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Biomedical subjects

G K Prakash

Publications and source records attributed to G K Prakash.

At least 19 recordsLinked to original sources

Ab initio study of the structures and stabilities of the dimer of ethyl cation, (C(2)H(+)(5))(2) and related C(4)H(10)(2+) isomers.

Ab initio calculations at the MP4(SDTQ)/6-311G//MP2/6-31G level were performed to study the structures and stabilities of the dimer of ethyl cation, (C(2)H(+)(5))(2), and related C(4)H(10)(2+) isomers. Two doubly hydrogen bridged diborane type trans 1 and cis 2 isomers were located as minima. The trans isomer was found to be more favorable than cis isomer by only 0.6 kcal/mol. Several other minima for C(4)H(10)(2+) were also located. However, the global energy minimum corresponds to C-H (C(4) position) protonated 2-butyl cation 10. Structure 10 was computed to be substantially more stable than 1 by 31.7 kcal/mol. The structure 10 was found to be lower in energy than 2-butyl cation 13 by 34.4 kcal/mol.

Journal Article↗

Acid-catalyzed isomerization of pivalaldehyde to methyl isopropyl ketone via a reactive protosolvated carboxonium ion intermediate.

Quantitative rearrangement of pivalaldehyde to methyl isopropyl ketone is observed in acids such as trifluoromethanesulfonic acid, anhydrous HF, and trifluoroethyl alcohol-BF3 but not in trifluoroacetic acid. Studies in a mixture of trifluoroacetic acid and trifluoromethanesulfonic acid show that acids with H(o) < or = -11 are able to carry out complete isomerization. These results and density functional theory calculations at the B3LYP/6-31G level suggest that protonated pivalaldehyde undergoes further protosolvation at higher acidities to a reactive superelectrophilic species resulting in rearrangement. A mechanism for the pivalaldehyde rearrangement to methyl isopropyl ketone in strong protic acids involving a reactive protosolvated superelectrophilic intermediate is suggested. Aspects of the related mechanism of the reaction with isobutane with CO in HF/BF3 medium leading to methyl isopropyl ketone are also discussed.

Journal Article↗

Asymmetric synthesis of trifluoromethylated allylic amines using alpha,beta-unsaturated N-tert-butanesulfinimines.

[reaction: see text]. The trifluoromethide ion generated in situ from TMSCF(3) and TBAT (tetrabutylammonium triphenyldifluorosilicate), as well as TMAF (tetramethylammonium fluoride), adds to the alpha,beta-unsaturated N-tert-butanesulfinimines exclusively in a 1,2 fashion with high diastereoselectivities, affording the first examples of chiral trifluoromethylated allylic amines.

Journal Article↗

Poly(p-hydroxystyrene) grafted polystyrene nanospheres: excellent hosts for silver and ruthenium nanoparticles.

A novel approach is described for the preparation of surface functionalized micro- and nanobeads using one pot synthesis by a core-shell method. Monodisperse poly(p-hydroxystyrene) is successfully prepared by grafting the p-acetoxystyrene monomer during the last 30 min of the fabrication of polystyrene bead core by emulsifier-free emulsion polymerization followed by hydrolysis of the acetoxy group by a base. The size of the resulting beads is dictated mostly by the size of the core. Hydroxyl derivatized polystyrene microspheres have been found useful as a high surface area and stable support for anchoring catalytically active silver and ruthenium nanoparticles. The bead formation, surface functionalization, and coating with metal nanoparticles have been studied using scanning electron microscopy, transmission electron microscopy, energy dispersive x-ray spectrometry, Fourier transform infrared spectrometry, and Auger analysis.

Catalysis↗

Protonated and methylated dimethyl sulfoxide cations and dications. DFT/GIAO-MP2 NMR studies and comparison with experimental data.

Energies, electronic structures, and thermodynamics of protonated and methylated dimethyl sulfoxide (DMSO) cations and dications were calculated using the density functional theory (DFT) method. The O-protonated structure 2 was found to be 37.0 kcal/mol more stable than the S-protonated 3. For diprotonated DMSO dication, the O, O-diprotonated form 6 was found to be the global minimum, more stable by 20.8 kcal/mol than O,S-diprotonated 7. Interestingly, for dimethylated DMSO dication, O,O-dimethylated 11 and O,S-dimethylated 12 are isoenergetic. (13)C, (17)O, and (33)S NMR chemical shifts of the cations and dications were calculated using the GIAO-MP2 method and compared with the available experimental data.

