Engelsberger Florian M, Chau Thanh G, Bräuniger Thomas, Schnick Wolfgang
Department of Chemistry, Ludwig-Maximilians-Universität München, Butenandtstraße 5-13, 81377, Munich, Germany.
Chemistry. 2024 Jun 25;30(36):e202401238. doi: 10.1002/chem.202401238. Epub 2024 Jun 3.
The imidonitridosilicate RbSiN(NH), being only the second representative of this compound class, was synthesized ammonothermally at 870 K and 230 MPa. Its crystal structure was solved from single-crystal X-ray diffraction data. The imidonitridosilicate crystallizes isotypically with the respective potassium compound in space group P432 with the lattice parameter a=10.9422(4) Å forming a three-dimensional imidonitridosilicate tetrahedra network with voids for the rubidium ions. The structure model and the presence of the imide groups were verified by Fourier-Transform infrared (FTIR) and magic-angle spinning (MAS) NMR spectroscopy, using cross polarization N{H} and Si{H} MAS NMR experiments. RbSiN(NH) represents a possible intermediate during the ammonothermal synthesis of nitridosilicates. The characterization of such intermediates improves the understanding of the reaction pathway from ammonothermal solutions to nitrides. Thus, the ammonothermal synthesis is an alternative approach to the well-established high-temperature synthesis leading to the compound class of nitridosilicates.
亚胺基氮硅化物RbSiN(NH)是该化合物类别的第二个代表物,通过在870 K和230 MPa的氨热条件下合成。其晶体结构由单晶X射线衍射数据解析得出。该亚胺基氮硅化物与相应的钾化合物同型结晶,空间群为P432,晶格参数a = 10.9422(4) Å,形成了一个三维亚胺基氮硅化物四面体网络,其中有铷离子的空隙。通过傅里叶变换红外光谱(FTIR)和魔角旋转(MAS)核磁共振光谱,利用交叉极化N{H}和Si{H} MAS NMR实验,验证了结构模型和亚胺基团的存在。RbSiN(NH)代表了氮硅化物氨热合成过程中的一种可能中间体。对这类中间体的表征有助于更好地理解从氨热溶液到氮化物的反应途径。因此,氨热合成是一种替代成熟的高温合成方法来制备氮硅化物化合物类别的途径。