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国家自然科学基金(20775005)

作品数:2 被引量:2H指数:1
相关作者:邵娜王昊金建余杨荣华王永祥更多>>
相关机构:湖南大学北京大学更多>>
发文基金:国家自然科学基金国家杰出青年科学基金更多>>
相关领域:理学自动化与计算机技术更多>>

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A fluorescent sensing membrane for iodine based on intramolecular excitation energy transfer of anthryl appended porphyrin被引量:2
2009年
A single anthryl appended meso-tetraphenylporphyrin (TPP) dyad has been synthesized and applied in fluorescence sensing of iodine based on the intramolecular excitation energy transfer. The molecular recognition of the sensor is based on the interaction of iodine with inner anthracene moiety of the dyad, while the signal reporter for the recognition process is the TPP fluorescence quenching. Because the emission spectrum of anthracene is largely overlapped with the Soret band absorption of TPP, intramolecular excitation energy transfer interaction occurs between the donor, anthracene and acceptor, TPP. This energy transfer leads to TPP fluorescence emission by excitation of anthracene. The sensor was constructed by immobilizing the dyad in a plasticized poly(vinyl chloride) (PVC) membrane. The sensing membrane shows higher sensitivity compared to the sensors by using anthracene, TPP, or a mixture of anthracene and TPP as sensing materials. Under the optimum conditions, iodine in a sample solution can be determined from 2.04 to 23.6 mmol·L-1 with a detection limit of 33 nmol·L-1. The sensing membrane shows satisfactory response characteristics including good reproducibility, reversibility and stability, as well as the short response time of less than 60 s. Except for Cr2O72- and MnO4-, other common metal ions and anions in foodstuff do not interfere with iodine determination. The proposed method was applied in the determination of iodine in table salt samples. The results agree well with those obtained by other methods.
LONG LiPingYOU MingXuWANG HaoWANG YongXiangYANG RongHua
关键词:FLUORESCENCETRANSFERIODINE
化学与生物传感器分子识别体系设计
2008年
化学传感器因其具有响应信号丰富、检测对象广、选择性高并能实现实时检测等特点而成为分析化学学科中重要的研究方向之一。近30年中光化学传感器发展迅速,无论在理论上还是实际应用中都已达到了相当水平。然而,迄至今日,真正灵敏度高、选择性强且可逆性好的传感器并不多见。制约光化学传感器发展的主要因素之一是高选择性分子识别体系的匮乏。
杨荣华邵娜崔仁发王昊金建余王永祥
关键词:光化学传感器生物传感器分子识别实时检测化学学科高选择性
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