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931.
Brunsen A Calvo A Williams FJ Soler-Illia GJ Azzaroni O 《Langmuir : the ACS journal of surfaces and colloids》2011,27(8):4328-4333
The design of hybrid mesoporous materials incorporating polymeric assemblies as versatile functional units has become a very fertile research area offering major opportunities for controlling molecular transport through interfaces. However, the creation of such functional materials depends critically on our ability to assemble polymeric units in a predictable manner within mesopores with dimensions comparable to the size of the macromolecular blocks themselves. In this work, we describe for the first time the manipulation of the molecular transport properties of mesoporous silica thin films by the direct infiltration of polyelectrolytes into the inner environment of the 3D porous framework. The hybrid architectures were built up through the infiltration-electrostatic assembly of polyallylamine (PAH) on the mesopore silica walls, and the resulting systems were studied by a combination of experimental techniques including ellipso-porosimetry, cyclic voltammetry and X-ray photoelectron spectroscopy, among others. Our results show that the infiltration-assembly of PAH alters the intrinsic cation-permselective properties of mesoporous silica films, rendering them ion-permeable mesochannels and enabling the unrestricted diffusion of cationic and anionic species through the hybrid interfacial architecture. Contrary to what happens during the electrostatic assembly of PAH on planar silica films (quantitative charge reversal), the surface charge of the mesoporous walls is completely neutralized upon assembling the cationic PAH layer (i.e., no charge reversal occurs). We consider this work to have profound implications not only on the molecular design of multifunctional mesoporous thin films but also on understanding the predominant role of nanoconfinement effects in dictating the functional properties of polymer-inorganic hybrid nanomaterials. 相似文献
932.
Quiroga SL Almaraz AE Amorebieta VT Perissinotti LL Olabe JA 《Chemistry (Weinheim an der Bergstrasse, Germany)》2011,17(15):4145-4156
The nitroprusside ion [Fe(CN)(5)NO](2-) (NP) reacts with excess HS(-) in the pH range 8.5-12.5, in anaerobic medium ("Gmelin" reaction). The progress of the addition process of HS(-) into the bound NO(+) ligand was monitored by stopped-flow UV/Vis/EPR and FTIR spectroscopy, mass spectrometry, and chemical analysis. Theoretical calculations were employed for the characterization of the initial adducts and reaction intermediates. The shapes of the absorbance-time curves at 535-575 nm depend on the pH and concentration ratio of the reactants, R=[HS(-)]/[NP]. The initial adduct [Fe(CN)(5)N(O)SH](3-) (AH, λ(max) ≈570 nm) forms in the course of a reversible process, with k(ad)=190±20 M(-1)s(-1) , k(-ad)=0.3±0.05 s(-1) . Deprotonation of AH (pK(a)=10.5±0.1, at 25.0 °C, I=1 M), leads to [Fe(CN)(5)N(O)S](4-) (A, λ(max)=535 nm, ε=6000±300 M(-1) cm(-1) ). [Fe(CN)(5)NO](.)(3-) and HS(2)(.)(2-) radicals form through the spontaneous decomposition of AH and A. The minor formation of the [Fe(CN)(5)NO](3-) ion equilibrates with [Fe(CN)(4)NO](2-) through cyanide labilization, and generates the "g=2.03" iron-dinitrosyl, [Fe(NO)(2)(SH)(2)](-) , which is labile toward NO release. Alternative nucleophilic attack of HS(-) on AH and A generates the reactive intermediates [Fe(CN)(5)N(OH)(SH)(2)](3-) and [Fe(CN)(5)N(OH)(S)(SH)](4-) , respectively, which decompose through multielectronic nitrosyl reductions, leading to NH(3) and hydrogen disulfide, HS(2)(-) . N(2)O is also produced at pH≥11. Biological relevance relates to the role of NO, NO(-) , and other bound intermediates, eventually able to be released to the medium and rapidly trapped by substrates. Structure and reactivity comparisons of the new nitrososulfide ligands with free and bound nitrosothiolates are provided. 相似文献
933.
