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Efficient Sc triflate mesoporous-based catalysts for the synthesis of 4,4′-methylenedianiline from aniline and 4-aminobenzylalcohol

机译:由苯胺和4-氨基苄基醇合成4,4'-亚甲基二苯胺的高效Sc三氟甲磺酸酯介孔催化剂

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Sc triflate mesoporous-based catalysts have been prepared using a two-step strategy (i.e., Atrane method) based on the formation of the hierarchic bimodal porosity in the first step and the formation of Sc triflate complexes at the materials surface in the second step. All solids were analyzed by EPMA, surface area, and pore size values, XRD, TEM, FTIR, and ~(45)Sc NMR static spectra. The catalysts have been investigated in the synthesis of 4,4′-methylenedianiline (4,4′-MDA) from aniline and 4-aminobenzylalcohol. 4,4′-MDA was obtained with selectivities over 85.0% for a conversion of aniline of 31%, at 80 °C and after 24 h. Using microwaves, selectivities of 90% in 4,4′-MDA were reached in only 3 h. Important key parameters influencing the catalytic performances seem to be the scandium content and the nature of the formed Sc species. By replacing formaldehyde with 4-aminobenzylalcohol, the necessity of additional steps for neutralization and separation of the wastes can be eliminated.
机译:基于第一步的分层双峰孔隙的形成和第二步在材料表面的Sc三氟甲磺酸盐配合物的形成,已经使用两步策略(即Atrane方法)制备了prepared三氟甲磺酸盐中孔基催化剂。通过EPMA,表面积和孔径值,XRD,TEM,FTIR和〜(45)Sc NMR静态光谱分析所有固体。在由苯胺和4-氨基苄基醇合成4,4'-亚甲基二苯胺(4,4'-MDA)方面,已经研究了催化剂。在80℃和24小时后,以高于85.0%的选择性获得了4,4'-MDA,苯胺的转化率为31%。使用微波,仅3小时即可在4,4'-MDA中达到90%的选择性。影响催化性能的重要关键参数似乎是the含量和形成的Sc物种的性质。通过用4-氨基苄基醇代替甲醛,可以消除中和和分离废物的额外步骤。

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