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The rotational spectra of the two monosubstituted 13C isotopologues of the anti conformer of ethanol have been measured between 80–800 GHz using three different spectrometers at the Cologne Laboratory Astrophysics group. The dataset was constrained for fitting with a standard Watson-S reduction Hamiltonian by rejecting transitions from high-lying states showing significant perturbation with the gauche states and by averaging some small methyl torsional splits. This treatment is compatible with the needs for a first astrophysical research for which an appropriate set of predictions is given.  相似文献   
2.
The synthesis and characterization of photoactive hybrid materials based on [Ru(bpy)3]2+ physically adsorbed within the channels of mesoporous MCM-41 silica nanoparticles is presented. A set of photoactive mesostructured hybrids with different guest loading has been prepared and characterized by X-ray diffraction, High Resolution Transmission Electron Microscopy, volumetric analyses, Diffuse Reflectance UV-Vis and Photoluminescence spectroscopies and lifetime measurements. The hybrids synthesis and the washing procedures, performed to investigate the host-guest interaction and the stability of the complex within the mesopores, didn??t affect the integrity of the structure and morphology of MCM-41 nanoparticles. The dispersion of [Ru(bpy)3]2+ within the channels varied depending on the loading value and this is reflected in the different and peculiar photoluminescence features of the resulting hybrid materials. Photoluminescence spectroscopy evidenced that the use of MCM-41 nanoparticles ensures a better dispersion of the complex within the mesopores, if compared with traditional MCM-41. Further studies are in progress to investigate the interesting and promising features exhibited by such photoactive systems for advanced applications of electrochemiluminescence in optoelectronics and diagnostics.  相似文献   
3.
Bright photoluminescent mesostructured silica nanoparticles were synthesized by the incorporation of fluorescent cyanine dyes into the channels of MCM-41 mesoporous silica. Cyanine molecules were introduced into MCM-41 nanoparticles by physical adsorption and covalent grafting. Several photoluminescent nanoparticles with different organic loadings have been synthesized and characterized by X-ray powder diffraction, high resolution transmission electron microscopy and nitrogen physisorption porosimetry. A detailed photoluminescence study with the analysis of fluorescence lifetimes was carried out to elucidate the cyanine molecules distribution within the pores of MCM-41 nanoparticles and the influence of the encapsulation on the photoemission properties of the guests. The results show that highly stable photoluminescent hybrid materials with interesting potential applications as photoluminescent probes for diagnostics and imaging can be prepared by both methods.  相似文献   
4.
Density functional and MP2 calculations with extended basis sets were performed on the species participating in both the previously suggested and a newly proposed mechanisms of partial dechlorination of chloropicrin by simple sulfur species, both in gas phase and in a simulated water environment. Thermochemistry of both mechanisms in the gas phase was also studied using the chemical models G3 and G4. It is shown that the previously proposed reductive dehalogenation is not thermodynamically feasible at room temperature, as it should be according to the experimental evidence. Although inclusion of the solvent improves the results with respect to gas phase, the thermodynamics of the proposed mechanism by Zheng et al. is still unfavorable for obtaining the experimental products. An alternative mechanism is then proposed, involving the formation of HSCl, which is the intermediate that then undergoes redox reactions. Such a mechanism is exothermic and spontaneous, according to the computational results, and produces elementary sulfur in agreement with the experimental facts.  相似文献   
5.
Currently, many microbial infections have the potential to become lethal owing to the development of antimicrobial resistance by means of different mechanisms and mainly on the basis of the fact that many drugs are unable to reach therapeutic levels in the target sites. This requires the use of high doses and frequent administrations, causing adverse side effects or in some cases toxicity. The use of nanoparticle systems could help overcome such problems and increase drug efficacy. In the present study, we developed a new drug delivery system based on the use of biopolymeric nanovectors loaded with tobramycin (Tb), which is the standard antibiotic for the treatment of Cystic Fibrosis-associated P. aeruginosa lung infections. Tb-loaded biopolymeric nanoparticles composed by dextran sulfate (DS) and chitosan (CS) were prepared by ionotropic gelation. We optimized drug entrapment in DS/CS nanoparticles, obtaining particles of 170 nm and with a drug loading of 400 µg Tb/mg of nanoparticles. In accord with in vitro release experiments, such preparations were able to release approximately 25 % of their cargo in 60 h. In vitro, the antimicrobial efficacy of the drug delivery system on P. aeruginosa biofilm was tested and compared to the effects of free drug revealing that this formulation can reduce the viability of P. aeruginosa biofilms for 48 h with a single-dose administration.  相似文献   
6.
Methods for the rapid determination of benzo(a)pyrene rest mainly on the separation of the substance by thin-layer chromatography, followed by its spectrophotometric or fluorimetric estimation. Published papers seldom state the recovery results. It is shown here that, with the aid of radioactive benzo(a)pyrene tracer and liquid scintillation spectrometry, recovery becomes poorer and less reproducible as the sample decreases in size (to less than 1 mug benzo(a)pyrene). Coupling fluorimetry with liquid scintillation spectrometry provides an easy means of reducing this common source of error.  相似文献   
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