1067211-23-7Relevant academic research and scientific papers
Aggregation-induced emission probe for multicomponent detection and immunoassay sensing
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Paragraph 0028; 0042; 0045, (2018/11/03)
The invention discloses a fluorescent probe with an aggregation-induced emission property and a preparation method and application thereof. The fluorescent probe is formed by connecting two diethylenetriamino groups capable of realizing specific recogniti
Fluorescence 'on-off-on' chemosensor for sequential recognition of Fe 3+ and Hg2+ in water based on tetraphenylethylene motif
Yan, Yuanyuan,Che, Zhiping,Yu, Xiang,Zhi, Xiaoyan,Wang, Juanjuan,Xu, Hui
, p. 508 - 513 (2013/02/25)
A novel selective and sensitive fluorescence 'on-off-on' probe based on tetraphenylethylene (TPE) motif for sequential recognition of Fe3+ and Hg2+ in water has been developed. Especially the complex 6-Fe3+ could behave as a 'turn on' fluorescent sensor over a wide-range pH value for detection of Hg2+. The selectivity of this complex for Hg2+ over other heavy and transition metal ions is excellent, and its sensitivity for Hg2+ is at 2 ppb in water.
A new fluorescent sensor for the detection of pyrophosphate based on a tetraphenylethylene moiety
Park, Chuneung,Hong, Jong-In
scheme or table, p. 1960 - 1962 (2010/06/14)
We have developed a new fluorescent sensor 1-2Zn based on a tetraphenylethylene (TPE) moiety for the detection of PPi. This TPE-based chemosensor showed 'turn-on' fluorescence emission according to the concentration of PPi. The fluorescence enhancement upon binding of PPi to 1-2Zn resulted from the restriction of intramolecular rotation of phenyl rings in 1-2Zn.
Fluorescence "turn on" chemosensors for Ag+ and Hg2+ based on tetraphenylethylene motif featuring adenine and thymine moieties
Liu, Lei,Zhang, Guanxin,Xiang, Junfeng,Zhang, Deqing,Zhu, Daoben
supporting information; experimental part, p. 4581 - 4584 (2009/05/30)
(Chemical Equation Presented) Two new tetraphenylethylene (TPE) compounds 1 and 2 bearing adenine and thymine moieties, respectively, were found to be fluorescence "turn on" chemosensors for Ag+ and Hg 2+ by making use of the AIE fea
