We report an organic/inorganic hybridized nanocomposite consisting of a bi-functional poly(N-vinyl)-3-[p-nitrophenylazo]carbazolyl serves as a polymeric charge-transporting and second-order nonliner optical matrix, ...We report an organic/inorganic hybridized nanocomposite consisting of a bi-functional poly(N-vinyl)-3-[p-nitrophenylazo]carbazolyl serves as a polymeric charge-transporting and second-order nonliner optical matrix, and CdS nanoparticles as photosensitizers to manifest photorefractive (PR) effect. The unpoled PVNPAK film exhibits a second harmonic generation (SHG) coefficient of 4.7 pm/V due to the possibility of self-alignment of the azo chromophore. Significant enhancement of photoconductivity is noticed with the increase of CdS nanoparticles concentration. The photorefractive property of the polymer nanocomposites were determined by two-beam coupling (TBC) experiment. The TBC gain and diffraction efficiency of 11.89 cm-1 and 3.2% were obtained for PVNPAK/CdS at zero electrical field.展开更多
为了研究老化作用对生物炭性质及其对重金属Cd吸附的影响,将浮萍生物炭(LM)分别进行了高温老化(high temperature aging)、冻融循环老化(freeze-thaw cyclesaging)和自然老化(spontaneous aging),通过SEM-EDS、FTIR和吸附实验探究可能...为了研究老化作用对生物炭性质及其对重金属Cd吸附的影响,将浮萍生物炭(LM)分别进行了高温老化(high temperature aging)、冻融循环老化(freeze-thaw cyclesaging)和自然老化(spontaneous aging),通过SEM-EDS、FTIR和吸附实验探究可能存在的变化机理。结果显示:冻融循环老化和高温老化会使生物炭表面O/C分别增加56.98%和90.14%,自然老化比较缓慢,对生物炭O/C影响不大。高温老化使生物炭表面羟基转化为羧基,为羧基化过程;冻融循环老化会使生物炭表面羟基增加,其他官能团基本不变;自然老化条件下,生物炭表面官能团无明显变化。老化作用增强了生物炭对Cd(Ⅱ)的吸附,冻融循环、高温、自然老化作用使LM最大平衡吸附量分别增加了32.67%,83.17%,15.97%。研究表明生物炭的老化会使生物炭本身性质发生变化,但这一变化有利于生物炭对Cd(Ⅱ)的吸附,生物炭在环境中具有较好的稳定性。展开更多
基金Funded by the National Natural Science Foundation of China (No.50802069)the Natural Science Foundation of Wuhan University of Tech-nology (471-38650378)
文摘We report an organic/inorganic hybridized nanocomposite consisting of a bi-functional poly(N-vinyl)-3-[p-nitrophenylazo]carbazolyl serves as a polymeric charge-transporting and second-order nonliner optical matrix, and CdS nanoparticles as photosensitizers to manifest photorefractive (PR) effect. The unpoled PVNPAK film exhibits a second harmonic generation (SHG) coefficient of 4.7 pm/V due to the possibility of self-alignment of the azo chromophore. Significant enhancement of photoconductivity is noticed with the increase of CdS nanoparticles concentration. The photorefractive property of the polymer nanocomposites were determined by two-beam coupling (TBC) experiment. The TBC gain and diffraction efficiency of 11.89 cm-1 and 3.2% were obtained for PVNPAK/CdS at zero electrical field.
文摘为了研究老化作用对生物炭性质及其对重金属Cd吸附的影响,将浮萍生物炭(LM)分别进行了高温老化(high temperature aging)、冻融循环老化(freeze-thaw cyclesaging)和自然老化(spontaneous aging),通过SEM-EDS、FTIR和吸附实验探究可能存在的变化机理。结果显示:冻融循环老化和高温老化会使生物炭表面O/C分别增加56.98%和90.14%,自然老化比较缓慢,对生物炭O/C影响不大。高温老化使生物炭表面羟基转化为羧基,为羧基化过程;冻融循环老化会使生物炭表面羟基增加,其他官能团基本不变;自然老化条件下,生物炭表面官能团无明显变化。老化作用增强了生物炭对Cd(Ⅱ)的吸附,冻融循环、高温、自然老化作用使LM最大平衡吸附量分别增加了32.67%,83.17%,15.97%。研究表明生物炭的老化会使生物炭本身性质发生变化,但这一变化有利于生物炭对Cd(Ⅱ)的吸附,生物炭在环境中具有较好的稳定性。