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磷氮化合物。第13部分。新型螺-ansa-螺、螺-联-螺和螺-隐磷腈衍生物的合成、晶体结构、光谱、立体异构和非等时性质

Phosphorus-nitrogen compounds. Part 13. Syntheses, crystal structures, spectroscopic, stereogenic, and anisochronic properties of novel spiro-ansa-spiro-, spiro-bino-spiro-, and spiro-crypta phosphazene derivatives.

作者信息

Bilge Selen, Demiriz Semsay, Okumus Aytug, Kiliç Zeynel, Tercan Baris, Hökelek Tuncer, Büyükgüngör Orhan

机构信息

Department of Chemistry, Ankara University, 06100 Tandogan-Ankara, Turkey.

出版信息

Inorg Chem. 2006 Oct 16;45(21):8755-67. doi: 10.1021/ic060630n.

DOI:10.1021/ic060630n
PMID:17029388
Abstract

The condensation reactions of N2Ox (x = 2, 3) donor-type aminopodand (4) and dibenzo-diaza-crown ethers (5, 6, and 9) with hexachlorocyclotriphosphazatriene, N3P3Cl6, produce two kinds of partially substituted novel phosphazene derivatives, namely, spiro-bino-spiro- (19) and spiro-crypta (21, 22, and 25) phosphazenes. The partially substituted spiro-ansa-spiro-phosphazene (11) reacted with pyrrolidine and 1,4-dioxa-8-azaspiro[4,5]decane (DASD) give the corresponding new fully substituted phosphazenes (14 and 16). Unexpectedly, the reactions of 23 and 24 with pyrrolidine result in only geminal crypta phosphazenes (26 and 27). The solid-state structures of 16 and 22 have been determined by X-ray diffraction techniques. The relative inner hole-size of the macrocycle in the radii of 22 is 1.27 A. The relationship between the exocyclic NPN (alpha') and endocyclic (alpha) bond angles for spiro-crypta phosphazenes and exocyclic OPN (alpha') bond angles for spiro-ansa-spiro- and spiro-bino-spiro-phosphazenes with 31P NMR chemical shifts of NPN and OPN phosphorus atoms, respectively, have been investigated. The structures of 10, 14, 16, 19, 21, 22, and 25-27 have also been examined by FTIR, 1H, 13C, and 31P NMR, HETCOR, MS, and elemental analyses. The 31P NMR spectra of 10, 21, 22, and 25 indicate that the compounds have anisochrony. In compounds 16 and 22, the spirocyclic nitrogen atoms have pyramidal geometries resulting in stereogenic properties.

摘要

含氮供体型氨基足体(4)和二苯并二氮杂冠醚(5、6和9)与六氯环三磷腈(N₃P₃Cl₆)的缩合反应生成了两种部分取代的新型磷腈衍生物,即螺双螺(19)和螺穴状(21、22和25)磷腈。部分取代的螺-ansa-螺-磷腈(11)与吡咯烷和1,4-二氧杂-8-氮杂螺[4,5]癸烷(DASD)反应生成相应的新型全取代磷腈(14和16)。出乎意料的是,23和24与吡咯烷的反应仅生成偕位穴状磷腈(26和27)。16和22的固态结构已通过X射线衍射技术确定。22的大环相对内孔尺寸半径为1.27 Å。分别研究了螺穴状磷腈的环外NPN(α')和环内(α)键角以及螺-ansa-螺-和螺双螺-磷腈的环外OPN(α')键角与NPN和OPN磷原子的³¹P NMR化学位移之间的关系。10、14、16、19、21、22和25 - 27的结构也通过FTIR、¹H、¹³C和³¹P NMR、HETCOR、MS以及元素分析进行了研究。10、21、22和25的³¹P NMR光谱表明这些化合物具有不同步性。在化合物16和

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