首页> 外文OA文献 >Melem (2,5,8-Triamino-tri-s-triazine), an Important Intermediate during Condensation of Melamine Rings to Graphitic Carbon Nitride:  Synthesis, Structure Determination by X-ray Powder Diffractometry, Solid-State NMR, and Theoretical Studies
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Melem (2,5,8-Triamino-tri-s-triazine), an Important Intermediate during Condensation of Melamine Rings to Graphitic Carbon Nitride:  Synthesis, Structure Determination by X-ray Powder Diffractometry, Solid-State NMR, and Theoretical Studies

机译:melem(2,5,8-三氨基 - 三 - 三嗪),三聚氰胺环与石墨碳氮化物缩合过程中的重要中间体:合成,X射线粉末衍射法测定结构,固态核磁共振和理论研究

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摘要

Single-phase melem (2,5,8-triamino-tri-s-triazine) C6N7(NH2)3 was obtained as a crystalline powder by thermal treatment of different less condensed C−N−H compounds (e.g., melamine C3N3(NH2)3, dicyandiamide H4C2N4, ammonium dicyanamide NH4[N(CN)2], or cyanamide H2CN2, respectively) at temperatures up to 450°C in sealed glass ampules. The crystal structure was determined ab initio by X-ray powder diffractometry (Cu Kα1:  P21/c (No. 14), a = 739.92(1) pm, b = 865.28(3) pm, c = 1338.16(4) pm, β = 99.912(2)°, and Z = 4). In the solid, melem consists of nearly planar C6N7(NH2)3 molecules which are arranged into parallel layers with an interplanar distance of 327 pm. Detailed 13C and 15N MAS NMR investigations were performed. The presence of the triamino form instead of other possible tautomers was confirmed by a CPPI (cross-polarization combined with polarization inversion) experiment. Furthermore, the compound was characterized using mass spectrometry, vibrational (IR, Raman), and photoluminescence spectroscopy. The structural and vibrational properties of molecular melem were theoretically studied on both the B3LYP and the MP2 level. A structural optimization in the extended state was performed employing density functional methods utilizing LDA and GGA. A good agreement was found between the observed and calculated structural parameters and also for the vibrational frequencies of melem. According to temperature-dependent X-ray powder diffractometry investigations above 560°C, melem transforms into a graphite-like C−N material.
机译:通过热处理不同的缩合程度较低的C-N-H化合物(例如三聚氰胺C3N3(NH2),以单晶粉末形式获得2,5,8-三氨基-三-三嗪-三嗪C6N7(NH2)3 ),双氰胺H4C2N4,双氰胺铵NH4 [N(CN)2]或氰胺H2CN2)在密封玻璃安瓿瓶中,最高温度为450°C。通过X射线粉末衍射从头开始确定晶体结构(CuKα1:P21 / c(No.14),a = 739.92(1)pm,b = 865.28(3)pm,c = 1338.16(4)pm, β= 99.912(2)°,Z = 4)。在固体中,元素由几乎平面的C6N7(NH2)3分子组成,这些分子以327 pm的平面间距排列成平行层。进行了详细的13C和15N MAS NMR研究。通过CPPI(交叉极化与极化反转)实验证实了三氨基形式而不是其他可能的互变异构体的存在。此外,使用质谱,振动(IR,拉曼)和光致发光光谱对化合物进行表征。理论上在B3LYP和MP2水平上研究了分子分子的结构和振动性质。使用LDA和GGA的密度泛函方法在延伸状态下进行结构优化。在观察到的和计算出的结构参数之间以及在梅勒的振动频率之间找到了很好的一致性。根据在560°C以上的温度相关的X射线粉末衍射研究,梅勒姆转变为石墨状的CN材料。

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