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271.
Oxygenated volatile organic compounds (OVOCs) influence the oxidative properties of the atmosphere, and their transport from the ground may occur by scavenging by the HNO(3)-rich supercooled water droplets found in polluted convective air masses. With infrared spectroscopy, we have studied the interactions of four typical atmospheric OVOCs (acetone, hydroxyacetone, acetaldehyde and benzaldehyde) with model surfaces of water ice and of trihydrated nitric acid (NAT) ice. We show that these molecules weakly adsorb on water ice and NAT by hydrogen bonding. No chemical reaction occurs between the molecules and the NAT substrate, the OVOCs remaining intact when in contact with hydrated HNO(3) in atmospheric ice clouds. 相似文献
272.
Conformational landscape of neutral and ionized n-butylbenzene has been examined. Geometries have been optimized at the B3LYP/6-31G(d), B3LYP/6-31+G(d,p), B3LYP-D/6-31+G(d,p), B2PLYP/6-31+G(d,p), B2PLYP-D/6-31+G(d,p), B97-D/6-31+G(d,p), and M06-2X/6-31+G(d,p) levels. This study is complemented by energy computations using 6-311++G(3df,2p) basis set and CBS-QB3 and G3MP2B3 composite methods to obtain accurate relative enthalpies. Five distinguishable conformers have been identified for both the neutral and ionized systems. Comparison with experimentally determined rotational constants shows that the best geometrical parameters are provided by B3LYP-D and M06-2X functionals, which include an explicit treatment of dispersion effects. Composite G3MP2B3 and CBS-QB3 methods, and B2PLYP-D, B3LYP-D, B97-D, and M06-2X functionals, provide comparable relative energies for the two sets of neutral and ionized conformers of butyl benzene. An exception is noted however for conformer V(+) the stability of which being overestimated by the B3LYP-D and B97-D functionals. The better stability of neutral conformers I, III, and IV, and of cation I(+) , demonstrated by our computations, is in perfect agreement with conclusions based on micro wave, fluorescence, and multiphoton ionization experiments. 相似文献
273.
Dr. Xuewei Zhang Dr. Andrés F. Cardozo Si Chen Dr. Wenjing Zhang Dr. Carine Julcour Dr. Muriel Lansalot Dr. Jean‐François Blanco Dr. Florence Gayet Prof. Henri Delmas Prof. Bernadette Charleux Dr. Eric Manoury Dr. Franck D'Agosto Prof. Rinaldo Poli 《Chemistry (Weinheim an der Bergstrasse, Germany)》2014,20(47):15505-15517
Water‐borne phosphine‐functionalized core‐cross‐linked micelles ( CCM ) consisting of a hydrophobic core and a hydrophilic shell were obtained as stable latexes by reversible addition–fragmentation chain transfer (RAFT) in water in a one‐pot, three‐step process. Initial homogeneous aqueous‐phase copolymerization of methacrylic acid (MAA) and poly(ethylene oxide) methyl ether methacrylate (PEOMA) is followed by copolymerization of styrene (S) and 4‐diphenylphosphinostyrene (DPPS), yielding P(MAA‐co‐PEOMA)‐b‐P(S‐co‐DPPS) amphiphilic block copolymer micelles ( M ) by polymerization‐induced self‐assembly (PISA), and final micellar cross‐linking with a mixture of S and diethylene glycol dimethacrylate. The CCM were characterized by dynamic light scattering and NMR spectroscopy to evaluate size, dispersity, stability, and the swelling ability of various organic substrates. Coordination of [Rh(acac)(CO)2] (acac=acetylacetonate) to the core‐confined phosphine groups was rapid and quantitative. The CCM and M latexes were then used, in combination with [Rh(acac)(CO)2], to catalyze the aqueous biphasic hydroformylation of 1‐octene, in which they showed high activity, recyclability, protection of the activated Rh center by the polymer scaffold, and low Rh leaching. The CCM latex gave slightly lower catalytic activity but significantly less Rh leaching than the M latex. A control experiment conducted in the presence of the sulfoxantphos ligand pointed to the action of the CCM as catalytic nanoreactors with substrate and product transport into and out of the polymer core, rather than as a surfactant in interfacial catalysis. 相似文献
274.
Carine Note Joachim Koetz Sabine Kosmella Brigitte Tiersch 《Colloid and polymer science》2005,283(12):1334-1342
This paper is focused on the synthesis and characterization of hydrophobically modified polyelectrolytes and their use as
reducing as well as stabilizing agents for the formation of gold nanoparticles. Commercially available poly(acrylic acid)
has been hydrophobically modified with various degrees of grafting of butylamine introduced randomly along the chain. Different
analytical methods are performed, i.e., IR and 1H-NMR spectroscopy in combination with elemental analysis to determine the degree of grafting. The modified polymers can successfully
be used for the controlled single-step synthesis and stabilization of gold nanoparticles. The process of nanoparticle formation
is investigated by means of UV-vis spectroscopy. The size and shape of the particles obtained in the presence of unmodified
or modified polyelectrolytes are characterized by dynamic light scattering, zeta potential measurements and transmission electron
microscopy. The polyelectrolytes were involved in the crystallization process of the nanoparticles, and in the presence of
hydrophobic microdomains at the particle surface, a better stabilization at higher temperature can be observed. 相似文献
275.
Malonate anion traps the [RP-W(CO)5] bridge of 7-phosphanorbornadiene complexes 1–3 to give functional secondary phosphine complexes [RP(H)-CH(CO2Et)2]W(CO)5 ( 7–9 ). Metalation of these complexes by NaH in THF occurs at the malonic CH group, but the alkylation of the resulting carbanions preferentially takes place at phosphorus. When R stands for β-chloroethyl, the corresponding carbanion cyclizes to give the functional phosphirane complex 11 . © 2004 Wiley Periodicals, Inc. Heteroatom Chem 15:258–262, 2004; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/hc.20014 相似文献