采用正硅酸乙酯(TEOS)作硅源,十六烷基三甲基溴化铵(CTAB)为模板剂,在高压(约7 MPa)和373 K下合成了MCM-48介孔分子筛.用XRD、氮气吸附及^(29)Si MAS NMR对样品进行了表征.与常压合成的相比,高压下合成的MCM-48具有更高的热稳...采用正硅酸乙酯(TEOS)作硅源,十六烷基三甲基溴化铵(CTAB)为模板剂,在高压(约7 MPa)和373 K下合成了MCM-48介孔分子筛.用XRD、氮气吸附及^(29)Si MAS NMR对样品进行了表征.与常压合成的相比,高压下合成的MCM-48具有更高的热稳定性和水热稳定性.^(29)Si MAS NMR结果表明,高压有利于分子筛孔壁的聚合,导致分子筛结构更加完善,从而使其具有更高的稳定性.展开更多
A series of phenyl functionalized MSU mesoporous molecular sieves were synthesized under neutral condition in the presence of biodegradable non ionic polyethylene oxide(AEO 9). By subsequent sulphonation of the phenyl...A series of phenyl functionalized MSU mesoporous molecular sieves were synthesized under neutral condition in the presence of biodegradable non ionic polyethylene oxide(AEO 9). By subsequent sulphonation of the phenyl rings attached to the silica framework, the phenylsulphonic acid functionalized MSU derivatives could be obtained. Their structure and property of the organo modified mesoporous molecular sieves were studied by means of XRD, FT IR, TEM, HRTEM, 13 C MAS NMR, 29 Si MAS NMR, N 2 adsorption/desorption and probe reaction techniques. The results showed that the so produced organo modified mesoporous molecular sieves featured bimodal pore size distribution and the pore channel was similar to those in the \{MSU(worm like)\}. The organo modified mesoporous molecular sieves containing phenylsulphonic acid active sites, used as solid acid catalyst, showed a much higher catalytic activity for the formation of 2,2 pentamethylene 1,3 dioxolane(cyclic ketal) from ethylene glycol and cyclohexanone.[WT5HZ]展开更多
文摘采用正硅酸乙酯(TEOS)作硅源,十六烷基三甲基溴化铵(CTAB)为模板剂,在高压(约7 MPa)和373 K下合成了MCM-48介孔分子筛.用XRD、氮气吸附及^(29)Si MAS NMR对样品进行了表征.与常压合成的相比,高压下合成的MCM-48具有更高的热稳定性和水热稳定性.^(29)Si MAS NMR结果表明,高压有利于分子筛孔壁的聚合,导致分子筛结构更加完善,从而使其具有更高的稳定性.
文摘A series of phenyl functionalized MSU mesoporous molecular sieves were synthesized under neutral condition in the presence of biodegradable non ionic polyethylene oxide(AEO 9). By subsequent sulphonation of the phenyl rings attached to the silica framework, the phenylsulphonic acid functionalized MSU derivatives could be obtained. Their structure and property of the organo modified mesoporous molecular sieves were studied by means of XRD, FT IR, TEM, HRTEM, 13 C MAS NMR, 29 Si MAS NMR, N 2 adsorption/desorption and probe reaction techniques. The results showed that the so produced organo modified mesoporous molecular sieves featured bimodal pore size distribution and the pore channel was similar to those in the \{MSU(worm like)\}. The organo modified mesoporous molecular sieves containing phenylsulphonic acid active sites, used as solid acid catalyst, showed a much higher catalytic activity for the formation of 2,2 pentamethylene 1,3 dioxolane(cyclic ketal) from ethylene glycol and cyclohexanone.[WT5HZ]