半色移
螺旋烯
荧光
化学
斯托克斯位移
分析物
缓冲溶液
双功能
猝灭(荧光)
特里斯
缓冲器(光纤)
分析化学(期刊)
核化学
色谱法
分子
物理
电信
量子力学
催化作用
有机化学
生物化学
计算机科学
作者
Siwakorn Sakunkaewkasem,Anuwut Petdum,Waraporn Panchan,Jitnapa Sirirak,Adisri Charoenpanich,Thanasat Sooksimuang,Nantanit Wanichacheva
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2018-05-07
卷期号:3 (5): 1016-1023
被引量:68
标识
DOI:10.1021/acssensors.8b00158
摘要
A new fluorescent sensor, M201-DPA, based on [5]helicene derivative was utilized as dual-analyte sensor for determination of Cu2+ or Zn2+ in different media and different emission wavelengths. The sensor could provide selective and bifunctional determination of Cu2+ in HEPES buffer containing Triton-X100 and Zn2+ in Tris buffer/methanol without interference from each other and other ions. In HEPES buffer, M201-DPA demonstrated the selective ON–OFF fluorescence quenching at 524 nm toward Cu2+. On the other hand, in Tris buffer/methanol, M201-DPA showed the selective OFF–ON fluorescence enhancement upon the addition of Zn2+, which was specified by the hypsochromic shift at 448 nm. Additionally, M201-DPA showed extremely large Stokes shifts up to ∼150 nm. By controlling the concentration of Zn2+ and Cu2+ in a living cell, the imaging of a HepG2 cellular system was performed, in which the fluorescence of M201-DPA in the blue channel was decreased upon addition of Cu2+ and was enhanced in UV channel upon addition of Zn2+. The detection limits of M201-DPA for Cu2+ and Zn2+ in buffer solutions were 5.6 and 3.8 ppb, respectively. Importantly, the Cu2+ and Zn2+ detection limits of the developed sensors were significantly lower than permitted Cu2+ and Zn2+ concentrations in drinking water as established by the U.S. EPA and WHO.
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