Prem N. Basa
University of South Dakota
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Featured researches published by Prem N. Basa.
Journal of Organic Chemistry | 2012
Prem N. Basa; Andrew G. Sykes
Selective reduction of an anthracenone-quinoline imine derivative, 2, using 1.0 equiv of NaBH(4) in 95% ethanol affords the corresponding anthracen-9-ol derivative, 3, as confirmed by (1)H NMR, (13)C NMR, ESI-MS, FTIR, and elemental analysis results. UV-vis and fluorescence data reveal dramatic spectroscopic changes in the presence of Zn(II) and Cu(II). Zinc(II) coordination induces a 1,5-prototropic shift resulting in anthracene fluorophore formation via an imine-enamine tautomerization pathway. Copper(II) induces a colorimetric change from pale yellow to orange-red and results in imine hydrolysis in the presence of water. Spectroscopic investigations of metal ion response, selectivity, stoichiometry, and competition studies all suggest the proposed mechanisms. ESI-MS analysis, FTIR, and single-crystal XRD further support the hydrolysis phenomenon. This is a rare case of a single sensor that can be used either as a chemosensor (reversibly in the case of Zn(II)) or as a chemodosimeter (irreversibly in the case of Cu(II)); however, the imine must contain a coordinating Lewis base, such as quinoline, to be active for Cu(II).
Journal of Organic Chemistry | 2011
Prem N. Basa; Arundhati Bhowmick; Mariah M. Schulz; Andrew G. Sykes
Site-selective imination of anthraquinone-based macrocyclic crown ethers using titanium tetrachloride as the catalyst yields imines where only the external carbonyl group of the anthraquinone forms Schiff-bases. The following aromatic amines yield monomeric compounds (aniline, 4-nitroaniline, 4-pyrrolaniline, and 1,3-phenylenediamine). Reaction of 2 equiv of the macrocyclic anthraquinone host with 1,2- and 1,4-phenylenediamine yields dimeric imine compounds. The 1,2-diimino host acts as a luminescence sensor, exhibiting enhanced selectivity for Ba(II) ion. Spectroscopic data indicate that two barium ions coordinate to the sensor. Due to E/Z isomerization of the imine, the monomeric complexes are nonluminescent. Restricted rotation about the 1,2 oriented C═N groups or other noncovalent/coordinate-covalent interactions acting between neighboring crown ether rings may inhibit E/Z isomerization in this example, which is different from current examples that employ coordination of a metal cation with a chelating imine nitrogen atom to suppress E/Z isomerization and activate luminescence. The 1,4-diimino adduct, where the crown rings remain widely separated, remains nonluminescent.
Organic Letters | 2012
Prem N. Basa; Arundhati Bhowmick; Andrew G. Sykes
Reduction of imine-anthracenone compounds selectively produces secondary alcohols leaving the external imine group unreacted. Addition of the Zn(II) ion induces a metal-mediated imine-enamine tautomerization reaction that is selective for Zn(II), a new fluorescence detection method not previously observed for this important cation.
Organic Letters | 2011
Mariappan Kadarkaraisamy; Soudsakhone Thammavongkeo; Prem N. Basa; Gerald Caple; Andrew G. Sykes
Alkyl substitution at the α position(s) of mono-, bi-, and terthiophenes via electrophilic addition of macrocyclic end caps combines linear, π-conjugated aromatic compounds and annular macrocycles. Addition of the Hg(II) ion to terthiophene adducts produces intense color changes, allowing for the selective, colorimetric detection of mercury(II). Chemical oxidation of the asymmetric terthiophene adduct produces the sexithiophene oligomer.
Angewandte Chemie | 2015
Prem N. Basa; Sagar Antala; Robert E. Dempski; Shawn C. Burdette
Metal ion signaling in biology has been studied extensively with ortho-nitrobenzyl photocages; however, the low quantum yields and other optical properties are not ideal for these applications. We describe the synthesis and characterization of NTAdeCage, the first member in a new class of Zn(2+) photocages that utilizes a light-driven decarboxylation reaction in the metal ion release mechanism. NTAdeCage binds Zn(2+) with sub-pM affinity using a modified nitrilotriacetate chelator and exhibits an almost 6 order of magnitude decrease in metal binding affinity upon uncaging. In contrast to other metal ion photocages, NTAdeCage and the corresponding Zn(2+) complex undergo efficient photolysis with quantum yields approaching 30 %. The ability of NTAdeCage to mediate the uptake of (65) Zn(2+) by Xenopus laevis oocytes expressing hZIP4 demonstrates the viability of this photocaging strategy to execute biological assays.
Journal of Coordination Chemistry | 2010
Mariappan Kadarkaraisamy; Daniel P. Engelhart; Prem N. Basa; Andrew G. Sykes
Both bis- and tetrakis-substituted 2,2′-bipyridine complexes of lead(II), [Pb(bpy)2](PF6)2 and [Pb(bpy)4](PF6)2 · bpy, respectively, have been characterized by X-ray crystallography as hexafluorophosphate salts when three equivalents of bipyridine is combined with Pb(NO3)2 in aqueous solution prior to metathesis. The tetrakis-substituted product, [Pb(bpy)4](PF6)2 · bpy, shows an unusual combination of intramolecular and intermolecular π-stacking of two of the bipyridine ligands throughout the crystal. Incomplete metathesis also produces a catenated, mixed-anion complex, [Pb(bpy)2(µ-NO3)](PF6), where the nitrate bridges lead(II) metal centers to form a 1-D coordination polymer. If metathesis is carried out using perchlorate, a known [Pb(bpy)2](ClO4)2 analog is produced along with [bpyH](ClO4), which has not been previously characterized by X-ray crystallography.
Acta Crystallographica Section E: Crystallographic Communications | 2015
Benjamin Hawks; Jingjing Yan; Prem N. Basa; Shawn C. Burdette
The title complex, [Cu(C9H6NO)2(C5H4N)]·H2O, adopts a slightly distorted square-pyramidal geometry in which the axial pyridine ligand exhibits a long Cu—N bond of 2.305 (3) Å. The pyridine ligand forms dihedral angles of 79.5 (5) and 88.0 (1)° with the planes of the two quinolin-2-olate ligands, while the dihedral angle between the quinoline groups of 9.0 (3)° indicates near planarity. The water molecule connects adjacent copper complexes through O—H⋯O hydrogen bonds to phenolate O atoms, forming a network interconnecting all the complexes in the crystal lattice.
Crystal Growth & Design | 2012
Haoran Sun; Usha K. Tottempudi; Jeffery D. Mottishaw; Prem N. Basa; Anjaneyulu Putta; Andrew G. Sykes
Polyhedron | 2013
Kadarkaraisamy Mariappan; Prem N. Basa; Vinothini Balasubramanian; Sarah Fuoss; Andrew G. Sykes
Inorganica Chimica Acta | 2011
Kadarkaraisamy Mariappan; Prem N. Basa