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涉及磺酸盐/羧酸嘧啶衍生物的盐/共晶体中的超分子相互作用。

Supramolecular interactions in salts/cocrystals involving pyrimidine derivatives of sulfonate/carboxylic acid.

机构信息

School of Chemistry, Bharathidasan University, Tiruchirappalli 620 024, Tamilnadu, India.

Department of Chemistry, Clemson University, H.L. Hunter Laboratories, Clemson, SC 29634, USA.

出版信息

Acta Crystallogr C Struct Chem. 2023 Feb 1;79(Pt 2):61-67. doi: 10.1107/S2053229623000177. Epub 2023 Jan 23.

Abstract

The crystal structures of three compounds involving aminopyrimidine derivatives are reported, namely, 5-fluorocytosinium sulfanilate-5-fluorocytosine-4-azaniumylbenzene-1-sulfonate (1/1/1), CHFNO·CHNOS·CHFNO·CHNOS, I, 5-fluorocytosine-indole-3-propionic acid (1/1), CHFNO·CHNO, II, and 2,4,6-triaminopyrimidinium 3-nitrobenzoate, CHN·CHNO, III, which have been synthesized and characterized by single-crystal X-ray diffraction. In I, there are two 5-fluorocytosine (5FC) molecules (5FC-A and 5FC-B) in the asymmetric unit, with one of the protons disordered between them. 5FC-A and 5FC-B are linked by triple hydrogen bonds, generating two fused rings [two R(8) ring motifs]. The 5FC-A molecules form a self-complementary base pair [R(8) ring motif] via a pair of N-H...O hydrogen bonds and the 5FC-B molecules form a similar complementary base pair [R(8) ring motif]. The combination of these two types of pairing generates a supramolecular ribbon. The 5FC molecules are further hydrogen bonded to the sulfanilate anions and sulfanilic acid molecules via N-H...O hydrogen bonds, generating R(22) and R(36) ring motifs. In cocrystal II, two types of base pairs (homosynthons) are observed via a pair of N-H...O/N-H...N hydrogen bonds, generating R(8) ring motifs. The first type of base pair is formed by the interaction of an N-H group and the carbonyl O atom of 5FC molecules through a couple of N-H...O hydrogen bonds. Another type of base pair is formed via the amino group and a pyrimidine ring N atom of the 5FC molecules through a pair of N-H...N hydrogen bonds. The base pairs (via N-H...N hydrogen bonds) are further bridged by the carboxyl OH group of indole-3-propionic acid and the O atom of 5FC through O-H...O hydrogen bonds on either side of the R(8) motif. This leads to a DDAA array. In salt III, one of the N atoms of the pyrimidine ring is protonated and interacts with the carboxylate group of the anion through N-H...O hydrogen bonds, leading to the primary ring motif R(8). Furthermore, the 2,4,6-triaminopyrimidinium (TAP) cations form base pairs [R(8) homosynthon] via N-H...N hydrogen bonds. A carboxylate O atom of the 3-nitrobenzoate anion bridges two of the amino groups on either side of the paired TAP cations to form another ring [R(8)]. This leads to the generation of a quadruple DADA array. The crystal structures are further stabilized by π-π stacking (I and III), C-H...π (I and II), C-F...π (I) and C-O...π (II) interactions.

摘要

报道了三种涉及氨基嘧啶衍生物的化合物的晶体结构,即 5-氟胞嘧啶磺酰基-5-氟胞嘧啶-4-铵基苯-1-磺酸酯(1/1/1)、CHFNO·CHNOS·CHFNO·CHNOS、I、5-氟胞嘧啶-吲哚-3-丙酸(1/1)、CHFNO·CHNO、II 和 2,4,6-三氨基嘧啶 3-硝基苯甲酸酯、CHN·CHNO、III,它们已经通过单晶 X 射线衍射进行了合成和表征。在 I 中,在不对称单元中有两个 5-氟胞嘧啶(5FC)分子(5FC-A 和 5FC-B),其中一个质子在它们之间无序。5FC-A 和 5FC-B 通过三重氢键连接,生成两个稠合环[两个 R(8)环图案]。5FC-A 分子通过一对 N-H...O 氢键形成自我互补碱基对[R(8)环图案],5FC-B 分子形成类似的互补碱基对[R(8)环图案]。这两种类型的配对组合生成超分子带状物。5FC 分子通过 N-H...O 氢键与磺酰苯胺阴离子和磺酰胺酸分子进一步氢键结合,生成 R(22)和 R(36)环图案。在共晶 II 中,通过一对 N-H...O/N-H...N 氢键观察到两种类型的碱基对(同二聚物),生成 R(8)环图案。第一类碱基对是通过 5FC 分子的 N-H 基团与羰基 O 原子之间的一对 N-H...O 氢键形成的。另一种碱基对是通过 5FC 分子的氨基和嘧啶环 N 原子之间的一对 N-H...N 氢键形成的。碱基对(通过 N-H...N 氢键)通过吲哚-3-丙酸的羧基 OH 基团和 5FC 分子在 R(8)图案两侧的 O 原子进一步桥接。这导致了 DDAA 排列。在盐 III 中,嘧啶环的一个 N 原子质子化并通过 N-H...O 氢键与阴离子的羧基相互作用,导致主要环图案 R(8)。此外,2,4,6-三氨基嘧啶(TAP)阳离子通过 N-H...N 氢键形成碱基对[R(8)同二聚物]。3-硝基苯甲酸阴离子的一个羧基 O 原子桥接配对 TAP 阳离子两侧的两个氨基,形成另一个环[R(8)]。这导致了四重 DADA 排列的产生。晶体结构进一步通过π-π堆积(I 和 III)、C-H...π(I 和 II)、C-F...π(I)和 C-O...π(II)相互作用得到稳定。

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