化学学报 ›› 2011, Vol. 69 ›› Issue (10): 1205-1210. 上一篇    下一篇

研究论文

YVO4:Eu荧光纳米粒子的制备及其测定孔雀石绿的研究

翟晗, 于永丽*, 成利艳, 徐淑坤, 王乃芝   

  1. (东北大学化学系 沈阳 110004)
  • 投稿日期:2010-10-15 修回日期:2010-12-23 发布日期:2011-01-21
  • 通讯作者: 于永丽 E-mail:yongli200004@163.com
  • 基金资助:

    国家自然科学基金;辽宁省自然科学基金

Synthesis of YVO4:Eu Fluorescent Nanoparticles and Its Application in the Determination of Malachite Green

DI Han, YU Yong-Li, CHENG Li-Yan, XU Shu-Kun, WANG Nai-Zhi   

  1. (Department of Northeastern University, Shenyang 110004)
  • Received:2010-10-15 Revised:2010-12-23 Published:2011-01-21
  • Contact: Yong-Li YU E-mail:yongli200004@163.com

以聚丙烯酸为修饰剂, 采用水热法合成YVO4:Eu荧光纳米粒子. 实验考察了聚丙烯酸加入量、溶液pH值、反应温度等条件对粒子荧光性能的影响. 在优化的条件下, 合成粒子的荧光强度大, 水溶性良好、溶液均匀稳定. 对合成粒子进行了表征, 红外光谱实验表明, 粒子表面包覆了聚丙烯酸|XRD实验表明, 制备了单一相YVO4晶体|TEM测试表明合成粒子分散性较好, 粒度均匀, 粒径在25 nm左右. 以合成稀土粒子为能量供体, 孔雀石绿为能量受体, 建立了荧光共振能量转移体系. 基于以上体系, 实现了对孔雀石绿的定量检测. 方法的线性范围为5.00×10-5~5.00×10-3 g•L-1, 检出限为2.0×10-5 g•L-1.

关键词: 荧光, 纳米粒子, 稀土, 荧光共振能量转移, 孔雀石绿

YVO4:Eu fluorescent nanoparticles were synthesized by hydrothermal method using poly acrylic acid (PAA) as modified reagent. The luminescence properties of the samples synthesized at different expe- rimental conditions including the PAA amount, the pH value of reacting solutions, the reacting temperature and reaction time were investigated. Under the optimal conditions the as-prepared particles showed quite good water solubility meanwhile their solutions emitted strong and stable fluorescence under 263 nm excitation. The products were characterized by IR, XRD and TEM. The IR spectrum indicates that YVO4:Eu nanoparticles are coated by PAA. XRD pattern shows that the particles are single-phase YVO4 crystals in tetragonal system and the solid solution is formed via the doped Eu3+ entering into the YVO4 crystal lattice instead of Y3+. The TEM image shows a good dispersion of YVO4:Eu nanoparticles in water with nearly uniform size which is about 25 nm. Moreover, the system of fluorescence resonant energy transfer (FRET), where YVO4:Eu nanoparticles and Malachite Green (MG) served as energy donors and energy acceptors respectively, was constructed. Based on the FRET system, a new method for the determination of MG was established with the detection limit of 2.0×10-5 g•L-1 and the linear response range of 5.00×10-5~5.00×10-3 g•L-1.

Key words: fluorescence, nanoparticle, lanthanide, fluorescence resonant energy transfer, malachite green

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