Raghuraman Kannan, Katti Kavita K, Barbour Leonard J, Pillarsetty Nagavarakishore, Barnes Charles L, Katti Kattesh V
Department of Radiology, University of Missouri-Columbia, Columbia, Missouri 65211, USA.
J Am Chem Soc. 2003 Jun 11;125(23):6955-61. doi: 10.1021/ja034682c.
Phosphorus functionalized trimeric alanine compounds (l)- and (d)-P(CH(2)NHCH(CH(3))COOH)(3) 2 are prepared in 90% yields by the Mannich reaction of Tris(hydroxymethyl)phosphine 1 with (l)- or (d)- Alanine in aqueous media. The hydration properties of (l)-2 and (d)-2 in water and water-methanol mixtures are described. The crystal structure analysis of (l)-2.4H(2)O, reveals that the alanine molecules pack to form two-dimensional bilayers running parallel to (001). The layered structural motif depicts two closely packed monolayers of 2 each oriented with its phosphorus atoms projected at the center of the bilayer and adjacent monolayers are held together by hydrogen bonds between amine and carboxylate groups. The water bilayers are juxtaposed with the H-bonded alanine trimers leading to 18-membered (H(2)O)(18) water rings. Exposure of aqueous solution of (l)-2 and (d)-2 to methanol vapors resulted in closely packed (l)-2 and (d)-2 solvated with mixed water-methanol (H(2)O)(15)(CH(3)OH)(3) clusters. The O-O distances in the mixed methanol-water clusters of (l)-2.3H(2)O.CH(3)OH and (d)-2.3H(2)O.CH(3)OH (O-O(average) = 2.857 A) are nearly identical to the O-O distance observed in the supramolecular (H(2)O)(18) water structure (O-O(average) = 2.859 A) implying the retention of the hydrogen bonded structure in water despite the accommodation of hydrophobic methanol groups within the supramolecular (H(2)O)(15)(CH(3)OH)(3) framework. The O-O distances in (l)-2.3H(2)O.CH(3)OH and (d)-2.3H(2)O.CH(3)OH and in (H(2)O)(18) are very close to the O-O distance reported for liquid water (2.85 A).
磷官能化三聚丙氨酸化合物(l)-和(d)-P(CH(2)NHCH(CH(3))COOH)(3) 2通过三(羟甲基)膦1与(l)-或(d)-丙氨酸在水介质中的曼尼希反应以90%的产率制备。描述了(l)-2和(d)-2在水和水-甲醇混合物中的水合性质。(l)-2·4H(2)O的晶体结构分析表明,丙氨酸分子堆积形成与(001)平行的二维双层。层状结构 motif描绘了两个紧密堆积的2单层,每个单层的磷原子投影在双层的中心,相邻单层通过胺基和羧基之间的氢键结合在一起。水双层与氢键连接的丙氨酸三聚体并列,形成18元(H(2)O)(18)水环。将(l)-2和(d)-2的水溶液暴露于甲醇蒸气中,导致紧密堆积的(l)-2和(d)-2被混合水-甲醇(H(2)O)(15)(CH(3)OH)(3)簇溶剂化。(l)-2·3H(2)O·CH(3)OH和(d)-2·3H(2)O·CH(3)OH的混合甲醇-水簇中的O-O距离(O-O(平均)= 2.857 Å)与超分子(H(2)O)(18)水结构中观察到的O-O距离(O-O(平均)= 2.859 Å)几乎相同,这意味着尽管在超分子(H(2)O)(15)(CH(3)OH)(3)框架内存在疏水性甲醇基团,但水中氢键结构得以保留。(l)-2·3H(2)O·CH(3)OH和(d)-2·3H(2)O·CH(3)OH以及(H(2)O)(18)中的O-O距离非常接近液态水报道的O-O距离(2.85 Å)。