Institut für Anorganische Chemie der Rheinischen Friedrich-Wilhelms-Universität Bonn, Gerhard-Domagk-Str. 1, D-53121 Bonn, Germany.
Dalton Trans. 2013 Jun 28;42(24):8897-906. doi: 10.1039/c3dt50556a. Epub 2013 May 9.
In situ formed Li/Cl phosphinidenoid complexes [Li(12-crown-4)][M(CO)5(ClPC5Me5)] 3a-c (M = Cr, Mo, W) reacted with cyclobutanone (4), cyclopentanone (5) and cyclohexanone (6) in Et2O to yield the first P-C5Me5 substituted C(3)-spirofused oxaphosphirane complexes 7a-c, 8a and 9a,a'. In the case of cyclopentanone and 1a the outcome of the reaction in THF was different: here the formation of 8a along with (anionic) phosphinoate complexes 14a and 15a was observed, the latter possess an unusual ring-opened oxaphosphirane and 2-cyclopentylidenecyclopentanone as co-ligands to the lithium cation. NMR, IR and MS data as well as single-crystal X-ray structures in the case of 7a-c, 8a, 9a and 15a are reported. DFT calculations on the parent 1-oxa-2-phosphaspiro[2.n]alkane pentacarbonylchromium(0) complexes 10 (a: n = 2; b: n = 3; c: n = 4; d: n = 5) revealed that both ring strain energies and G(r) values decrease significantly as the spiroring size increases. This is caused by an increase in the exocyclic α bond angle at the oxaphosphirane C(3) atom, hence decreasing the s-character of the corresponding orbitals involved in endocyclic bonds at C(3) and thus becoming better suited for accommodation of small ring angles.
原位形成的 Li/Cl 膦烯态配合物 [Li(12-冠-4)][M(CO)5(ClPC5Me5)] 3a-c(M = Cr、Mo、W)与环丁酮(4)、环戊酮(5)和环己酮(6)在 Et2O 中反应,生成了第一个 P-C5Me5 取代的 C(3)-螺合氧杂磷环戊烷配合物 7a-c、8a 和 9a,a'。在环戊酮和 1a 的情况下,反应在 THF 中的产物不同:这里观察到 8a 以及(阴离子)膦酸酯配合物 14a 和 15a 的形成,后者具有不寻常的开环氧杂磷环戊烷和 2-环戊基环戊二烯酮作为与锂离子配位的共配体。报道了 7a-c、8a、9a 和 15a 的 NMR、IR 和 MS 数据以及单晶 X 射线结构。对母体 1-氧杂-2-磷杂螺[2.n]烷五羰基铬(0)配合物 10(a:n = 2;b:n = 3;c:n = 4;d:n = 5)的 DFT 计算表明,随着螺旋环尺寸的增加,环应变能和 G(r) 值都显著降低。这是由于在氧杂磷环戊烷 C(3)原子处的外环α键角增大,从而减小了相应轨道的 s 特征,这些轨道参与了 C(3)处的内环键,因此更适合容纳小的环角。