Department of Chemistry, University of Munich (LMU), Butenandtstrasse 5-13 (D), 81377 München, Germany.
Chemistry. 2013 Feb 4;19(6):2041-9. doi: 10.1002/chem.201203340. Epub 2012 Dec 19.
Until recently, melam, C(3)N(3)(NH(2))(2)NH, has been regarded as a short-lived intermediate in the condensation process of melamine that is only detectable under special reaction conditions owing to its high reactivity. A new synthetic approach has allowed a closer look at the formation and condensation behavior of melam by using elevated ammonia pressure in autoclaves. Whereas the thermal treatment of dicyandiamide at 450 °C and 0.2 MPa ammonia yielded melam in large amounts, prolonged treatment under these conditions (9 days) led to the formation of a melam-melem adduct, thus enabling the first insight into the condensation process of melam into melem. The hydrothermal treatment of melam at 300 °C (24 h) yields melam hydrate, C(3)N(3)(NH(2))(2)NH⋅2 H(2)O (space group P2(1)/c; a=676.84(2), b=1220.28(4), c=1394.24(4) pm; β=98.372(2)°; V=1139.28(6)×10(6) pm(3); Z=4), which crystallizes as a layered structure that is composed of almost-planar melam molecules, thereby forming ellipsoidal rosette-like motifs. The resulting voids are filled with four water molecules, thus forming a dense network of hydrogen bonds.
直到最近,三聚氰胺亚胺,C(3)N(3)(NH(2))(2)NH,一直被认为是三聚氰胺缩合过程中的一种短寿命中间体,由于其高反应性,只有在特殊的反应条件下才能检测到。一种新的合成方法允许在高压釜中使用升高的氨压来更仔细地研究三聚氰胺的形成和缩合行为。虽然在 450°C 和 0.2 MPa 氨的条件下热处理双氰胺会大量生成三聚氰胺,但在这些条件下延长处理时间(9 天)会导致三聚氰胺-三聚氰胺亚胺加合物的形成,从而首次深入了解三聚氰胺缩合为三聚氰胺亚胺的过程。在 300°C(24 小时)的水热条件下处理三聚氰胺会得到三聚氰胺水合物,C(3)N(3)(NH(2))(2)NH⋅2H(2)O(空间群 P2(1)/c;a=676.84(2),b=1220.28(4),c=1394.24(4) pm;β=98.372(2)°;V=1139.28(6)×10(6) pm(3);Z=4),它结晶为层状结构,由几乎平面的三聚氰胺分子组成,从而形成椭圆形的玫瑰花状图案。由此产生的空隙被四个水分子填充,从而形成了密集的氢键网络。