Department of Chemistry, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
J Am Chem Soc. 2014 Oct 1;136(39):13586-9. doi: 10.1021/ja507922x. Epub 2014 Sep 19.
The transannular diphosphorus bisanthracene adduct P2A2 (A = anthracene or C14H10) was synthesized from the 7-phosphadibenzonorbornadiene Me2NPA through a synthetic sequence involving chlorophosphine ClPA (28-35%) and the tetracyclic salt [P2A2Cl][AlCl4] (65%) as isolated intermediates. P2A2 was found to transfer P2 efficiently to 1,3-cyclohexadiene (CHD), 1,3-butadiene (BD), and (C2H4)Pt(PPh3)2 to form P2(CHD)2 (>90%), P2(BD)2 (69%), and (P2)[Pt(PPh3)2]2 (47%), respectively, and was characterized by X-ray diffraction as the complex [CpMo(CO)3(P2A2)][BF4]. Experimental and computational thermodynamic activation parameters for the thermolysis of P2A2 in a solution containing different amounts of CHD (0, 4.75, and 182 equiv) have been obtained and suggest that P2A2 thermally transfers P2 to CHD through two competitive routes: (i) an associative pathway in which reactive intermediate [P2A] adds the first molecule of CHD before departure of the second anthracene, and (ii) a dissociative pathway in which [P2A] fragments to P2 and A prior to addition of CHD. Additionally, a molecular beam mass spectrometry study on the thermolysis of solid P2A2 reveals the direct detection of molecular fragments of only P2 and anthracene, thus establishing a link between solution-phase P2-transfer chemistry and production of gas-phase P2 by mild thermal activation of a molecular precursor.
三环二膦二蒽加成物 P2A2(A = 蒽或 C14H10)是由 7-膦二苯并降冰片二烯 Me2NPA 通过涉及氯代膦 ClPA(28-35%)和四环盐 [P2A2Cl][AlCl4](65%)的合成序列合成的,这些盐是作为分离的中间体。发现 P2A2 能够将 P2 有效地转移到 1,3-环己二烯(CHD)、1,3-丁二烯(BD)和(C2H4)Pt(PPh3)2 中,分别形成 P2(CHD)2(>90%)、P2(BD)2(69%)和(P2)[Pt(PPh3)2]2(47%),并通过 X 射线衍射表征为配合物 [CpMo(CO)3(P2A2)][BF4]。在含有不同量 CHD(0、4.75 和 182 当量)的溶液中,已经获得了 P2A2 热解的实验和计算热力学活化参数,这些参数表明 P2A2 通过两种竞争性途径将 P2 热转移到 CHD:(i)一个缔合途径,其中反应性中间体 [P2A]在第二个蒽离开之前添加第一个 CHD 分子,和(ii)一个解离途径,其中 [P2A]在添加 CHD 之前碎裂为 P2 和 A。此外,对固态 P2A2 热解的分子束质谱研究揭示了仅 P2 和蒽的分子碎片的直接检测,从而在温和热激活分子前体产生气相 P2 的情况下,在溶液相 P2 转移化学和气相 P2 的产生之间建立了联系。