Bis-heteroleptic Ru(ii) polypyridine complex-based luminescent probes for nerve agent simulant and organophosphate pesticide

Author(s):  
Bhaskar Sen ◽  
Monosh Rabha ◽  
Sanjoy Kumar Sheet ◽  
Debaprasad Koner ◽  
Nirmalendu Saha ◽  
...  

Two bis-heteroleptic Ru(ii) complexes of a 4,7-dihydroxy-1,10-phenanthroline ligand were synthesized for the detection of the nerve agent gas mimic, DCP, and the organophosphate pesticide, dichlorvos, through the “off–on” luminescence response.

2007 ◽  
Author(s):  
Santresda M. Johnson ◽  
Chris L. Robison ◽  
Tsung-Ming A. Shih ◽  
Lawrence Tong ◽  
Sarah Parylak ◽  
...  
Keyword(s):  

2019 ◽  
Author(s):  
Caleb Karmel ◽  
Zhewei Chen ◽  
John Hartwig

We report a new system for the silylation of aryl C-H bonds. The combination of [Ir(cod)(OMe)]<sub>2</sub> and 2,9-Me<sub>2</sub>-phenanthroline (2,9-Me<sub>2</sub>phen) catalyzes the silylation of arenes at lower temperatures and with faster rates than those reported previously, when the hydrogen byproduct is removed, and with high functional group tolerance and regioselectivity. Inhibition of reactions by the H<sub>2</sub> byproduct is shown to limit the silylation of aryl C-H bonds in the presence of the most active catalysts, thereby masking their high activity. Analysis of initial rates uncovered the high reactivity of the catalyst containing the sterically hindered 2,9-Me<sub>2</sub>phen ligand but accompanying rapid inhibition by hydrogen. With this catalyst, under a flow of nitrogen to remove hydrogen, electron-rich arenes, including those containing sensitive functional groups, undergo silylation in high yield for the first time, and arenes that underwent silylation with prior catalysts react over much shorter times with lower catalyst loadings. The synthetic value of this methodology is demonstrated by the preparation of key intermediates in the synthesis of medicinally important compounds in concise sequences comprising silylation and functionalization. Mechanistic studies demonstrate that the cleavage of the aryl C-H bond is reversible and that the higher rates observed with the 2,9-Me<sub>2</sub>phen ligand is due to a more thermodynamically favorable oxidative addition of aryl C-H bonds.


2005 ◽  
Author(s):  
Tsung-Ming Shih ◽  
Gretchen L. Snyder ◽  
Allen A. Fienberg ◽  
Stacey Galdi ◽  
Minal Rana ◽  
...  

2011 ◽  
Author(s):  
John H. McDonough ◽  
Kerry E. Van Shura ◽  
Megan E. Lyman ◽  
Claire G. Eisner ◽  
Amelia Mazza ◽  
...  

2021 ◽  
Vol 50 (15) ◽  
pp. 5197-5207
Author(s):  
Mohini Gupta ◽  
Rajamani Nagarajan ◽  
Chitteti Ramamurthy ◽  
Perumal Vivekanandan ◽  
G. Vijaya Prakash

Strong and site selective red-emitting photoluminescent/MRI multi-functional KLa(0.95−x)GdxF4:Eu3+ (x = 0–0.4) bio-compatible nanomaterials for targeted in-vitro liver cancer cell imaging.


Nanomaterials ◽  
2020 ◽  
Vol 11 (1) ◽  
pp. 53
Author(s):  
Jashobanta Sahoo ◽  
Santlal Jaiswar ◽  
Pabitra B. Chatterjee ◽  
Palani S. Subramanian ◽  
Himanshu Sekhar Jena

The development of synthetic lanthanide luminescent probes for selective sensing or binding anions in aqueous medium requires an understanding of how these anions interact with synthetic lanthanide probes. Synthetic lanthanide probes designed to differentiate anions in aqueous medium could underpin exciting new sensing tools for biomedical research and drug discovery. In this direction, we present three mononuclear lanthanide-based complexes, EuLCl3 (1), SmLCl3 (2), and TbLCl3 (3), incorporating a hexadentate aminomethylpiperidine-based nitrogen-rich heterocyclic ligand L for sensing anion and establishing mechanistic insight on their binding activities in aqueous medium. All these complexes are meticulously studied for their preferential selectivities towards different anions such as HPO42−, SO42−, CH3COO−, I−, Br−, Cl−, F−, NO3−, CO32−/HCO3−, and HSO4− at pH 7.4 in aqueous HEPES (2-[4-(2-hydroxyethyl)piperazin-1-yl]ethanesulfonic acid) buffer. Among the anions scanned, HPO42− showed an excellent luminescence change with all three complexes. Job’s plot and ESI-MS support the 1:2 association between the receptors and HPO42−. Systematic spectrophotometric titrations of 1–3 against HPO42− demonstrates that the emission intensities of 1 and 2 were enhanced slightly upon the addition of HPO42− in the range 0.01–1 equiv and 0.01–2 equiv., respectively. Among the three complexes, complex 3 showed a steady quenching of luminescence throughout the titration of hydrogen phosphate. The lower and higher detection limits of HPO42− by complexes 1 and 2 were determined as 0.1–4 mM and 0.4–3.2 mM, respectively, while complex 3 covered 0.2–100 μM. This concludes that all complexes demonstrated a high degree of sensitivity and selectivity towards HPO42−.


2021 ◽  
Vol 419 ◽  
pp. 115512
Author(s):  
E. Wigenstam ◽  
E. Forsberg ◽  
A. Bucht ◽  
L. Thors
Keyword(s):  

2021 ◽  
Author(s):  
David Parker ◽  
Jack D. Fradgley ◽  
Ka-Leung Wong

The design principles that guide the creation of responsive lanthanide luminescent probes are defined, classified and exemplified.


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