Marta Abrantes Isabel S. GonçalvesMartyn Pillinger Carolina VurchioFranca M. Cordero Alberto Brandi 《Tetrahedron letters》2011,52(52):7079-7082
The inorganic-organic hybrid material {[MoO3(bipy)][MoO3(H2O)]}n (bipy = 2,2′-bipyridine) can be used as a water-tolerant catalyst for the oxidation of secondary amines under mild conditions using either urea hydrogen peroxide (UHP) or tert-butylhydroperoxide (TBHP) as the oxidant. Under optimized reaction conditions (2 mol % catalyst, 3-4 equiv TBHP, CH2Cl2 as the solvent, 40 °C), the corresponding nitrones were obtained with different efficiency depending on the nature of the cyclic or acyclic amine used. 相似文献
934.
This paper describes the heterogenization of a tetramethylmonocyclopentadienyl titanium (IV) trichloride complex, [Ti(η5-C5HMe4)Cl3] onto mesoporous MCM-41. Its immobilization has been performed via a straightforward grafting process of the organometallic precursor in the pores of an MCM-41 host material and by reaction with previously organomodified MCM-41 material with a hydroxyl triazine based compound. Applying all-silica MCM-41 hosts, stable and heterogeneous liquid-phase epoxidation catalysts are obtained. Powder X-ray diffraction and nitrogen adsorption-desorption analysis indicated that the structural integrity of the support has been preserved during the titanium complex immobilization. These materials have been also extensively characterized using diffuse reflectance UV-vis, 13C and 28Si MAS NMR and FT-IR spectroscopy. With these techniques the strong adsorption of the intact catalytic complex within an all-silica MCM-41 host is demonstrated. These materials have been tested as catalyst for the epoxidation of aliphatic and aromatic alkenes with TBHP as oxidant exhibiting a significant selectivity toward the epoxide with negligible leaching of titanium species. The conversion values are moderated, being the olefin trend reactivity 1-octene > cyclohexene > styrene. 相似文献
935.
Alejandra Zapata Diane P. Mclean José H. Delao Hernández Angel C. de Dios Xueqing Song George Eng 《应用有机金属化学》2011,25(10):777-782
A series of triorganotin chrysanthemumates (2,2‐dimethyl‐3‐(2‐methyl‐1‐propenyl)cyclopropanecarboxylates) (R3SnO2CC9H15) where R = methyl, ethyl, n‐butyl and phenyl was synthesized. The solid state structures were deduced using infrared (IR) and Mössbauer spectroscopies. The spectroscopic results indicated that all the compounds were found to be five‐coordinated in the solid state. Based on the NMR results, all the compounds are tetrahedral in solution. Larvicidal activities of the compounds were evaluated against the second instar stage of Aedes aegypti, Anopheles stephensi and Culex pipiens quinquefasciatus mosquitoes. The toxicity results indicated that these compounds of triorganotins were effective larvicides against all three species of larvae. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
936.
Cancer chemotherapy has been used since the early 1950s and still remains one the major therapeutic options for many malignant tumours. A major obstacle to successful cancer chemotherapy is drug resistance. Frequently resistance is intrinsic to the cancer, but as therapy becomes more effective, acquired resistance has also become more frequent. One form of resistance, named multidrug resistance (MDR), is responsible for the failure of tumours to respond to a wide spectrum of chemotherapeutic agents. The in vivo monitoring of MDR could assist in the selection of patients for therapy and can avoid ineffective and potentially toxic treatments. Therefore, methods for functionally interrogating MDR transport activity have been sought, namely single photon emission computed tomography (SPECT) and positron emission tomography (PET). Cationic radiotracers originally developed as SPECT myocardial imaging agents, such as [(99m)Tc(MIBI)(6)](+) and [(99m)Tc(tetrofosmin)(2)O(2)](+), are used for both early cancer detection and non-invasive monitoring of the tumour MDR transport function. With the ultimate goal of obtaining better performing radioprobes for MDR imaging, other metal-based complexes and/or small molecules have also been synthesized and biologically evaluated. In this perspective we will report on the chemical efforts made to find metalloprobes for in vivo monitoring of MDR by nuclear imaging techniques. The current knowledge on the biological mechanisms and proteins involved in tumour MDR will be also briefly presented, as its understanding is invaluable for the rational design and biological evaluation of new radioprobes. 相似文献
937.
