Näther Christian, Döring Cindy, Jess Inke, Jones Peter G, Taouss Christina
Institut für Anorganische Chemie, Universität Kiel, Max-Eyth-Strasse 2, D-22418 Kiel, Germany.
Acta Crystallogr B. 2013 Feb;69(Pt 1):70-6. doi: 10.1107/S0108768112049324. Epub 2012 Dec 20.
The title compound exists as polymorph (I), Fdd2 with Z = 8 [Pérez-Folch et al. (1997). J. Chem. Cryst. 27, 367-369; Marsh (2004). Acta Cryst. B60, 252-253], and as polymorph (II), P2(1)2(1)2 with Z = 2 [Martins et al. (2009). J. Phys. Chem. A, 113, 5998-6003]. We have redetermined both structures at somewhat lower temperatures [(I) at 180 K rather than room temperature; (II) at 100 K rather than 150 K]. For polymorph (I) the space group Fdd2 is confirmed rather than the original choice of Cc. The molecular structures of both polymorphs are essentially identical, with exact crystallographic twofold symmetry, approximate C(2v) symmetry, and a trans orientation of the H-N-C=O moiety. In both polymorphs the molecules associate into chains of rings with graph set C(4)[R(2)(1)(6)] via bifurcated hydrogen-bond systems C(N-H)(2)···O=C. In the polar structure (I) the chains are necessarily all parallel, whereas in (II) equal numbers of parallel and antiparallel chains are present. Further physical investigations [differential scanning calorimetry (DSC), powder investigations, solvent-induced phase conversions] were undertaken: these showed: (i) that the commercially available compound consists predominantly of polymorph (II), which on heating transforms into polymorph (I) by an endothermic reaction, so that both polymorphs are related by enantiotropism; (ii) that polymorph (I) represents the more stable modification at room temperature, where polymorph (II) is metastable, with the thermodynamic transition temperature lying somewhere between 253 K and room temperature. An apparent third polymorph, consisting of fibrous needles, was shown by powder diffraction to consist of a mixture of polymorphs (I) and (II).
标题化合物以多晶型物(I)存在,空间群为Fdd2,Z = 8 [佩雷斯 - 福尔奇等人(1997年)。《化学晶体学杂志》27卷,367 - 369页;马什(2004年)。《晶体学报》B60卷,252 - 253页],以及多晶型物(II),空间群为P2(1)2(1)2,Z = 2 [马丁斯等人(2009年)。《物理化学杂志A》113卷,5998 - 6003页]。我们在稍低温度下重新测定了这两种结构[(I)在180 K而非室温下;(II)在100 K而非150 K下]。对于多晶型物(I),确认其空间群为Fdd2,而非最初选择的Cc。两种多晶型物的分子结构基本相同,具有精确的晶体学二重对称性、近似的C(2v)对称性,以及H - N - C = O部分的反式取向。在两种多晶型物中,分子通过分叉氢键系统C(N - H)(2)···O = C缔合形成具有图式C(4)[R(2)(1)(6)]的环链。在极性结构(I)中,链必然全部平行,而在(II)中存在数量相等的平行链和反平行链。进行了进一步的物理研究[差示扫描量热法(DSC)、粉末研究、溶剂诱导的相变]:这些研究表明:(i)市售化合物主要由多晶型物(II)组成,加热时通过吸热反应转变为多晶型物(I),因此两种多晶型物呈互变性;(ii)多晶型物(I)在室温下代表更稳定的变体形式,多晶型物(II)是亚稳的,热力学转变温度介于253 K和室温之间。粉末衍射显示,一种明显的第三种多晶型物,由纤维状针状物组成,是多晶型物(I)和(II)的混合物。