Kang Jungshik, Vonderheide Anne, Guliants Vadim V
Department of Biomedical, Chemical, and Environmental Engineering, University of Cincinnati, Cincinnati, OH 45221-0012 (USA).
Department of Chemistry, University of Cincinnati, Cincinnati, OH 45221-0037 (USA).
ChemSusChem. 2015 Sep 21;8(18):3044-7. doi: 10.1002/cssc.201500722.
2-Methylfuran and 2,5-dimethylfuran were deuterated over Pd and Pt catalysts at 90-220 °C. Furan ring saturation over a Pd/C catalyst occurred at low reaction temperatures, which led to deuterated THFs, followed by progressive D exchange in the THF ring at higher temperatures. Finally, H/D exchange occurred in the methyl groups on the THF ring. Cleavage of the C-O bond also occurred over a Pd/C catalyst at elevated temperatures, which resulted in deuterated ketones, for which all H atoms were exchanged for D. Alcohols were produced over a Pt/C catalyst at low temperatures because they are more stable than the corresponding ketones. D replaced H on all carbon atoms of the furan ring and saturated the O and C atoms of the broken C-O bond in both deuterated 2-pentanol and 2-hexanol. At low temperatures (90-105 °C), all H atoms in the deuterated alcohols were exchanged for D except for the last two hydrogen atoms on the methyl groups.
2-甲基呋喃和2,5-二甲基呋喃在90-220°C下于钯和铂催化剂上进行氘代。在钯/碳催化剂上,呋喃环饱和在较低反应温度下发生,生成氘代四氢呋喃,随后在较高温度下四氢呋喃环中进行逐步的氘交换。最后,四氢呋喃环上的甲基发生氢/氘交换。在升高的温度下,钯/碳催化剂上也会发生碳-氧键的断裂,生成氘代酮,其中所有氢原子都被氘取代。在低温下,铂/碳催化剂会生成醇,因为醇比相应的酮更稳定。在氘代2-戊醇和2-己醇中,氘取代了呋喃环所有碳原子上的氢,并使断裂的碳-氧键中的氧和碳原子饱和。在低温(90-105°C)下,氘代醇中除甲基上最后两个氢原子外,所有氢原子都被氘取代。