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Different orientations of C=O versus P=O in P(O)NHC(O) skeleton: the first study on an aliphatic diazaphosphorinane with a gauche orientation

机译:P(O)NHC(O)骨架中C = O与P = O的不同方向:脂族二氮杂磷氧杂环丁烷与纱状取向的首次研究

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Different orientations of P(O) versus C(O) in P(O)NHC(O) skeleton have been discussed in two new phosphorus(V)-nitrogen compounds with formula XP(O)Y and XP(O)Z2 where X = NHC(O)C6H4(4-F) and Y = NHCH2C(CH3)2CH2NH (1), Z = NHC6H4(4-CH3) (2). Compound 1 is the first example of an aliphatic diazaphosphorinane with a gauche orientation which has been studied by X-ray crystallography; the P=O bond is in the equatorial position of the ring. Both compounds show n J(F,C) and m J(F,H) coupling constants (n = 1, 2, 3 and 4; m = 3 and 4) and 3 J(P,C) > 2 J(P,C). Quantum chemical calculations were performed with HF and Density Functional Theory (DFT) methods using 6−31+G(d,p) basis set. A tentative assignment of the observed vibrational bands for these molecules is discussed. Compound 1 shows a deshielded C atom of the carbonyl moiety (in 13C NMR spectrum) relative to that of 2, which is supported by IR spectroscopy in which the considerably lower C=O frequency is observed for 1. Comparing the X-ray crystallography and IR spectra of 1 and 2 shows that the acyclic compound 2, containing P=O and C=O bonds in an anti position, are involving in a stronger N–H···O=P hydrogen bond in crystal network. This leads to a weaker P=O and NC(O)NHP(O)–H bonds and stronger N···O interaction. The Namide–H is involved in an intramolecular N–H···O hydrogen bond.
机译:在两个新的式XP(O)Y和XP(O)Z 2 ,其中X = NHC(O)C 6 H 4 (4-F),Y = NHCH 2 C( CH 3 2 CH 2 NH(1),Z = NHC 6 H 4 (4-CH 3 )(2)。化合物1是已经通过X-射线晶体学研究的具有树突取向的脂族二氮杂磷杂环丁烷的第一个实例; P = O键位于环的赤道位置。两种化合物均显示 n J(F,C)和 m J(F,H)耦合常数(n = 1、2、3和4; m = 3和4 )和 3 J(P,C)> 2 J(P,C)。使用HF和密度泛函理论(DFT)方法使用6-31 + G(d,p)基集进行量子化学计算。讨论了这些分子观察到的振动带的暂定分配。化合物1显示出相对于2的羰基部分(在 13 C NMR光谱中)的脱保护C原子,这是由红外光谱支持的,其中1观察到的C = O频率低得多。比较1和2的X射线晶体学和IR光谱表明,在反位置包含P = O和C = O键的无环化合物2涉及更强的N–H···O = P氢晶体网络中的键。这导致较弱的P = O和N C(O)NHP(O) -H键以及更强的N··O相互作用。 N amide –H参与分子内NH–··O氢键。

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