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Sr_2SiO_4∶Ce^(3+),Li^+蓝紫色荧光粉发光性能的研究(英文) 被引量:1
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作者 游静 夏丽娜 +1 位作者 李湘祁 谢秀珍 《发光学报》 EI CAS CSCD 北大核心 2016年第2期131-137,共7页
以MCM-41为硅源,采用共沉淀法制备Sr_(2-x)SiO_4∶xCe3+(x=0.01~0.09,步长为0.01)和Sr_(1.95-y)SiO_4∶0.05Ce^(3+),y Li^+(y=0.01~0.07,步长为0.02)蓝紫色荧光粉。Sr_2SiO_4∶xCe^(3+)的发射光谱是一个不对称的宽带,最大峰值在410 nm... 以MCM-41为硅源,采用共沉淀法制备Sr_(2-x)SiO_4∶xCe3+(x=0.01~0.09,步长为0.01)和Sr_(1.95-y)SiO_4∶0.05Ce^(3+),y Li^+(y=0.01~0.07,步长为0.02)蓝紫色荧光粉。Sr_2SiO_4∶xCe^(3+)的发射光谱是一个不对称的宽带,最大峰值在410 nm左右。Ce^(3+)的最佳掺杂量为5%。Ce^(3+)离子倾向于占据九配位的Sr(Ⅱ)格位。共掺电荷补偿剂Li^+可以有效地提高Sr_(1.95)SiO_4∶0.05Ce^(3+)的发光强度,其中Li^+离子对1 100℃煅烧样品的发光强度的提高程度比1 000℃的更高,Li^+的最佳掺杂量为y=0.05。 展开更多
关键词 荧光粉 Sr2SiO4∶Ce3+ Li+ 发光
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Photo-enhanced thermal catalytic CO_(2) methanation activity and stability over oxygen-deficient Ru/TiO_(2) with exposed TiO_(2){001}facets:Adjusting photogenerated electron behaviors by metal-support interactions 被引量:3
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作者 Ke Wang Shihui He +3 位作者 Yunzhi Lin Xun Chen Wenxin Dai Xianzhi Fu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第2期391-402,共12页
In this study,two Ru/TiO_(2)samples with different TiO_(2)facets were prepared to investigate their photo-thermal catalytic CO_(2)+H_(2)reaction behavior.Without UV irradiation,the Ru/TiO_(2)with 67%{001}facet(3 RT)di... In this study,two Ru/TiO_(2)samples with different TiO_(2)facets were prepared to investigate their photo-thermal catalytic CO_(2)+H_(2)reaction behavior.Without UV irradiation,the Ru/TiO_(2)with 67%{001}facet(3 RT)displayed improved thermal catalytic activity for CO_(2)methanation than that of Ru/TiO_(2)with 30%{001}facet(0 RT).After H_(2)pretreatment,both samples exhibited enhanced thermal catalytic activities,but the H_(2)-treated 3 RT(3 RT-H)exhibited superior activity to that of the H_(2)-treated 0 RT(0 RT-H).Under UV irradiation,3 RT-H exhibited apparent photo-promoted thermal catalytic activity and stability,but the enhanced catalytic activity was lower than that of 0 RT-H.Based on the characterization results,it is proposed that both the surface oxygen vacancies(Vos)(activating CO_(2))and the metallic Ru nanoparticles(activating H_(2))were mainly responsible for CO_(2)methanation.For 0 RT,H_(2)pretreatment and subsequent UV irradiation did not promote the formation of Vos,resulting in low catalytic activity.For 3 RT,on the one hand,H_(2)pretreatment promoted the formation of Vos,which were regenerated under UV irradiation;on the other hand,the photogenerated electrons from TiO_(2)transferred to Ru to maintain the metallic Ru nanoparticles.Both behaviors promoted the activation of CO_(2)and H_(2)and enhanced CO_(2)methanation.Moreover,the photogenerated holes favored the dissociated H at Ru migrating to TiO_(2),also promoting CO_(2)methanation.These behaviors occurring on 3 RT-H may be attributed to the suitable metal-support interaction between the Ru nanoparticles and TiO_(2){001},resulting in the easy activation of lattice oxygen in TiO_(2)to Vos.With reference to the analysis of intermediates,a photo-thermal reaction mechanism is proposed for the Ru/TiO_(2){001}facet sample. 展开更多
关键词 Photo-thermal CO_(2)reduction Oxygen vacancy Ru/TiO_(2) Metal-support interaction
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