Journal Article↗

A facile stereocontrolled synthesis of anti-alpha-(trifluoromethyl)-beta-amino alcohols.

A short stereocontrolled preparation of anti-alpha-(trifluoromethyl)-beta-amino alcohols is described, involving an initial CF(3) transfer to cinnamaldehyde and a one-step, three-component condensation of 3,3,3-trifluorolactic aldehyde, an alkenyl (aryl) boronic acid, and an amine. Applying this methodology to chiral 3,3,3-trifluorolactic aldehyde allowed us to generate an amino alcohol enantioselectively in 92% ee.

Acrolein↗

Electrochemical preparation of tris(tert-butyldimethylsilyl)cyclopropene and its hydride abstraction to tris(tert-butyldimethylsilyl)cyclopropenium tetrafluoroborate.

Electrochemical reductive tert-butyldimethylsilylation of tetrachlorocyclopropene to 1,2,3-tris(tert-butyldimethylsilyl)cyclopropene, a potential strained precursor for Diels-Alder and related cycloaddition reactions, is described. By hydride abstraction with nitrosonium tetrafluoroborate, 1,2,3-tris(tert-butyldimethylsilyl)cyclopropene is ionized quantitatively to Hückeloid 2pi aromatic tris(tert-butyldimethylsilyl)cyclopropenium tetrafluoroborate.

Journal Article↗

Helionitronium trication (NO2He3+) and helionitrosonium trication (HeNO3+).

The structures and stabilities of helionitronium trication NO2He3+ and helionitrosonium trication HeNO3+ were calculated at the ab initio MP2/6-31G** level. The Cs symmetry structure was found to be a minimum for the NO2He3+ trication, which is isoelectronic and isostructural with the previously studied NO2H2+. Dissociation of the Cs symmetry structure into NO+ and OHe2+ is thermodynamically preferred by 183.1 kcal/mol (1 cal = 4.18 J), although a kinetic barrier of 12.4 kcal/mol has to be overcome. The Cinfinityv symmetry structure was also found to be a minimum for the HeNO3+ trication.

Journal Article↗

Calculated 11B-13C NMR chemical shift relationship in hypercoordinate methonium and boronium ions.

The boronium-carbonium continuum was extended to include hypercoordinated protonated methanes and their boron analogs. The 11B NMR chemical shifts of the hypercoordinated hydriodo boron compounds and the 13C NMR chemical shifts of the corresponding isoelectronic and isostructural carbocations were calculated by using the GIAO-MP2 method. The data show good linear correlation between 11B and 13C NMR chemical shifts, which indicates that the same factors that determine the chemical shifts of the boron nuclei also govern the chemical shifts of carbon nuclei of these hypercoordinated hydriodo compounds.

Bis-Trimethylammonium Compounds↗

Attempted hydrogen-deuterium exchange of the protio-trimethyloxonium dication (CH3)3OH2+, study of methylating ability of (CH3)3O+ in superacids and theoretical investigations.

Attempted hydrogen-deuterium exchange of trimethyloxonium ion, (CH3)3O+ with excess of 1:1 (2)HF/SbF5 superacid at -30 degreesC over a period of 30 days showed no exchange. Theoretical calculations at the MP2/6-31G** level are in accord with the lack of hydrogen-deuterium exchange in the methyl group of the (CH3)3O+ cation as protonation (protosolvation) prefers the oxygen lone pair of electrons, instead of a C---H bond. Methylation of aromatics with the (CH3)3O+CF3SO3- in CF3SO3H and 2CF3SO3H:B(O3SCF3)3 was also studied. Whereas in triflic acid no alkylation was observed, in triflatoboric acid, a powerful superacid, alkylation takes place, indicating protolytic activation of the trimethyloxonium ion.

Journal Article↗

Electrophilic nitration of alkanes with nitronium hexafluorophosphate.

Nitration of alkanes such as methane, ethane, propane, n-butane, isobutane, neopentane, and cyclohexane was carried out with nitronium hexafluorophosphate in methylene chloride or nitroethane solution. Nitration of methane, albeit in poor yield, required protolytic activation of the nitronium ion. The results indicate direct electrophilic insertion of NO2+ into C-H and C-C final sigma-bonds.

Journal Article↗

Comparison of structures and energies of CH5(2+*) with CH4(+*) and their possible role in superacidic methane activation.

