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Effects of Doping Trace Sm^(3+) and Gd^(3+) on Luminescent Character of Y_2O_2S∶Eu^(3+)
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作者 Yuan Jianhui Yuan Honghui +2 位作者 Zhang Zhenhua Cheng Yumin Wang Xiaojun 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第4期410-410,共1页
After trace Sm^3+ ions and Gd^3+ ions doping, the emission intensity of red phosphors Y2O2S: Eu^3 + was enhanced and the voltage character (relation between emission intensity and excitation voltage) was improve... After trace Sm^3+ ions and Gd^3+ ions doping, the emission intensity of red phosphors Y2O2S: Eu^3 + was enhanced and the voltage character (relation between emission intensity and excitation voltage) was improved while the other properties of physics and chemistry were not changed. The origins of enhancement and improvement are discussed. Probably the distortion and the defect of crystals are decreased by the substitution of Gd^3+ for Y^3+ instead of Eu^3+ for Y^3+ , and thus the Eu^3+ crystal field is improved, and radiationless process and energy loss resulted from crystal defect are weakened, which leads to increased luminescence intensity and voltage character improvement. The overlapping fluorescent spectra of Y2O2S: Sm^3+ emission and Y2O2S:Eu^3+ excitation as well as Eu^3 + excitation spectra transitions spectra lead to energy transfer from Sm^3 + sensitization of Sm^3+ ions fectively. containing Sm^3+ excitation the possibility of resonance ions to Eu^3+ ions, and the to Eu^3+ ions is achieved effectively. 展开更多
关键词 luminescence Sm^3 Gd^3 eodoped Y2O2S Eu^3+ enhancement of emission intensity improvement of voltage resistance character rare earths
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Functional Analysis of Cotton RDL1 Protein
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作者 XU Bing,GOU Jin-ying,SHANGGUAN Xiao-xia,WANG Ling-jian,CHEN XIAO-YA(National Key Laboratory of Plant Molecular Genetics,Institution of Plant Physiology and Ecology,Shanghai Institution for Biological Sciences,Chinese Academy of Sciences,300 Fenglin Road,Shanghai 200032,China) 《棉花学报》 CSCD 北大核心 2008年第S1期72-,共1页
Cotton fiber development is a highly programmed process,involving a large number of genes.Through cDNA array and RT-PCR,we isolated a Gossypium hirsutum RD22-1 like gene(GhRDL1),
关键词 COTTON fiber character improvement GhRDL1 cell wal
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Combination of OCT and Raman spectroscopy for improved characterization of atherosclerotic plaque depositions 被引量:1
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作者 Kokila Egodage Christian Matthaus +4 位作者 Sebastian Dochow Iwan W.Schie Carmen Hardtner Ingo Hilgendorf Jürgen Popp 《Chinese Optics Letters》 SCIE EI CAS CSCD 2017年第9期31-35,共5页
The biochemical composition of atherosclerotic plaques is closely related to plaque stability and, therefore, to the associated risk of plaque evolution and rupture. Combinations of current imaging modalities, such as... The biochemical composition of atherosclerotic plaques is closely related to plaque stability and, therefore, to the associated risk of plaque evolution and rupture. Combinations of current imaging modalities, such as optical coherence tomography(OCT) with spectroscopic methods, therefore offer the possibility of concurrently obtaining morphological as well as chemical information. Raman spectroscopy is one of the most promising techniques that can be combined with intravascular imaging modalities. A microscopy setup merging both techniques has been applied to characterize plaque depositions of a human aorta affected by the disease. Calcified depositions were clearly identified and subsequently confirmed by histopathology. 展开更多
关键词 Combination of OCT and Raman spectroscopy for improved characterization of atherosclerotic plaque depositions
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Preparation of ZnO/GO composite material with highly photocatalytic performance via an improved two-step method 被引量:4
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作者 Ya-Li Chen Chun-E.Zhang +3 位作者 Chao Deng Peng Fei Ming Zhong Bi-Tao Su 《Chinese Chemical Letters》 SCIE CAS CSCD 2013年第6期518-520,共3页
ZnO/graphene oxide(ZnO/GO) composite material,in which ZnO nanoparticles were densely coated on the GO nanosheets,was successfully prepared by an improved two-step method and characterized by IR, XRD,TEM,and UV-vis ... ZnO/graphene oxide(ZnO/GO) composite material,in which ZnO nanoparticles were densely coated on the GO nanosheets,was successfully prepared by an improved two-step method and characterized by IR, XRD,TEM,and UV-vis techniques.The improved photocatalytic property of the ZnO/GO composite material,evaluated by the photocatalytic degradation of methyl orange(MO) under UV irradiation,is ascribed to the intimate contact between ZnO and GO,the enhanced adsorption of MO,the quick electron transfer from excited ZnO particles to GO sheets and the activation of MO molecules viaπ-πinteraction between MO and GO. 展开更多
关键词 ZnO/GO composite material Improved two-step method characterization Enhanced adsorptive and photocatalytic property
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