首页> 外文期刊>Organometallics >Thermal C-H Bond Activation of Benzene with Cationic [Pt(CX3(L)](+) Complexes in the Gas Phase: A Combined Experimental/Theoretical Study (X = H, D; L=1,10-Phenanthroline, 2,2 '-Bipyrimidine, 2,2 '-Bipyridine, and (o,o '-Cl2C6H3)N=C(CH3)-C(CH3)=N(o,o '-Cl2C6H3))
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Thermal C-H Bond Activation of Benzene with Cationic [Pt(CX3(L)](+) Complexes in the Gas Phase: A Combined Experimental/Theoretical Study (X = H, D; L=1,10-Phenanthroline, 2,2 '-Bipyrimidine, 2,2 '-Bipyridine, and (o,o '-Cl2C6H3)N=C(CH3)-C(CH3)=N(o,o '-Cl2C6H3))

机译:阳离子[Pt(Cx3(L)](+)复合物中苯的热CH键活化在气相中:组合实验/理论研究(x = H,D; L = 1,10-菲咯啉,2,2' - 吡啶胺,2,2'-Biphyridine,和(O,O'-Cl2C6H3)N = C(CH3)-C(CH3)= N(O,O'-Cl2C6H3)))

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摘要

The collision-induced fragmentation behavior of cationic [Pt(CX3)(L)](+) complexes (X = H, D; L = 1,10-phenanthroline (phen), 2,2'-bipyrimidine (bipyrm), 2,2'-bipyridine (bipy) and (o,o'-Cl2C6H3)N=C-(CH3)-C(CH3)=N(o,o'-Cl2C6H3) ((Me)DAB(DCP))) and their thermal reactions with C6H6, [1,2,3]-C6H3D3, [1,3,5]-C6H3D3, and C6D6 were probed in gas-phase experiments. Collision-induced dissociations of the phen and bipyrm complexes result in preferential eliminations of neutral PtCH2 to afford the protonated heterocyclic ligands LH+ as ionic products; the bipy complex favors loss of methane due to a "rollover" cyclometalation process. Fragmentation of the (Me)DAB(DCP)complex leads to the elimination of up to four HCl molecules from the ligand; neither PtCH2 nor methane is liberated. In their bimolecular reactions with benzene, all platinum complexes lose methane from the initially formed adducts. The complexes with L = phen, bipyrm, and bipy react much more efficiently with benzene than the (Me)DAB(DCP) complex, and only in the latter case is significant adduct formation observed. For the formation of methane in the ion/molecule reactions of the complexes with deuterated benzenes, a microkinetic model was applied for fitting of the observed isotope patterns, which reveals the following: (i) the C-H bond activation of benzene prior to methane elimination is reversible, (ii) while for the (Me)DAB(DCP) complex the rate of H/D exchange is lower than that for the liberation of methane, an opposite behavior holds true for the other complexes; (iii) the overall kinetic isotope effects associated with the H/D exchange amount to ca. 1.5 for the phen bipyrin, and bipy complexes. DFTcalculations demonstrate that the popular B3LYP method rails to explain the observed H/D exchange but that the functionals mPW 1k, M05-2X. and mPW1PW91 can account for the experimental Findings. Nevertheless, serious discrepancies seem to exist that prevent an unambiguous distinction of mechanistic scenarios, i.e.. oxidative addition/reductive elimination versus sigma-CAM process.
机译:阳离子[Pt(Cx3)(L)](+)复合物的碰撞诱导的碎片行为(X = H,D; L = 1,10-菲林(Phen),2,2'-双嘧啶(BiPyrm),2 ,2'-硼吡啶(Bipy)和(O,O'-Cl2C6H3)N = C-(CH 3)-C(CH3)= N(O,O'-CL2C6H3)((ME)DAB(DCP)))和在气相实验中探测其与C6H6,[1,2,3] -C6H3D3,[1,3,5] -C6H3D3和C6D6的热反应。碰撞诱导的pen和BiPyrm复合物的分解导致中性PTCH2的优先消除,得到质子化杂环配体LH +作为离子产物;由于“翻转”的环芯工艺,Bipy Complex的储存损失。 (ME)DAB(DCP)复合物的碎片导致从配体中取消最多四种HCl分子; PTCH2也不释放甲烷。在其与苯的双分子反应中,所有铂复合物都会从最初形成的加合物中丧失甲烷。具有L = Phen,BiPyrm和Bipy的复合物与苯的比(ME)DAB(DCP)复合物更有效地反应,并且只在后一种情况下观察到的显着加合物形成。为了形成甲烷在络合物的络合物与氘苯的反应中,施用了微酮模型,用于拟合观察到的同位素图案,其揭示以下内容:(i)甲烷消除前苯的CH键活化是可逆,(ii)在(ME)DAB(DCP)复杂的同时,H / D汇率的速率低于甲烷的解放的速率,相反的行为对于其他复合物具有正确的行为; (iii)与H / D汇率与CA相关联的整体动力学同位素效应。 1.5对于Phen Bibyrin和Bipy Compleases。 Dftcalculations表明,流行的B3Lyp方法轨道来解释观察到的H / D兑换,但功能MPW 1K,M05-2X。而MPW1PW91可以考虑实验结果。然而,严重的差异似乎存在,防止机械情景的明确区别,即氧化添加/还原消除与Sigma-CAM过程。

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