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Journal ArticleDOI

A Chemodosimeter for the Ratiometric Detection of Hydrazine Based on Return of ESIPT and Its Application in Live-Cell Imaging

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TLDR
The probe is successfully demonstrated to enable the detection of hydrazine in live cells and results in the recovery of the ESIPT by removal of a free HBT moiety through subsequent substitution, cyclization, and elimination processes.
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This article is published in Organic Letters.The article was published on 2013-10-18. It has received 232 citations till now. The article focuses on the topics: Moiety & Benzothiazole.

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Development of fluorescent probes based on protection-deprotection of the key functional groups for biological imaging.

TL;DR: This tutorial review highlights the representative examples of small-molecule based fluorescent probes for bioimaging, which are operated via the protection-deprotection of key functional groups such as aldehyde, hydroxyl, and amino functional groups reported from 2010 to 2014.
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A Ratiometric Fluorescent Probe Based on ESIPT and AIE Processes for Alkaline Phosphatase Activity Assay and Visualization in Living Cells

TL;DR: A ratiometric fluorescent probe is developed based on a phosphorylated chalcone derivative for ALP activity assay and visualization in living cells that shows excellent biocompatibility and enables in vitro quantification of ALP activity in a range of 0-150 m U/mL with a detection limit of 0.15 mU/mL.
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Naked-eye and near-infrared fluorescence probe for hydrazine and its applications in in vitro and in vivo bioimaging.

TL;DR: The near-infrared fluorescence probe with a turn-on fluorescent probe CyJ based on the structure-emission property relationships of the NIR dyes containing an acetyl group as the recognizing moiety is disclosed, which is highly selective for N2H4 over various anions, cations, and other amino compounds and has a low limit of detection of hydrazine.
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A resorufin-based colorimetric and fluorescent probe for live-cell monitoring of hydrazine

TL;DR: A novel colorimetric and red-emitting fluorescent probe for hydrazine detection based on resorufin platform that shows a large (117nm) red-shifted absorption spectrum and the color changes from colorless to red upon addition ofHydrazine in the aqueous solution, which can serve as a "naked-eye" probe forhydrazine.
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Resonance‐Assisted Hydrogen Bonding as a Driving Force in Synthesis and a Synthon in the Design of Materials

TL;DR: The involvement of RAHB as a driving force in the synthesis of organic, coordination, and organometallic compounds, as a handy tool in the activation of covalent bonds, and in starting moieties for synthetic transformations are highlighted.
References
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Journal ArticleDOI

Luminescent chemodosimeters for bioimaging.

TL;DR: Key Laboratory for Organic Electronics and Information Displays (KLOEID) and Institute of Advanced Materials (IAM), Nanjing University of Posts and Telecommunications, Nanjing 210046, P. R. China.
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Fluorescent chemosensors based on spiroring-opening of xanthenes and related derivatives.

TL;DR: Fluorescent Chemosensors Based on Spiroring-Opening of Xanthenes and Related Derivatives and their applications in Nano Science and Bioinspired Science.
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Fluoro- and Chromogenic Chemodosimeters for Heavy Metal Ion Detection in Solution and Biospecimens

TL;DR: Duong Tuan Quang was born in 1970 in Thanhhoa, Vietnam, and graduated from Hue University in 1992, where he obtained his M.S. degree in Chemistry and went to Korea University as a research professor in 2010, where his main task involved the development of chromogenic and fluorogenic molecular sensors to detect specific cations and anions.
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Fluorescent and luminescent probes for detection of reactive oxygen and nitrogen species

TL;DR: A critical review highlights recent advances that have been made in the development of fluorescent and luminescent probes employed to monitor various ROS/RNS.
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Recent progress in fluorescent and colorimetric chemosensors for detection of precious metal ions (silver, gold and platinum ions)

TL;DR: This tutorial review focuses on the recent contributions concerning the fluorescent or colorimetric sensors for these metal ions, and is organized according to their structural classifications and unique mechanisms between the sensors and metal ions.
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