The hexagonal silica mesoporous material SBA-15 with ordered 2-dimensional channel structure was used as a suppport to the immobilization of emzyme. α-Chymotrypsin, an enzyme, was assembled in the channel of SBA-15 b...The hexagonal silica mesoporous material SBA-15 with ordered 2-dimensional channel structure was used as a suppport to the immobilization of emzyme. α-Chymotrypsin, an enzyme, was assembled in the channel of SBA-15 by immersion method. The absorbed amount of enzyme in SBA-15 and the activity of the immobilized enzyme were studied. It was found that there was more absorbed enzyme in SBA-15 than in other carrier and the activity of the immobilized α-chymotrypsin was increased compared with the free enzyme. It suggests that silica mesoporous material SBA-15 is a good support for immobilization of enzyme.展开更多
Three kinds of support for enzyme immobilization were prepared by modifying SBA-15 mesoporous silica with thiol,methyl and hexyl groups respectively.The prepared supports were characterized with FT-IR and BET method a...Three kinds of support for enzyme immobilization were prepared by modifying SBA-15 mesoporous silica with thiol,methyl and hexyl groups respectively.The prepared supports were characterized with FT-IR and BET method and exhibited high specific surface area and uniform pore size.Furthermore,unmodified SBA-15 and the modified SBA-15 materials were used for lipase immobilization.The results were compared in terms of enzyme adsorption capacity,activity,activity retention and stability.The modified SBA-15 materials with thiols(SBA-15-PrSH)showed good performance for lipase immobilization.Compared with unmodified SBA-15,the adsorption capacity of SBA-15-PrSH to lipase was improved by more than 80%,and the activity retention increased by more than 10%.展开更多
Highly ordered hexagonal mesoporous silica SBA-15 with tunable morphology such as donut-like has been synthesized through the cosolvent approach. Donut-like SBA-15 prepared by using DMF cosolvent shows highly ordered ...Highly ordered hexagonal mesoporous silica SBA-15 with tunable morphology such as donut-like has been synthesized through the cosolvent approach. Donut-like SBA-15 prepared by using DMF cosolvent shows highly ordered circle channels and large mesopore size of 9.9 nm and pore volume of 1.45 cm3/g. Cosurfactant approach has also been used to control the morphology of SBA-15, resulting that highly ordered hard spheres (uniformed diameter—800 nm) mesoporous silica are formed. The morphology of mesoporous SBA-15 is much depended on the surface curvature energy of interface of inorganic silica and organic block copolymer species.展开更多
文摘The hexagonal silica mesoporous material SBA-15 with ordered 2-dimensional channel structure was used as a suppport to the immobilization of emzyme. α-Chymotrypsin, an enzyme, was assembled in the channel of SBA-15 by immersion method. The absorbed amount of enzyme in SBA-15 and the activity of the immobilized enzyme were studied. It was found that there was more absorbed enzyme in SBA-15 than in other carrier and the activity of the immobilized α-chymotrypsin was increased compared with the free enzyme. It suggests that silica mesoporous material SBA-15 is a good support for immobilization of enzyme.
文摘Three kinds of support for enzyme immobilization were prepared by modifying SBA-15 mesoporous silica with thiol,methyl and hexyl groups respectively.The prepared supports were characterized with FT-IR and BET method and exhibited high specific surface area and uniform pore size.Furthermore,unmodified SBA-15 and the modified SBA-15 materials were used for lipase immobilization.The results were compared in terms of enzyme adsorption capacity,activity,activity retention and stability.The modified SBA-15 materials with thiols(SBA-15-PrSH)showed good performance for lipase immobilization.Compared with unmodified SBA-15,the adsorption capacity of SBA-15-PrSH to lipase was improved by more than 80%,and the activity retention increased by more than 10%.
文摘Highly ordered hexagonal mesoporous silica SBA-15 with tunable morphology such as donut-like has been synthesized through the cosolvent approach. Donut-like SBA-15 prepared by using DMF cosolvent shows highly ordered circle channels and large mesopore size of 9.9 nm and pore volume of 1.45 cm3/g. Cosurfactant approach has also been used to control the morphology of SBA-15, resulting that highly ordered hard spheres (uniformed diameter—800 nm) mesoporous silica are formed. The morphology of mesoporous SBA-15 is much depended on the surface curvature energy of interface of inorganic silica and organic block copolymer species.