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Detection of 2,4,6-trinitrophenol based on f-f transition of Eu^(2+) 被引量:1
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作者 Xuan Zhang Litao Liu +2 位作者 Wei Zhang liyan na Ruinian Hua 《Journal of Rare Earths》 SCIE EI CAS CSCD 2021年第8期952-958,共7页
In this paper,we designed Eu^(2+)-doped BaAlF_(5) and BaSiF_(6) downconversion nanophosphors with strong f-f transition emission to realize the quantitative detection of TNP.The surface of the as-prepared nanophosphor... In this paper,we designed Eu^(2+)-doped BaAlF_(5) and BaSiF_(6) downconversion nanophosphors with strong f-f transition emission to realize the quantitative detection of TNP.The surface of the as-prepared nanophosphors was modified by polyethylenimine(PEI) to increase the water solubility and to provide a pair of electrons to bind to the benzene ring in TNP,forming a Meisenheimer complex.The detection principle of TNP is based on luminescence resonance energy transfer(LRET) technology,where the PEI-functionalized BaAlF_(5):Eu^(2+) and BaSiF_(6):Eu^(2+) nanophosphors are used as energy donors and TNP is an energy acceptor.With increasing TNP concentrations,the luminescence intensity of the BaAlF5:Eu^(2+) and BaSiF6:Eu^(2+) nanophosphors at 359 nm [^(4)f_(7)(^(6)P_(7/2))→^(4)f_(7)(^(8)S_(7/2)) transition of Eu^(2+)] displays dramatic luminescent quenching.The BaAlF_(5):Eu^(2+)@PEI or BaSiF_(6):Eu^(2+)@PEI nanophosphor downconversion luminescent sensors show great sensitivity and selectivity and good linearity,and the detection limits of TNP are 0.57 and 2.82 ng/mL,respectively. 展开更多
关键词 BaAlF_(5):Eu^(2+) BaSiF_(6):Eu^(2+) f-f transition of Eu^(2+) LRET TNP Rare earths
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利用物理化学基本原理甄别科技文献数据计算的合理性
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作者 那立艳 张丽影 +1 位作者 支德福 张树彪 《大学化学》 CAS 2020年第9期159-163,共5页
在课堂教学设计中,利用物理化学热力学基本原理和方法对吸附领域文献数据处理过程进行分析和更正,增强学生对热力学知识掌握的准确性和系统性,提升学生的学习兴趣和学习自信心,打造充满创造力和活力的物理化学课堂教学模式。
关键词 化学热力学 标准平衡常数 经验平衡常数 吸附 LANGMUIR方程
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