Boreskov Institute of Catalysis, Lavrentiev Avenue 5, Novosibirsk, 630090, Russia.
Inorg Chem. 2010 Mar 15;49(6):2920-30. doi: 10.1021/ic902459f.
Polyoxotungstates PW(4)O(24) (PW(4)) and PW(12)O(40) (PW(12)) have been inserted into nanocages of the metal organic framework MIL-101. The hybrid materials PW(x)/MIL-101 (x = 4 or 12) containing 5-14 wt % of polyoxotungstate have been obtained and characterized by elemental analysis, N(2) adsorption, FT-IR, Raman, and (31)P NMR MAS spectroscopic techniques. Their catalytic performance was assessed in the selective oxidation of alkenes with aqueous hydrogen peroxide under mild reaction conditions ([H(2)O(2)] = 0.1-0.2 M, 50 degrees C, MeCN). PW(x)/MIL-101 enclosing 5 wt % of polyoxotungstate demonstrated fairly good catalytic activities in the epoxidation of various alkenes (3-carene, limonene, alpha-pinene, cyclohexene, cyclooctene, 1-octene), the turnover frequencies (TOF) and alkene conversions were close to the corresponding parameters achieved with homogeneous PW(x). For the oxidation of substrates with aromatic groups (styrene, cis- and trans-stilbenes), a higher level of olefin conversion was attained using PW(12)/MIL-101. Moreover, confinement of PW(12) within MIL-101 nanocages allowed us to reach higher epoxide selectivities at higher alkene conversions. The hybrid PW(x)/MIL-101 materials were stable to leaching, behaved as true heterogeneous catalysts, were easily recovered by filtration, and reused several times with the maintenance of the catalytic performance.
多金属氧酸盐 PW(4)O(24)(PW(4))和 PW(12)O(40)(PW(12))已被插入金属有机骨架 MIL-101 的纳米笼中。已经获得了含有 5-14wt%多金属氧酸盐的杂化材料 PW(x)/MIL-101(x=4 或 12),并通过元素分析、N(2)吸附、FT-IR、拉曼和 (31)P NMR MAS 光谱技术对其进行了表征。在温和的反应条件下([H(2)O(2)]=0.1-0.2 M,50°C,MeCN),用水溶液中的过氧化氢选择性氧化烯烃评估了 PW(x)/MIL-101 的催化性能。在各种烯烃(3-蒈烯、柠檬烯、α-蒎烯、环己烯、环辛烯、1-辛烯)的环氧化反应中,含有 5wt%多金属氧酸盐的 PW(x)/MIL-101 表现出相当好的催化活性,其转化率接近使用均相 PW(x) 获得的相应参数。对于具有芳族基团的底物(苯乙烯、顺式和反式亚苄基),使用 PW(12)/MIL-101 可以达到更高的烯烃转化率。此外,将 PW(12)限制在 MIL-101 纳米笼内,允许在更高的烯烃转化率下达到更高的环氧化物选择性。杂化 PW(x)/MIL-101 材料具有良好的浸出稳定性,表现为真正的多相催化剂,通过过滤很容易回收,并可重复使用数次而保持催化性能。