities starting from exclusively commercially available starting materials. Herein, we show that this method is suitable for the synthesis of highly condensed functional nitridophosphates, as well. Hence, the syntheses of the nitridophosphate zeolites Ba P N X (X=Cl, Br) are presented as proof of concept for this innovative access. Furthermore, samples of unprecedented Sr P N X (X=Cl, Br) were prepared and characterized to demonstrate the advantages of this synthetic approach over commonly used methods. Luminescence investigations on Eu -doped samples of AE P N X (AE=Sr, Ba; X=Cl, Br) were carried out and characteristics of observed emission bands are discussed.
最近在热等静压(HIP)中引入的氮磷化物合成方法,使得仅从市售起始原料就能简便地获得大规模产品。在此,我们表明该方法也适用于合成高度缩合的功能性氮磷化物。因此,展示了氮磷化物沸石BaPNX(X = Cl,Br)的合成作为这种创新方法的概念验证。此外,制备并表征了前所未有的SrPNX(X = Cl,Br)样品,以证明这种合成方法相对于常用方法的优势。对AEPNX(AE = Sr,Ba;X = Cl,Br)的Eu掺杂样品进行了发光研究,并讨论了观察到的发射带的特性。