Contrary to previous theoretical studies at the UHF/6-31G* level, the methonium radical dication CH5(2+) is not a Cs symmetrical structure with a 2e-3c bond but a C2v symmetrical structure 1 with two 2e-3c bonds (at the UHF/6-31G**, UMP2/6-31G**, and UQCISD(T)/6-311G** levels). The Cs symmetrical structure is not even a minimum at the higher level of calculations. The four hydrogen atoms in 1 are bonded to the carbon atom by two 2e-3c bonds and the fifth hydrogen atom by a 2e-2c bond. The unpaired electron of 1 is located in a formal p-orbital (of the sp2-hybridized carbon atom) perpendicular to the plane of the molecule. Hydrogen scrambling in 1 is however extremely facile, as is in other C1 cations. It is found that the protonation of methane to CH5(+) decreases the energy for subsequent homolytic cleavage resulting in the exothermic (24.1 kcal/mol) formation of CH4(+*). Subsequent reaction with neutral methane while reforming CH5(+) gives the methyl radical enabling reaction with excess methane to ethane and H2. The overall reaction is endothermic by 11.4 kcal/mol, but offers under conditions of oxidative removal of H2 an alternative to the more energetic carbocationic conversion of methane.

Journal Article↗

'O' set connector system in CAPD.

51 CAPD patients (age 55.5 +/- 14.5 yrs, 35 male, 16 female) on CAPD using 'O' set were studied retrospectively during the period January 1993 to April 1995. Etiology of ESRD was Diabetic nephropathy-25(49%) and the other causes-26(51%). The total duration of observation on 'O' set was 553 patient months, the mean duration was 10.8 +/- 6.1 months. 24 patients (47%) developed total of 30 episodes of peritonitis. The incidence of peritonitis was 18.4 patient months per episode of peritonitis. The organisms responsible for peritonitis were Gram positive-6(20%), Gram negative-3(10%), Fungal-1(3.3%), Mycobacterial-1(3.3%), Eosinophilic-1(3.3%), Sterile-12(40%) and unknown-6(20%) 2 patients of bacterial peritonitis and a patient with tuberculous peritonitis died while rest of the patients responded favourably to antibiotics. 13(52%) diabetic patients and 11(42%) non-diabetic patients had peritonitis (p-NS) and the peritonitis rates in diabetics and non diabetics were 18.3 and 18.6 patient months per episode respectively (p-NS). Exit site infection was seen in 5 patients (10%) (Staph aureus-4, Enterococci-1) and all responded to antibiotic therapy. 7 patients had total of 10 episodes of symptomatic accidental intraperitoneal sodium hypochlorite instillation, none had any long term adverse effects. The 'O' set procedure was done by self in 10(20%) and by others in 41(80%) cases. The peritonitis rates when performed by self and others were 18.5 and 18.4 patient months per episode respectively (p-NS). The cost of being on CAPD using 'O' set, Y-bag and twin bag were Rs. 1,50,000, 2,10,000 and 3,72,000 per annum respectively and cost of maintenance haemodialysis was 1,36,800 per annum. The cost of CAPD using 'O' set was comparable to that of maintenance haemodialysis. The 'O' set connector system in CAPD is found to be safe, cost effective and efficient.

Adolescent↗

4-Spiro[2.n]alkyl cations and their rearrangements.

A series of 4-spiro[2.n]alkanols, where n = 3-7, were ionized in either FSO3H x SbF5/SO2ClF or SbF5/SO2ClF at -78 degrees C and -130 degrees C. The resulting solutions were studied by 13C NMR spectroscopy over the temperature range of -130 degrees C to -10 degrees C. The 4-spiro[2.5]octanol gave the expected static 4-spiro[2.5]octyl cation, which can be considered as a long-lived secondary cyclohexyl cation stabilized by an adjacent spirocyclopropane ring. The same spiro[2.5]octyl cation was also obtained by ionization of isomeric bicyclo[4.2.0]octan-1-ol and bicyclo[4.1.0]heptyl-1-methanol. The static spiro[2.5]-octyl cation was found to rearrange to the equilibrating 1-bicyclo[3.3.0]octyl cation above -10 degrees C. On the other hand, the 4-spiro[2.4]heptanol gave the rearranged 1-methylcyclohexenyl cation. The spiro[2.6]nonanol gave directly the equilibrating 1-bicyclo[4.3.0]nonyl cation. The other 4-spiro[2.n]-alkanols (n = 3 and 7) gave unidentifiable polymeric products. The ionization of 3-spirocyclopropyl-2-norbornanol yields only the rearranged 2-methylbicyclo[3.2.1]oct-3-ene-2-yl cation.

Alcohols↗