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A novel rhodamine B spirolactam derivative bearing an N-[4- carbonyl phenyl N-[4- carbonyl phenyl N-[4- carbonyl phenylsized and structurally characterized to develop a chemosensor.
A new fluorescein derivative, namely, (E -2-(((1H-pyrrol-2-yl) mE -2-ene)amino)-3′,6′-dihydroxyspiro[isoindoline-1H-pyrrol-2-yl3-one (FLPY), was designed, synthesized, and structurally characterized to develop a chemethylene
A new Rhodamine B derivative (RBDPA), namely, N1- 2- 3′,6′-bis(diethylamiN1- 2- 3′,6′-bissoiN1- 2- 3′,6′-bistheN1- 2- 3′,6′-bis4,N4-bis(pyridiethylamino -3-oxospiro[isoindoline-1,9′-xanthen]-2-ylndiethylamino -3-oxospiro[isoindoline-1,9′-xanthen]-2-yl
A new rhodamine B derivative, namely, N1- benzo[d]thiazol-2-yl -N4- 2- 3′,6′-bis (diethylamiN1- benzo[d]thiazol-2-yl -N4- 2- 3′,6′-bis-yl)ethyl)malea-mide (RDBSF), was desigN1- benzo[d]thiazol-2-yl -N4- 2- 3′,6′-biserized to develop a N1- benzo[d]thiazol-2-yl -N4- 2- 3′,6′-bis
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Our findings collectively suggest that, in addition to isolation of gallic acid, various other active constituents of TD should be isolated and characterized to develop it as a potential therapeutic agent for treating hepatocellular carcinoma.
Porous silicon nitride ceramics having properties similar to the human trabecular bone have been sintered and characterized in order to develop a material applicable as bone substitute.
Au nanorods (NRs) modified nanostructured TiO2/ITO electrodes have been fabricated and characterized in order to develop a biosensing platform for the photoelectrochemical determination of microRNAs.
The main objective of this research was to study the decomposition and combustion chemistry of thoroughly characterized GAP samples to develop a model for the combustion of GAP and propellants based on GAP.
A representative isolate of the ELB agent, the Marseille strain, was characterized and used to develop a microimmunofluorescence test that detected reactive antibodies in human sera.
A repetitive sequence from the genome of R. solani was cloned and characterized with a view to develop a DNA probe and a PCR diagnostic assay for detection of the fungus.
The objectives of this study were to sequence carrot ESTs using the Illumina platform and to characterize the carrot transcriptome to develop a molecular resource for marker development and gene identification.
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