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首页> 外文期刊>Journal of the American Chemical Society >Evidence for a Single Electron Shift in a Lewis Acid-Base Reaction
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Evidence for a Single Electron Shift in a Lewis Acid-Base Reaction

机译:路易斯酸碱反应中单电子移位的证据

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The Lewis acid base reaction between a nucleophilic hafnocene-based germylene and tris-pentafluorophenylborane (B-(C6F5)(3)) to give the conventional B Ge bonded species in almost quantitative yield is reported. This reaction is surprisingly slow, and during its course, radical intermediates are detected by EPR and UV-vis spectroscopy. This suggests that the reaction is initiated by a single electron-transfer step. The hereby-involved germanium radical cation was independently synthesized by oxidation of the germylene by the trityl cation or strong silyl-Lewis acids. A perfluorinated tetraarylborate salt of the radical cation was fully characterized including an XRD analysis. Its structural features and the results of DFT calculations indicate that the radical cation is a hafnium(III)-centered radical that is formed by a redox-induced electron transfer (RIET) from the ligand to the hafnium atom. This valence isomerization slows down the coupling of the radicals to form the polar Lewis acid-base product. The implications of this observation are briefly discussed in light of the recent finding that radical pairs are formed in frustrated Lewis pairs.
机译:据报道,亲核ha茂基的亚二甲基苯与三五氟苯基硼烷(B-(C6F5)(3))之间的路易斯酸碱反应以几乎定量的产率得到了常规的B Ge键合物种。该反应出奇地缓慢,并且在其过程中,通过EPR和UV-可见光谱检测到自由基中间体。这表明该反应由单个电子转移步骤引发。由此涉及的锗自由基阳离子是通过三苯甲基阳离子或强甲硅烷基-刘易斯酸氧化亚甲基苯而独立合成的。包括XRD分析在内,对自由基阳离子的全氟化四芳基硼酸盐进行了全面表征。其结构特征和DFT计算结果表明,自由基阳离子是is(III)中心自由基,它是由氧化还原诱导的电子从配体到to原子的转移(RIET)形成的。该价异构化减慢了自由基的偶联以形成极性路易斯酸碱产物。根据最近的发现,即在沮丧的刘易斯对中形成自由基对,简要讨论了这一观察结果的含义。

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