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Diethyl Malonate-Based Turn-On Chemical Probe for Detecting Hydrazine and Its Bio-Imaging and Environmental Applications With Large Stokes Shift.


ABSTRACT: Diethyl malonate-based fluorescent probe NE-N 2 H 4 was constructed for monitoring hydrazine (N2H4). The novel probe NE-N 2 H 4 exhibits good properties, such as large Stokes shift (about 125 nm), good selectivity, and low cytotoxicity. This sensing probe NE-N 2 H 4 can be operated to detect hydrazine in living HeLa cells. Especially after soaking in probe solution, the thin-layer chromatography (TLC) plate could detect the vapor of hydrazine. Therefore, the probe NE-N 2 H 4 might be used to monitor hydrazine in biosamples and environmental problem.

SUBMITTER: Qu J 

PROVIDER: S-EPMC8012553 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Diethyl Malonate-Based Turn-On Chemical Probe for Detecting Hydrazine and Its Bio-Imaging and Environmental Applications With Large Stokes Shift.

Qu Jianbo J   Zhang Zhi-Hao ZH   Zhang Haitao H   Weng Zhen-Tao ZT   Wang Jian-Yong JY  

Frontiers in chemistry 20210318


Diethyl malonate-based fluorescent probe <b>NE-N</b> <sub><b>2</b></sub> <b>H</b> <sub><b>4</b></sub> was constructed for monitoring hydrazine (N<sub>2</sub>H<sub>4</sub>). The novel probe <b>NE-N</b> <sub><b>2</b></sub> <b>H</b> <sub><b>4</b></sub> exhibits good properties, such as large Stokes shift (about 125 nm), good selectivity, and low cytotoxicity. This sensing probe <b>NE-N</b> <sub><b>2</b></sub> <b>H</b> <sub><b>4</b></sub> can be operated to detect hydrazine in living HeLa cells. Esp  ...[more]

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