Solid AIE fluorophore molecule with specific response of amide functional group to detect gaseous phosgene
暂无分享,去创建一个
Ziqi Li | Yunxu Yang | Mengwen Li | Xiaohui Hao | A. Shen | Xuebing Wang | Yongwei Zhao | Manman Du | Lala Hou | R. Duan | Panqing Zhang | Xiuqing Zhao | Xue Li
[1] Ziqi Li,et al. Rapid, sensitive detection of organophosphorus pesticides through auto-inductive cascade signal amplification approach and a sensitized behavior of Tb3+ hydrogel in point-of-care , 2023, Sensors and Actuators B: Chemical.
[2] Haidong Li,et al. Mitochondria-targeted smart AIEgens: Imaging and therapeutics , 2022, Coordination Chemistry Reviews.
[3] L. Wang,et al. A Multifunctional Fluorescent Molecule with Aie Characteristics for So2 Derivatives Detection, Fluorescence Ink and Latent Fingerprint Imaging , 2022, SSRN Electronic Journal.
[4] T. James,et al. Fluorescent probes for the detection of chemical warfare agents. , 2022, Chemical Society reviews.
[5] Yongling Zhang,et al. A simple AIE chemosensor based on diphenyl imidazole scaffold for 2,4,6-trinitrophenol detection and dye absorption. , 2022, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[6] Y. Duan,et al. Recent advances in small-molecule fluorescent probes for studying ferroptosis. , 2022, Chemical Society reviews.
[7] Tianhong Chen,et al. Molecular engineered optical probes for chemical warfare agents and their mimics: Advances, challenges and perspectives , 2022, Coordination Chemistry Reviews.
[8] Tianhong Chen,et al. A molecular recognition platform for the simultaneous sensing of diverse chemical weapons , 2022, Chemical science.
[9] Jinmao You,et al. Recent progress in the development of chemodosimeters for fluorescence visualization of phosgene , 2021 .
[10] Tao Gong,et al. Two-phase activated colorimetric and ratiometric fluorescent sensor for visual detection of phosgene via AIE coupled TICT processes. , 2021, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[11] Yu Mao,et al. An AIE+TICT activated colorimetric and ratiometric fluorescent sensor for portable, rapid, and selective detection of phosgene , 2020 .
[12] Yue-Ting Su,et al. A naphthalimide-based probe for phosgene sensing based on the phosgene-induced beckmann rearrangement , 2020 .
[13] Ke Cheng,et al. Selectively Light-up Detection of Phosgene with an Aggregation-Induced Emission-Based Fluorescent Sensor , 2019, ACS omega.
[14] A. Mahapatra,et al. A Powerful Turn‐On Fluorescent Probe for Phosgene: A Primary Amide Strategically Attached to an Anthracene Fluorophore , 2019, ChemistrySelect.
[15] Youyu Zhang,et al. An ESIPT-based fluorescent probe for the detection of phosgene in the solution and gas phases. , 2019, Talanta.
[16] Guoqiang Feng,et al. An ultrasensitive fluorescent probe for phosgene detection in solution and in air , 2019, Dyes and Pigments.
[17] Jiemin Liu,et al. A turn-on fluorescent probe based on Si-rhodamine for sensitive and selective detection of phosgene in solution and in the gas phase , 2018 .
[18] A. Kalam,et al. A colorimetric turn-on optical chemosensor for Cu2+ ions and its application as solid state sensor , 2018 .
[19] A. Malkov,et al. Dehydration of Amides to Nitriles under Conditions of a Catalytic Appel Reaction. , 2018, Organic letters.
[20] Juyoung Yoon,et al. Recent Advances in the Development of Chromophore-Based Chemosensors for Nerve Agents and Phosgene. , 2017, ACS sensors.
[21] B. Hwang,et al. Instantaneous Colorimetric and Fluorogenic Detection of Phosgene with a meso-Oxime-BODIPY. , 2017, Analytical chemistry.
[22] Fang Zeng,et al. An AIE-based fluorescent test strip for the portable detection of gaseous phosgene. , 2017, Chemical communications.
[23] Xiangchuan Xu,et al. BODIPY-Based Fluorescent Sensor for the Recognization of Phosgene in Solutions and in Gas Phase. , 2017, Analytical chemistry.
[24] Xiangchuan Xu,et al. Fluorescent Chemosensor for Selective Detection of Phosgene in Solutions and in Gas Phase. , 2017, ACS sensors.
[25] Qin-Hua Song,et al. A ratiometric fluorescent chemosensor for selective and visual detection of phosgene in solutions and in the gas phase. , 2017, Chemical communications.
[26] Fang Zeng,et al. Handy ratiometric detection of gaseous nerve agents with AIE-fluorophore-based solid test strips , 2016 .
[27] Hyo Sung Jung,et al. Fluorescent and colorimetric sensors for the detection of humidity or water content. , 2016, Chemical Society reviews.
[28] Márcio Talhavini,et al. Inkjet Printing of Lanthanide-Organic Frameworks for Anti-Counterfeiting Applications. , 2015, ACS applied materials & interfaces.
[29] Ryan T. K. Kwok,et al. Aggregation-Induced Emission: Together We Shine, United We Soar! , 2015, Chemical reviews.
[30] Ben Zhong Tang,et al. Aggregation‐Induced Emission: The Whole Is More Brilliant than the Parts , 2014, Advanced materials.
[31] A. Afghan,et al. Vilsmeier-Haack reagent: A facile synthesis of 2-(4-chloro-3,3-dimethyl-7-phenoxyindolin-2-ylidene)malonaldehyde and transformation into different heterocyclic compounds , 2013 .
[32] K. Hwang,et al. Rational design of fluorescent phosgene sensors. , 2012, Analytical chemistry.
[33] J. Joule,et al. Synthesis of 2,2'-bis(1-(2-aryl)-1H-pyrazol-4-yl)-3,3,3',3'- tetramethyl-3H,3'H-5,5'-biindoles and 2,7-bis(1-(3-aryl)-1H- pyrazol-4-yl)-1,1,6,6-tetramethyl-1,6-dihydroindolo(7,6-g)indoles , 2011 .
[34] B. H. Weiller,et al. Polyaniline nanofiber composites with amines: Novel materials for phosgene detection , 2009 .
[35] W. Lambert,et al. Traces of phosgene in chloroform: consequences for extraction of anthracyclines. , 2007, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[36] D. Rudkevich,et al. A FRET approach to phosgene detection. , 2007, Chemical communications.
[37] D. Dubey,et al. Application of single drop microextraction for analysis of chemical warfare agents and related compounds in water by gas chromatography/mass spectrometry. , 2005, Analytical chemistry.
[38] Rui Li,et al. An AIE fluorescent sensor for rapid and selective detection of phosgene , 2022, Chemical Communications.
[39] H S Kwok,et al. Aggregation-induced emission of 1-methyl-1,2,3,4,5-pentaphenylsilole. , 2001, Chemical communications.
[40] V. S. Gaind,et al. Determination of phosgene (carbonyl chloride) in air by high-performance liquid chromatography with a dual selective detection system , 1993 .