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Nα-苯甲酰基-L-精氨酸乙酯盐酸盐的研究,一种用于聚酯酰胺前体的模型化合物:X 射线衍射、红外和拉曼光谱以及量子化学计算。

Study of Nα-benzoyl-L-argininate ethyl ester chloride, a model compound for poly(ester amide) precursors: x-ray diffraction, infrared and Raman spectroscopies, and quantum chemistry calculations.

机构信息

Department of Chemical Engineering, University of Coimbra, Pólo II, Pinhal de Marrocos, Coimbra 3030-790, Portugal.

出版信息

J Chem Phys. 2011 Mar 28;134(12):124505. doi: 10.1063/1.3565966.

DOI:10.1063/1.3565966
PMID:21456674
Abstract

Poly(ester amide)s (PEAs) are lacking in structural and spectroscopic information. This paper reports a structural and spectroscopic characterization of N(α)-benzoyl-L-argininate ethyl ester chloride (BAEEH(+)·Cl(-)), an important amino acid derivative and an adequate PEAs' model compound. Crystals of BAEEH(+)·Cl(-) obtained by slow evaporation in an ethanol∕water mixture were studied by different complementary techniques. X-ray analysis shows that BAEEH(+)·Cl(-) crystallizes in the chiral space group P2(1). There are two symmetry independent cations (and anions) in the unit cell. The two cations have different conformations: in one of them, the angle between the least-squares planes of the phenyl ring and the guanidyl group is 5.1(2)°, and in the other the corresponding angle is 13.3(2)°. There is an extensive network of H-bonds that assembles the ions in layers parallel to the ab plane. Experimental FT-IR and Raman spectra of BAEEH(+)·Cl(-) were recorded at room temperature in the 3750-600 cm(-1) and 3380-100 cm(-1) regions, respectively, and fully assigned. Both structural and spectroscopic analysis were supported by quantum chemistry calculations based on different models (in vacuo and solid-state DFT simulations).

摘要

聚(酯酰胺)(PEAs)在结构和光谱信息方面存在不足。本文报道了 N(α)-苯甲酰-L-精氨酸乙酯盐酸盐(BAEEH(+)·Cl(-))的结构和光谱特征,BAEEH(+)·Cl(-)是一种重要的氨基酸衍生物,也是一种合适的 PEAs 模型化合物。通过在乙醇/水混合物中缓慢蒸发获得的 BAEEH(+)·Cl(-)晶体,采用不同的互补技术进行了研究。X 射线分析表明,BAEEH(+)·Cl(-)在手性空间群 P2(1)中结晶。在单位晶胞中存在两个对称独立的阳离子(和阴离子)。这两个阳离子具有不同的构象:在其中一个阳离子中,苯环和胍基的最小二乘平面之间的夹角为 5.1(2)°,而在另一个阳离子中,相应的夹角为 13.3(2)°。存在广泛的氢键网络,将离子组装成平行于 ab 平面的层。在室温下,分别在 3750-600 cm(-1)和 3380-100 cm(-1)区域记录了 BAEEH(+)·Cl(-)的实验 FT-IR 和拉曼光谱,并进行了完全归属。结构和光谱分析均得到了不同模型(真空和固态 DFT 模拟)下的量子化学计算的支持。

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