Isabel García-Santos Jesús Sanmartín Ana M. García-Deibe Matilde Fondo Esther Gmez 《Polyhedron》2009,28(14):3055-3059
A linear trinuclear zinc complex was obtained when after refluxing 8-hydroxyquinoline-2-carboxaldehyde and 2-aminoethanol (in a 1:1 molar ratio) until the formation of the H2L ligand, a methanol solution of zinc acetate dihydrate was added. Reaction between Zn(OAc)2·2H2O and H2L, both in 3:2 or 4:2 ratios, yielded Zn3(HL)2(OAc)4. This latter could be crystallographically characterised, and rather surprisingly, the potentially tetradentate HL− is only acting as an O,N-donor, while two phenolate and four acetate bridges hold together the three zinc ions. A study of the luminescence properties in methanol solution showed that the quantum yield of Zn3(HL)2(OAc)4 (ΦF = 0.07) is slightly higher than that of 8-hydroxyquinoline-2-carboxaldehyde (ΦF = 0.06). 相似文献
938.
Improvement of microbial cell cultures oxygenation can be achieved by the increase of total air pressure, which increases
oxygen solubility in the medium. In this work, a pressurized bioreactor was used for Yarrowia lipolytica batch cultivation under increased air pressure from 1 to 6 bar. Cell growth was strongly enhanced by the pressure rise. Fivefold
and 3.4-fold increases in the biomass production and in specific growth rate, respectively, were observed under 6 bar. The
increase of oxygen availability caused the induction of the antioxidant enzyme superoxide dismutase, which indicates that
the defensive mechanisms of the cells against oxidative stress were effective and cells could cope with increased pressure.
The pregrowth of Y. lipolytica under increased pressure conditions did not affect the lipase production ability of the cells. Moreover, the extracellular
lipase activity increased 96% using a 5-bar air pressure instead of air at 1-bar pressure during the enzyme production phase.
Thus, air pressure increase in bioreactors is an effective mean of cell mass and enzyme productivity enhancement in bioprocess
based in Y. lipolytica cultures. 相似文献
939.
Feuerstein I Najam-ul-Haq M Rainer M Trojer L Bakry R Aprilita NH Stecher G Huck CW Bonn GK Klocker H Bartsch G Guttman A 《Journal of the American Society for Mass Spectrometry》2006,17(9):1203-1208
Over the past couple of years, proteomics pattern analysis has emerged as an effective method for the early diagnosis of diseases such as ovarian, breast, or prostate cancer, without identification of single biomarkers. MALDI-TOF MS, for example, offers a simple approach for fast and reliable protein profiling, especially by using carrier materials with various physical and chemical properties, in combination with a MALDI matrix. This approach is referred to as material-enhanced laser desorption/ionization (MELDI). In this paper, we report the development and application of derivatized carrier materials [cellulose, silica, poly(glycidyl methacrylate/divinylbenzene) (GMA/DVB) particles, and diamond powder] for fast and direct MALDI-TOF MS protein profiling. The applicability of MELDI for rapid protein profiling was evaluated with human serum samples. These carriers, having various hydrophobicities, resulted in characteristic mass fingerprints, even if all materials were derivatized with iminodiacetic acid (IDA) to yield an immobilized metal affinity chromatography (IMAC) functionality. Our study demonstrates that analyzing complex biological samples, such as human serum, by employing different MELDI carrier materials yielded type- and size-dependent performance variation. 相似文献
940.
Centeno SP López-Tocón I Arenas JF Soto J Otero JC 《The journal of physical chemistry. B》2006,110(30):14916-14922
Surface-enhanced Raman spectra (SERS) of pyrimidine recorded on a silver electrode have been analyzed on the basis of a resonant Raman (RR) process involving photoexcited charge transfer (CT) states of the metal-adsorbate surface complex. The main feature of the SERS of benzene and azine derivatives is the enhancement of the totally symmetric ring stretching mode 8a due to Franck-Condon contributions related to the CT transition. Although this behavior is observed in the SERS of pyrimidine, its spectrum is also characterized by the strong enhancement of the nontotally symmetric mode 8b. This peculiar feature can be explained only by the redistribution of the Franck-Condon factors between the 8ab pair of vibrations originated by the descent in symmetry occurring when pyrimidine is bonded to silver nanoclusters. This conclusion is a new evidence of the main role of the RR-CT enhancement mechanism in the SERS of aromatic molecules and shows once again the usefulness of the methodology developed by our group in order to analyze these complex spectra. 相似文献