Arjunan V, Marchewka M K, Raj Arushma, Yang Haifeng, Mohan S
Department of Chemistry, Arignar Anna Govt. Arts & Science College, Karaikal 609 605, India.
Institute of Low Temperature and Structure Research, Polish Academy of Sciences, Wroclaw, Poland.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Jan 25;135:540-50. doi: 10.1016/j.saa.2014.07.061. Epub 2014 Jul 28.
Melaminium glutarate monohydrate has been synthesised and FTIR and FT-Raman spectral investigations are carried out. The molecular geometry and vibrational frequencies of melaminium glutarate monohydrate in the ground state have been determined by using B3LYP method with 6-31++G(**), 6-31++G and cc-pVDZ basis sets. The stability of the system, inter molecular hydrogen bonding and the electron donor-acceptor interactions of the complex have been investigated by using natural bonding orbital analysis. It reveals that the N-H⋯O and O-H⋯O intermolecular interactions significantly influence crystal packing of this molecular complex. The glutarate anion forms hydrogen bonds to the melaminium cation as the proton donor of the type N-H⋯O with a distance (N⋯O)=2.51 Å. It is also linked by other hydrogen bonds to the water molecule of the type O-H⋯O with (O⋯O)=2.82 Å and to the amino (NH2) group of melaminium cation of the type N-H⋯O with (N⋯O)=2.82 Å as the proton acceptor. The electrostatic potential of the complex is in the range +1.892e×10(-2) to -1.892e×10(-2). The limits of total electron density of the complex is +6.679e×10(-2) to -6.679e×10(-2).
已合成一水合戊二酸三聚氰胺,并进行了傅里叶变换红外光谱(FTIR)和傅里叶变换拉曼光谱研究。采用B3LYP方法,结合6-31++G(**)、6-31++G和cc-pVDZ基组,确定了一水合戊二酸三聚氰胺基态的分子几何结构和振动频率。利用自然键轨道分析研究了该体系的稳定性、分子间氢键以及配合物的电子供体-受体相互作用。结果表明,N-H⋯O和O-H⋯O分子间相互作用对该分子配合物的晶体堆积有显著影响。戊二酸根阴离子作为质子供体,以N-H⋯O型与三聚氰胺阳离子形成氢键,键长(N⋯O)=2.51 Å。它还通过其他氢键与水分子以O-H⋯O型相连,键长(O⋯O)=2.82 Å,并作为质子受体与三聚氰胺阳离子的氨基(NH2)基团以N-H⋯O型相连,键长(N⋯O)=2.82 Å。该配合物的静电势范围为+1.892e×10(-2)至-1.892e×10(-2)。该配合物的总电子密度极限为+6.679e×10(-2)至-6.679e×10(-2)。