A rigid silica colloidal crystal template was formed by self assembly of the monodispersed silica dispersion prepared according to Stber method. Within the interstitial void of the template, β diketonate titanium com...A rigid silica colloidal crystal template was formed by self assembly of the monodispersed silica dispersion prepared according to Stber method. Within the interstitial void of the template, β diketonate titanium complexes[(dbm) 3Ti(OPh)/MAO] catalyzed polymerization of styrene was carried out to form syndiotactic polystyrene(sPS)/silica composites. The titled ordered macroporous syndiotactic polystyrene was achieved by chemical decomposition of the silica template with concentrated aqueous hydrofluoric acid, which was confirmed by SEM results. FTIR spectra indicated that all silica was removed from the composites in this study. DSC revealed that the as prepared macroporous sPS was significantly different from the bulk one, and the unique properties were inherent rather than from the enforcement effect by the silica template. Further investigation concerning the inherent microstrucutures about the molecular weight and its distribution, tacticity of the styrene etc . and their dependence on the confinement is in progress.展开更多
以SBA-15为硬模板剂,采用溶剂挥发诱导煤基沥青烯与聚丙烯腈(PAN)自组装,制备了氮掺杂有序介孔炭(NOMC)。通过CO_(2)活化,进一步提升NOMC的比表面积及电容性能。结果表明,SBA-15、沥青烯、PAN的比例为1∶1.2∶4.8时,800℃炭化所得炭材...以SBA-15为硬模板剂,采用溶剂挥发诱导煤基沥青烯与聚丙烯腈(PAN)自组装,制备了氮掺杂有序介孔炭(NOMC)。通过CO_(2)活化,进一步提升NOMC的比表面积及电容性能。结果表明,SBA-15、沥青烯、PAN的比例为1∶1.2∶4.8时,800℃炭化所得炭材料成炭率与有序性均较高。900℃活化后其比表面积、孔容及孔径依次为602.1 m 2/g,0.426 cm 3/g,3.808 nm,且比电容达到127.2 F/g,相比未活化,提升了41.8%。展开更多
文摘A rigid silica colloidal crystal template was formed by self assembly of the monodispersed silica dispersion prepared according to Stber method. Within the interstitial void of the template, β diketonate titanium complexes[(dbm) 3Ti(OPh)/MAO] catalyzed polymerization of styrene was carried out to form syndiotactic polystyrene(sPS)/silica composites. The titled ordered macroporous syndiotactic polystyrene was achieved by chemical decomposition of the silica template with concentrated aqueous hydrofluoric acid, which was confirmed by SEM results. FTIR spectra indicated that all silica was removed from the composites in this study. DSC revealed that the as prepared macroporous sPS was significantly different from the bulk one, and the unique properties were inherent rather than from the enforcement effect by the silica template. Further investigation concerning the inherent microstrucutures about the molecular weight and its distribution, tacticity of the styrene etc . and their dependence on the confinement is in progress.
基金国家自然科学基金资助项目(22072172)国家杰出青年科学基金资助项目(21825204)+2 种基金中国科学院青年创新促进会资助项目(Y2021056)榆林学院与大连清洁能源国家实验室合作基金资助项目(YLU-DNL Fund 2022007)山西省科技创新团队专项资金资助项目(202304051001007)。
文摘以SBA-15为硬模板剂,采用溶剂挥发诱导煤基沥青烯与聚丙烯腈(PAN)自组装,制备了氮掺杂有序介孔炭(NOMC)。通过CO_(2)活化,进一步提升NOMC的比表面积及电容性能。结果表明,SBA-15、沥青烯、PAN的比例为1∶1.2∶4.8时,800℃炭化所得炭材料成炭率与有序性均较高。900℃活化后其比表面积、孔容及孔径依次为602.1 m 2/g,0.426 cm 3/g,3.808 nm,且比电容达到127.2 F/g,相比未活化,提升了41.8%。