首页> 外文期刊>Journal of Molecular Structure >Novel phosphazene derivatives: Synthesis, anisochronism and structural investigations of mono- and ditopic spiro-crypta phosphazenes
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Novel phosphazene derivatives: Synthesis, anisochronism and structural investigations of mono- and ditopic spiro-crypta phosphazenes

机译:新型磷腈衍生物:单和双螺螺隐磷腈的合成,各向异性和结构研究

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The reactions of hexachlorocyclotriphosphazatriene, N3P3Cl6, with N2O2-donor type coronands (diaza-crown ethers) 1–3 afford novel monotopic 4–7 and ditopic 8–10 spiro-crypta phosphazenes, respectively. It has been observed that the reactions of N3P3Cl6 with 1 equivalent amount of coronands 1–3 yield only monotopic spiro-derivatives, while three equivalent amount of coronands 2 and 3 give dominantly ditopic dispiro-crypta-phosphazene skeletons. On the other hand, the 31P NMR spectrum of 8 indicates that the ditopic spiro-ansa phosphazene 10 is present besides the ditopic dispiro derivative 8. Unexpectedly, the reaction of 6 with excess amount of pyrrolidine leads to the formation of geminal product 7. The 31P NMR spectra of 4, 5, 6 and 10 indicate that all of these compounds have anisochronism. The structures of 5, 8 and 9 have been determined by X-ray crystallography. The relative radii of macrocyclic hole sizes of 5, 8 and 9 are calculated from the crystallographic results. The relationships between the exocyclic NPN and endocyclic NPN bond angles of the analogous compounds with δP-shifts of NPN phosphorus atoms have been discussed. Thus, sums of the bond angles around the nitrogen atoms are in the range of [342.7(2)°–354.4(2)°], showing that the nitrogen atoms have pyramidal configurations. The pyramidal configuration gives rise to stereogenic properties. The salient spectroscopic features [FTIR, 1H, 13C, 31P NMR, HETCOR (for 5 and 7) and MS] of all the compounds are presented.
机译:六氯环三磷杂氮杂三烯,N3P3Cl6与N2O2-供体型冠冕(二氮杂冠状醚)1-3的反应分别提供了新颖的单主题4-7和双主题8-10螺-隐磷腈。已经观察到,N3P3Cl6与1当量的冠冕1–3的反应仅产生单位螺衍生物,而3当量的冠冕2和3产生占优势的双螺双键-隐-磷腈骨架。另一方面,31 P NMR谱图8表明,除双螺双螺衍生物8外,还存在双螺螺-ansa磷腈10。出乎意料的是,6与过量吡咯烷的反应导致形成双晶产物7。 4、5、6和10的31P NMR光谱表明,所有这些化合物均具有等时性。 5、8和9的结构已经通过X射线晶体学确定。从晶体学结果计算出大环孔尺寸为5、8和9的相对半径。讨论了具有NPN磷原子δP位移的类似化合物的环外NPN和环内NPN键角之间的关系。因此,氮原子周围的键角之和在[342.7(2)°–354.4(2)°]范围内,表明氮原子具有金字塔结构。金字塔形构型引起立体定向性质。给出了所有化合物的显着光谱特征[FTIR,1H,13C,31P NMR,HETCOR(适用于5和7)和MS]。

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