Hernández José G, Ardila-Fierro Karen J, Gómez Sara, Stolar Tomislav, Rubčić Mirta, Topić Edi, Hadad Cacier Z, Restrepo Albeiro
Grupo Ciencia de los Materiales, Instituto de Química, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia, Calle 70 No 52-21, Medellín, Colombia.
Scuola Normale Superiore, Classe di Scienze, Piazza dei Cavalieri 7, 56126, Pisa, Italy.
Chemistry. 2023 Sep 15;29(52):e202301290. doi: 10.1002/chem.202301290. Epub 2023 Aug 16.
The occurrence of crystalline intermediates in mechanochemical reactions might be more widespread than previously assumed. For example, a recent study involving the acetate-assisted C-H activation of N-Heterocycles with [CpRhCl ] by ball milling revealed the formation of transient cocrystals between the reagents prior to the C-H activation step. However, such crystalline intermediates were only observed through stepwise intervallic ex-situ analysis, and their exact role in the C-H activation process remained unclear. In this study, we monitored the formation of discrete, stoichiometric cocrystals between benzo[h]quinoline and [CpRhCl ] by ball milling using in-situ synchrotron X-ray powder diffraction. This continuous analysis revealed an initial cocrystal that transformed into a second crystalline form. Computational studies showed that differences in noncovalent interactions made the [Cp*RhCl ] unit in the later-appearing cocrystal more reactive towards NaOAc. This demonstrated the advantage of cocrystal formation before the acetate-assisted metalation-deprotonation step, and how the net cooperative action of weak interactions between the reagents in mechanochemical experiments can lead to stable supramolecular assemblies, which can enhance substrate activation under ball-milling conditions. This could explain the superiority of some mechanochemical reactions, such as acetate-assisted C-H activation, compared to their solution-based counterparts.
机械化学反应中结晶中间体的出现可能比之前设想的更为普遍。例如,最近一项通过球磨利用[CpRhCl]对含氮杂环进行乙酸盐辅助C-H活化的研究表明,在C-H活化步骤之前,试剂之间形成了瞬态共晶体。然而,此类结晶中间体仅通过逐步间隔的非原位分析得以观察,其在C-H活化过程中的确切作用仍不明确。在本研究中,我们通过原位同步辐射X射线粉末衍射,监测了球磨过程中苯并[h]喹啉与[CpRhCl]之间离散的化学计量共晶体的形成。这种连续分析揭示了一种初始共晶体转变为第二种晶体形式的过程。计算研究表明,非共价相互作用的差异使得后出现的共晶体中的[Cp*RhCl]单元对醋酸钠更具反应活性。这证明了在乙酸盐辅助的金属化-去质子化步骤之前形成共晶体的优势,以及机械化学实验中试剂之间弱相互作用的净协同作用如何导致稳定的超分子组装体,进而在球磨条件下增强底物活化。这可以解释一些机械化学反应,如乙酸盐辅助的C-H活化,相较于基于溶液的同类反应的优越性。