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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >SELECTIVE REACTIVITY OF THE PHOSPHORUS-CHLORINE AND CARBON-CHLORINE BONDS IN CYCLIC CHLOROCARBAPHOSPHAZENES - AN UNUSUAL ACTIVATION OF A CARBON-NITROGEN BOND IN TRIALKYLAMINES
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SELECTIVE REACTIVITY OF THE PHOSPHORUS-CHLORINE AND CARBON-CHLORINE BONDS IN CYCLIC CHLOROCARBAPHOSPHAZENES - AN UNUSUAL ACTIVATION OF A CARBON-NITROGEN BOND IN TRIALKYLAMINES

机译:循环氯碳素中磷-氯和碳-氯键的选择性反应-三氮杂苯胺中碳-氮键的异常活化

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Acyclic tertiary amines such as triethylamine and tri-n-propylamine used as HCl scavengers in nucleophilic substitution reactions of cyclic chlorocarbaphosphazenes [N3PC2Cl4 (I) and N3P2CCl5 (II)] with (CF2)(n)(CF2CH2OH)(2) [n = 0 (III) or 1 (IV)] are found to undergo a facile C-N bond cleavage with the regiospecific substitution of the dialkylamino groups on the ring carbon atoms of the carbaphosphazene. In the case of cyclic amines such as 1-methylpiperidine and 4-methylmorpholine, the cleavage was found to occur regiospecifically at the N-CH3 bond, resulting in the ring substitution of the cyclic secondary amino group on the dicarbaphosphazene ring carbon atoms, The polyfluoro diol III forms a spirocyclic ring exclusively at the phosphorus site in compounds CF2CH2O](2)PN3C2N(C2H5)(2)](2) (1), CF2CH2O](2)PN3C2N(C3H7)(2)](2) (2), [CF7CH2O](2)PN3C2[NCH2(CH2)(3)CH2](2) (3), and [CF2CH2O](2)PN3C2[N(CH2)(2)O(CH2)(2)](2) (5) along with the formation of carbon-substituted carbaphosphazenes, Cl2PN3C2[NCH2(CH2)(3)CH2](2) (4) and Cl2PN3C2[N(CH2)(2)O(CH2)(2)](2) (6) Reaction of II with III in the presence of triethylamine affords the dispiro product [CF2CH2O)(2)P2N3C[N(C2H5)(2)] (7), which crystallizes in a polar orthorhombic space group, Cmc2(1). Upon refluxing of I or II with R3N (R = C2H5, n-C3H7) in toluene, the amino-substituted carbaphosphazenes, Cl2PN3C2[N(C2H5)(2)](2) (8), Cl4P2N3C[N(C2H5)(2)] (9), and Cl4P2N3C[N(n-C3H7)(2)] (10) are obtained in good yields. Hydrolysis of 8 leads to the formation of Cl(O)PN(H)N2C2[N(C2H5)(2)](2) (11). When lithium salts of the fluoro diols III and IV are reacted with I or II in diethyl ether, the P-CI bond is selectively substituted, yielding the spirocyclic [CF2CH2O](2)PN3C2Cl2 (12), [CF2(CF2CH2O)(2)]PN3C2Cl2 (13), [CF2CH2O](2)P2N3CCl3 (14), and [(CF2CH2O)(2)](2)P2N3CCl (15). The C-Cl bonds in 12 and 14 were easily substituted by their reaction with 4-FC6H4XNa (X = O or S) to form [CF2CH2O](2)PN3C2[4-FC6H4O](2) (16) and [CF2CH2O](2)PN3C2[4-FC6H4S](2) (17). Reactions of 12 and 13 with (CH3)(3)SiN(CH3)(2) under mild conditions result in the elimination of (CH3)(3)SiCl along with the formation of [CF2CH2O](2)PN3C2[N(CH3)(2)](2) (18). The X-ray analyses of 13 and 18 represent the first examples of eight-membered spirocyclic phosphazenes. The thermal behavior of II, 9, 10, 14, and 15 has also been investigated at 120 degrees C. Single-crystal X-ray diffraction studies were carried out for 1, 2, 7, 9-14, and 16-19, and these compounds are also characterized using IR, H-1, C-13, F-19 and P-31 NMR spectroscopy, MS, and elemental analysis. [References: 53]
机译:无环叔胺,例如三乙胺和三正丙胺,在环状氯脲基磷腈[N3PC2Cl4(I)和N3P2CCl5(II)]与(CF2)(n)(CF2CH2OH)(2)的亲核取代反应中用作HCl清除剂发现0(III)或1(IV)]被碳磷腈的环碳原子上的二烷基氨基的区域专一性取代的CN键断裂容易。对于环胺,例如1-甲基哌啶和4-甲基吗啉,发现裂解是在N-CH3键上以区域专一性发生的,导致二氨基磷腈环碳原子上的环状仲氨基被环取代。二醇III仅在化合物CF2CH2O](2)PN3C2N(C2H5)(2)](2)(1),CF2CH2O](2)PN3C2N(C3H7)(2)](2)的磷位置上形成螺环2),[CF7CH2O](2)PN3C2 [NCH2(CH2)(3)CH2](2)(3)和[CF2CH2O](2)PN3C2 [N(CH2)(2)O(CH2)(2) ](2)(5)以及碳取代的碳磷腈,Cl2PN3C2 [NCH2(CH2)(3)CH2](2)(4)和Cl2PN3C2 [N(CH2)(2)O(CH2)(2)的形成)](2)(6)在三乙胺存在下,II与III反应,得到双螺化合物[CF2CH2O](2)P2N3C [N(C2H5)(2)](7),在极性正交晶体的空间基团中结晶,Cmc2(1)。当I或II与R3N(R = C2H5,n-C3H7)在甲苯中回流时,氨基取代的碳杂磷腈Cl2PN3C2 [N(C2H5)(2)](2)(8),Cl4P2N3C [N(C2H5)( 2)](9),和Cl4P2N3C [N(n-C3H7)(2)](10)的收率很高。 8的水解导致形成Cl(O)PN(H)N2C2 [N(C2H5)(2)](2)(11)。当氟二醇III和IV的锂盐与I或II在乙醚中反应时,P-Cl键被选择性取代,从而生成螺环式[CF2CH2O](2)PN3C2Cl2(12),[CF2(CF2CH2O)(2 )] PN3C2Cl2(13),[CF2CH2O](2)P2N3CCl3(14)和[(CF2CH2O)(2)](2)P2N3CCl(15)。 12和14中的C-Cl键很容易通过与4-FC6H4XNa(X = O或S)反应而取代,形成[CF2CH2O](2)PN3C2 [4-FC6H4O](2)(16)和[CF2CH2O] (2)PN3C2 [4-FC6H4S](2)(17)。 12和13与(CH3)(3)SiN(CH3)(2)在温和条件下的反应导致(CH3)(3)SiCl的消除以及[CF2CH2O](2)PN3C2 [N(CH3)的形成)(2)](2)(18)。 13和18的X射线分析代表了八元螺环磷腈的第一个实例。还研究了II,9、10、14和15在120摄氏度下的热行为。对1,2,7,9-14和16-19进行了单晶X射线衍射研究,并且还使用IR,H-1,C-13,F-19和P-31 NMR光谱,MS和元素分析对这些化合物进行了表征。 [参考:53]

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