Fachbereich Chemie, Technische Universität Kaiserslautern, Erwin-Schrödinger-Str. Geb. 54, D-67663 Kaiserslautern, Germany.
Chem Asian J. 2010 Sep 3;5(9):2001-15. doi: 10.1002/asia.201000098.
Triethoxysilyl functionalized phenothiazinyl ureas were synthesized and immobilized by in situ synthesis into mesoporous hybrid materials. The designed precursor molecules influence the structure of the final materials and the intermolecular distance of the phenothiazines. XRD and N(2) adsorption measurements indicate the presence of highly ordered two-dimensional hexagonally structured functional materials, while the incorporation of the organic compounds in the solid materials was proved by means of (13)C and (29)Si solid state NMR spectroscopy as well as by FT-IR spectroscopy. Upon oxidation with (NO)BF(4) or SbCl(5), stable phenothiazine radical cations were generated in the pores of the materials, which was detected by means of UV/Vis, emission, and EPR spectroscopies.
三乙氧基硅基功能化吩噻嗪基脲通过原位合成被固定在介孔杂化材料中。设计的前驱体分子影响最终材料的结构和吩噻嗪的分子间距离。XRD 和 N2 吸附测量表明存在高度有序的二维六方结构功能材料,而通过 (13)C 和 (29)Si 固态 NMR 光谱以及傅里叶变换红外光谱证实了有机化合物在固体材料中的掺入。用 (NO)BF4 或 SbCl5 氧化后,在材料的孔中生成了稳定的吩噻嗪自由基阳离子,这可以通过紫外/可见、发射和 EPR 光谱检测到。