Synthesis of Tetrahydrofuran Derivatives from 5-Hydroxymethylfurfural: Selective Ring Hydrogenation of HMF and Cascade Transformations over Pd Supported on Amino-Modified ITQ-2 Zeolite

四氢呋喃 催化作用 化学 苯并咪唑 选择性 Knoevenagel冷凝 呋喃 沸石 戒指(化学) 有机化学 溶剂 滴定法 组合化学 级联反应 多相催化 丙二腈 乙醇 高分子化学 无机化学 甲醇 纳米颗粒 溶剂效应 转移加氢
作者
Carlos Moriana,Karen S. Arias,María J. Climent,Patricia Concepcion,Sara Iborra,Avelino Corma
出处
期刊:ACS Catalysis [American Chemical Society]
标识
DOI:10.1021/acscatal.6c01466
摘要

High Resolution Image Download MS PowerPoint Slide 5-Hydroxymethylfurfural (HMF) has been efficiently hydrogenated into the highly valuable 5-hydroxymethyltetrahydrofurfural (HMTHF) through the selective hydrogenation of the furan ring using Pd supported on pure silica ITQ-2 zeolite functionalized with amino groups (Pd-NITQ-2). Highly dispersed nanosized Pd nanoparticles were generated on the amino functionalized support, which exhibits high activity and selectivity to HMTHF. Yields up to 97% (99% selectivity) of HMTHF were achieved by working at room temperature under 10 bar hydrogen using ethanol as a solvent. Comparatively, Pd supported over nonfunctionalized ITQ-2 (Pd-ITQ-2) showed 17 times lower activity than Pd-NITQ-2. The IR of CO titration studies showed that on Pd-ITQ-2, catalyst oxophilic Pd species (Pd δ+ ) are generated, which is related to their lower activity in H 2 activation and therefore their lower activity in the hydrogenation of the furan ring with respect to the Pd-NITQ-2 sample. The effect of Pd loading on NITQ-2, as well as the solvent effect, was studied. The optimized catalyst ((1%)-Pd-NITQ-2) was stable and could be reused for seven consecutive cycles, practically maintaining activity and selectivity. Finally, the optimized catalyst was applied to three different two-step cascade processes to obtain tetrahydrofuran substituted Knoevenagel adducts, N -substituted tetrahydrofurfurylamines, and tetrahydrofuran-substituted benzimidazole derivatives.
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