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荧光素-层状双金属氢氧化物复合体的发光性能及对Fe3+的荧光识别 被引量:2
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作者 梁足培 苏飞飞 +5 位作者 国荣 唐昱垚 金烁 于梓洹 李建 马淑兰 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2019年第7期1352-1358,共7页
采用离子交换法合成了FLN/OS-LDH复合体(FLN:荧光素,OS:1-辛烷磺酸钠,LDH:镁铝型层状双金属氢氧化物),并研究了其光致发光和对Fe^3+的识别性能.固态时,FLN不发光,而FLN/OS-LDH复合体呈黄绿色荧光(发射波长为565 nm),是荧光素(FLN)的特... 采用离子交换法合成了FLN/OS-LDH复合体(FLN:荧光素,OS:1-辛烷磺酸钠,LDH:镁铝型层状双金属氢氧化物),并研究了其光致发光和对Fe^3+的识别性能.固态时,FLN不发光,而FLN/OS-LDH复合体呈黄绿色荧光(发射波长为565 nm),是荧光素(FLN)的特征发射光.在甲酰胺(FM)中可将该复合体方便剥离为胶状悬浮液,其发射波长发生蓝移,为绿光发射(531 nm).研究了复合体剥离液对金属离子的荧光识别特性,发现其对Fe^3+的选择性识别能力很强,远优于其它离子(Mg^2+,Ni^2+,Co^2+,Cu^2+,Zn^2+,Pb^2+,Cd^2+和Hg^2+).该复合体与Fe^3+结合发生荧光猝灭现象,可将其用作检测Fe^3+的荧光传感器.Fe^3+检测限为1.27×10^-7 mol/L,猝灭常数(K sv)为3.44×10^2 L/mol. 展开更多
关键词 荧光 层状双金属氢氧化物 荧光化学传感 Fe^3+识别
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Pyrene-functionalized Core-shell Magnetic Silica Nanospheres for Optical Sensing and Removal of Hg^(2+)in Aqueous Solution 被引量:2
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作者 WANG Yan-yan TANG Mei-yao +2 位作者 SHEN He CHE Guang-bo SU Bin 《发光学报》 EI CAS CSCD 北大核心 2018年第12期1799-1806,共8页
A recyclable mercury(Ⅱ)optical sensor based on pyrene-functionalized core-shell magnetic silica nanosphereswas developed and demonstrated by sol-gel grafting reaction.The obtained multifunctional microspheres display... A recyclable mercury(Ⅱ)optical sensor based on pyrene-functionalized core-shell magnetic silica nanosphereswas developed and demonstrated by sol-gel grafting reaction.The obtained multifunctional microspheres displayed excellent fluorescence sensitivity and selectivity towards Hg^(2+)over other competing metal ions.A good linearity Stern-Volmer working plot(R2=0.9983)between the fluorescence intensity of multifunctional microspheres and the concentration of Hg^(2+)was constructed with a satisfactory detection limit of 2.3×10^(-8)mol·L^(-1).Their fluorescence response in the presence of Hg^(2+)is found to be almost reversible when treated by EDTA solution.Moreover,these pyrene-functionalized magnetic silica nanospheres can efficiently remove Hg^(2+)in aqueous solution and easily separated by appling an external magnetic field.These results indicate that functionalized core-shell magnetic silica microspheres are potentially promising materials for simultaneously detecting and removing environmental pollutants. 展开更多
关键词 optical sensor magnetic silica nanospheres RECYCLABLE mercury removal
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