Eu(TTA)4C5H5NC16H33(TTA:1-(2-Thenoy)-3,3,3-Trifluoracetate) is encapsulated in St- MCM-41 modified with N-(3-Trimethoxysilethyl)ethylene. The emission spectrum of the assembly shows only a 5D0-7F2 transition. As comp...Eu(TTA)4C5H5NC16H33(TTA:1-(2-Thenoy)-3,3,3-Trifluoracetate) is encapsulated in St- MCM-41 modified with N-(3-Trimethoxysilethyl)ethylene. The emission spectrum of the assembly shows only a 5D0-7F2 transition. As compared with the rare earth complex itself, the lifetime of the assembly becomes longer and its stability under the UV radiation is much better.展开更多
The LB film of the title complex was prepared by dropping a benzene solution of the title complex on the surfaceof water subphase at 25±1℃.The film was deposited in Z type on various hydrophilic pretreated subst...The LB film of the title complex was prepared by dropping a benzene solution of the title complex on the surfaceof water subphase at 25±1℃.The film was deposited in Z type on various hydrophilic pretreated substrates ofquartz,CaF;and electronic conductive glass for different purposes.The π-A curve of the film shows that thecross section per molecule is 125;,which indicates that the alkyl chain of the molecule is basically perpendiculalto the surface of the substrate.UV,IR spectra and transmission electronic microscopy of the film were also obtained.展开更多
Adsorption and self-organization of sodium alkyl sulfonates (STS and SHS) have been studied on HOPG by using the in situ scanning tunneling microscopy (STM). Both SHS and STS molecules adsorb on the HOPG surface and f...Adsorption and self-organization of sodium alkyl sulfonates (STS and SHS) have been studied on HOPG by using the in situ scanning tunneling microscopy (STM). Both SHS and STS molecules adsorb on the HOPG surface and form long-range well-ordered monolayers. The neighboring molecules in different rows form a 'head to head' configuration. In the high-resolution images of STS and SHS molecules, one end of the molecules shows bright spots which are attributed to the SO3- groups.展开更多
为了模拟药物香豆素在十二烷基硫酸钠(SDS)和十六烷基磺基甜菜碱(SB-16)复配体系中的分配规律,采用分子动力学的方法模拟了香豆素分子(C-343)在SB-16水溶液中的增溶行为,在上述溶液的基础上又继续添加了表面活性剂SDS,并研究了SDS对香...为了模拟药物香豆素在十二烷基硫酸钠(SDS)和十六烷基磺基甜菜碱(SB-16)复配体系中的分配规律,采用分子动力学的方法模拟了香豆素分子(C-343)在SB-16水溶液中的增溶行为,在上述溶液的基础上又继续添加了表面活性剂SDS,并研究了SDS对香豆素在SB-16胶束增溶行为影响。研究结果表明,在298 K,101.3 k Pa下的平衡条件下,C-343可以自发地增溶到SB-16球形胶束中。SDS分子的烷基尾链部分插入到SB-16球形胶束内部,并在SB-16表面形成一层疏水基团在内,亲水基团在外的SDS分子薄层。C-343分子在SDS分子的疏水作用和静电作用下,从SB-16胶束内部逐步迁移至SDS胶束的外层表面上。从理论证实了添加表面活性剂可以对药物分子在胶束溶液中的增溶与释放过程进行有效控制,以期为该类体系的试验研究提供理论依据。展开更多
文摘Eu(TTA)4C5H5NC16H33(TTA:1-(2-Thenoy)-3,3,3-Trifluoracetate) is encapsulated in St- MCM-41 modified with N-(3-Trimethoxysilethyl)ethylene. The emission spectrum of the assembly shows only a 5D0-7F2 transition. As compared with the rare earth complex itself, the lifetime of the assembly becomes longer and its stability under the UV radiation is much better.
文摘The LB film of the title complex was prepared by dropping a benzene solution of the title complex on the surfaceof water subphase at 25±1℃.The film was deposited in Z type on various hydrophilic pretreated substrates ofquartz,CaF;and electronic conductive glass for different purposes.The π-A curve of the film shows that thecross section per molecule is 125;,which indicates that the alkyl chain of the molecule is basically perpendiculalto the surface of the substrate.UV,IR spectra and transmission electronic microscopy of the film were also obtained.
基金This work was supported by the National Key Basic Research Development Program (Grant No. G19990225)+1 种基金the National Natural Science Foundation of China (Grant No. 20025308)the Chinese Academy of Sciences.
文摘Adsorption and self-organization of sodium alkyl sulfonates (STS and SHS) have been studied on HOPG by using the in situ scanning tunneling microscopy (STM). Both SHS and STS molecules adsorb on the HOPG surface and form long-range well-ordered monolayers. The neighboring molecules in different rows form a 'head to head' configuration. In the high-resolution images of STS and SHS molecules, one end of the molecules shows bright spots which are attributed to the SO3- groups.
文摘为了模拟药物香豆素在十二烷基硫酸钠(SDS)和十六烷基磺基甜菜碱(SB-16)复配体系中的分配规律,采用分子动力学的方法模拟了香豆素分子(C-343)在SB-16水溶液中的增溶行为,在上述溶液的基础上又继续添加了表面活性剂SDS,并研究了SDS对香豆素在SB-16胶束增溶行为影响。研究结果表明,在298 K,101.3 k Pa下的平衡条件下,C-343可以自发地增溶到SB-16球形胶束中。SDS分子的烷基尾链部分插入到SB-16球形胶束内部,并在SB-16表面形成一层疏水基团在内,亲水基团在外的SDS分子薄层。C-343分子在SDS分子的疏水作用和静电作用下,从SB-16胶束内部逐步迁移至SDS胶束的外层表面上。从理论证实了添加表面活性剂可以对药物分子在胶束溶液中的增溶与释放过程进行有效控制,以期为该类体系的试验研究提供理论依据。