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Preparation and Characterization of Fe^(3+)-doped Nanometer TiO_2 Photocatalysts 被引量:3
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作者 刘君武 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2006年第3期57-60,共4页
Fe^3+ -doped nanometer TiO2 photocatalysts were prepared by sol-gel technique. TiO2 powders with different Fe^3+ / Ti^4 + molar ratios ranging from 0. 05% to 25% were synthesized by calcinating the gels in the temp... Fe^3+ -doped nanometer TiO2 photocatalysts were prepared by sol-gel technique. TiO2 powders with different Fe^3+ / Ti^4 + molar ratios ranging from 0. 05% to 25% were synthesized by calcinating the gels in the temperature range of 200-600 ℃ . The effects of the content of iron ions and calcination temperature on the physical properties of the powders and their photocatalytic activities were examined by the photodecorapositon of methyl orange in sunlight. The results show that Fe dopant can decrease the temperature of nanatase-ratile transformation. The ideal photocatalytic property was achieved when the sample with an Fe^3+ / Ti^4+ ratio of 20 at% was calcined at about 300 ℃ for an hour, which is superior to that of commercial Degussa P-25. The optimum microstructure of the Fe-doped TiO2 for a high photocatalytic activity in sunlight is consisted of nanatase and ratile. 展开更多
关键词 TITANIA Fe^3 - doping SUNLIGHT methyl orange photocatalytic degradation
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Fe/Ni-MOF衍生的Fe^(3+)掺杂NiO丙酮传感器研究
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作者 李晓逸 辛建钢 +1 位作者 朱志刚 解丽丽 《上海第二工业大学学报》 2023年第3期183-192,共10页
采用水热法制备了球形纳米花状Fe/Ni-MOF,通过煅烧制备其衍生物Fe^(3+)掺杂的NiO(标记为Fe-NiO),对系列Fe-NiO进行表征并制备成传感器研究其气敏性能。通过表征和测试发现,Fe3+是通过原位合成进入NiO晶格中取代Ni^(2+),Fe^(3+)的加入不... 采用水热法制备了球形纳米花状Fe/Ni-MOF,通过煅烧制备其衍生物Fe^(3+)掺杂的NiO(标记为Fe-NiO),对系列Fe-NiO进行表征并制备成传感器研究其气敏性能。通过表征和测试发现,Fe3+是通过原位合成进入NiO晶格中取代Ni^(2+),Fe^(3+)的加入不仅有助于Fe-NiO在高温煅烧后保持更好的形貌,而且能够降低NiO中的载流子浓度增加空气中的电阻,有助于传感器性能的提升。Fe3+掺杂量为15%的样品对5×10^(-6)丙酮具备最佳的传感性能,灵敏度达到327.4%,气敏性能较纯NiO提升了13倍,在150℃的工作温度下具有快的响应速度(7 s),电阻恢复90%需26 s,可在短时间内用于检测丙酮目标气体。Fe-NiO-15%制成的丙酮传感器具有良好的重复性、稳定性,受湿度影响小。 展开更多
关键词 金属有机框架 气体传感器 丙酮 Fe^(3+)掺杂nio
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Electrochemical synthesis of Ni doped carbon quantum dots for simultaneous fluorometric determination of Fe^(3+)and Cu^(2+)ion facilely
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作者 Siyuan Sun Yang Sun +4 位作者 Fan Yang Sai Che Xiaoyun Zhang Ge Zhang Yongfeng Li 《Green Chemical Engineering》 CSCD 2023年第1期115-122,共8页
A novel Ni doped carbon quantum dots(Ni-CQDs)fluorescence probe was synthesized by facile electrolysis of monoatomic Ni dispersed porous carbon(Ni–N–C).The obtained Ni-CQDs showed a high quantum yield of 6.3%with th... A novel Ni doped carbon quantum dots(Ni-CQDs)fluorescence probe was synthesized by facile electrolysis of monoatomic Ni dispersed porous carbon(Ni–N–C).The obtained Ni-CQDs showed a high quantum yield of 6.3%with the strongest excitation and emission peaks of 360 nm and 460 nm,and maintained over 90%of the maximum fluorescence intensity in a wide p H range of 3–12.The metal ions detectability of Ni-CQDs was enhanced by Ni doping and functional groups modification,and the rapid and selective detection of Fe^(3+)and Cu^(2+)ions was achieved with Ni-CQDs through dynamic and static quenching mechanism,respectively.On one hand,the energy band gap of Ni-CQDs was regulated by Ni doping,so that excited electrons in Ni-CQDs were able to transfer to Fe^(3+)easily.On the other hand,the abundant functional groups promoted the generation of static quenching complexation between Cu^(2+)and Ni-CQDs.In metal ions detection,the linear quantitation range of Fe^(3+)and Cu^(2+)were 100–1000μM(R^(2)=0.9955)and 300–900μM(R^(2)=0.9978),respectively.The limits of detection(LOD)were calculated as 10.17 and 7.88μM,respectively.Moreover,the fluorescence quenched by Cu^(2+)could be recovered by EDTA2-due to the destruction of the static quenching complexation.In this way,NiCQDs showed the ability to identify the two metal ions to a certain degree under the condition of Fe^(3+)and Cu^(2+)coexistent.This work paves the way of facile multiple metal ion detection with high sensitivity. 展开更多
关键词 Electrolysis Ni doped CQDs Fe^(3+)detection Cu^(2+)detection Ions distinction
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