Tanaka Shinji, Nakajima Yumiko, Ogawa Atsuko, Kuragano Takashi, Kon Yoshihiro, Tamura Masanori, Sato Kazuhiko, Copéret Christophe
Interdisciplinary Research Center for Catalytic Chemistry, National Institute of Advanced Industrial Science and Technology Tsukuba 305-8565 Japan
Department of Chemistry and Applied Biosciences, ETH Zürich Vladimir Prelog Weg 1-5 Zürich 8093 Switzerland
Chem Sci. 2022 Mar 15;13(16):4490-4497. doi: 10.1039/d2sc00274d. eCollection 2022 Apr 20.
Polymer-supported catalysts have been of great interest in organic syntheses, but have suffered from the difficulty in obtaining direct structural information regarding the catalyst species embedded in the polymer due to the limitations of most analytical methods. Here, we show that dynamic nuclear polarization (DNP)-enhanced solid-state NMR is ideally positioned to characterize the ubiquitous cross-linked polystyrene (PS)-supported catalysts, thus enabling molecular-level understanding and rational development. Ammonium-based catalysts, which show excellent catalytic activity and reusability for the transesterification of methyl esters with glycidol, giving glycidyl esters in high yields, were successfully characterized by DNP N NMR spectroscopy at N natural abundance. DNP N NMR shows in particular that the decomposition of quaternary alkylammonium moieties to tertiary amines was completely suppressed during the catalytic reaction. Furthermore, the dilute ring-opened product derived from glycidol and NO was directly characterized by DNP N CPMAS and H-N and H-C HETCOR NMR using a N enriched (NO) sample, supporting the view that the transesterification mechanism involves an alkoxide anion derived from an epoxide and NO . In addition, the detailed analysis of a used catalyst indicated that the adsorption of products on the cationic center is the major deactivation step in this catalysis.
聚合物负载型催化剂在有机合成中备受关注,但由于大多数分析方法的局限性,难以获得有关嵌入聚合物中的催化剂物种的直接结构信息。在此,我们表明动态核极化(DNP)增强的固态核磁共振非常适合表征普遍存在的交联聚苯乙烯(PS)负载型催化剂,从而实现分子水平的理解和合理开发。以天然丰度的氮进行DNP氮核磁共振光谱成功表征了铵基催化剂,该催化剂在甘油与甲酯的酯交换反应中表现出优异的催化活性和可重复使用性,能高产率地生成缩水甘油酯。DNP氮核磁共振尤其表明,在催化反应过程中,季铵烷基部分分解为叔胺的过程被完全抑制。此外,使用富含氮(NO)的样品,通过DNP碳高分辨魔角旋转(CPMAS)以及氢-氮和氢-碳异核相关(HETCOR)核磁共振直接表征了由甘油和NO衍生的稀开环产物,支持了酯交换机理涉及由环氧化物和NO衍生的醇盐阴离子的观点。此外,对使用过的催化剂的详细分析表明,产物在阳离子中心的吸附是该催化过程中的主要失活步骤。