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41.
42.
Raul Aguayo Felipe Arias Alvaro Cañete Carolina Zuñiga Enrique A. Castro Paulina Pavez José G. Santos 《国际化学动力学杂志》2013,45(3):202-211
The reactions of the title compounds with phenoxides, secondary alicyclic (SA) amines, and pyridines, in 44 wt% ethanol–water, at 25°C and an ionic strength of 0.2 M, were subjected to kinetic and product studies. From analytical techniques (HPLC and NMR), two pathways were detected (nucleophilic attack at the phosphoryl center and at the C‐1 aromatic carbon) for the reactions of all the nucleophiles with the phosphate ( 2 ) and for the pyridinolysis of the thionophosphate ( 1 ). Only aromatic nucleophilic substitution was found for the reactions of 1 with phenoxides and SA amines. For the dual reactions, the nucleophilic rate constants (kN) were separated in two terms: $k_{\rm N}^{\rm P}$ and $k_{\rm N}^{{\rm Ar}}$, which are the rate constants for the corresponding electrophilic centers. The absence of a break in the Brønsted‐type plots for the attack at P is consistent with concerted mechanisms. The Brønsted slopes, βAr 0.32–0.71, for the attack at the aromatic C‐1, are in agreement with stepwise mechanisms where formation of a Meisenheimer complex is the rate‐determining step. © 2013 Wiley Periodicals, Inc. Int J Chem Kinet 45: 202–211, 2013 相似文献
43.
Chargaff’s second parity rule (CSPR) asserts that the frequencies of short polynucleotide chains are the same as those of
the complementary reversed chains. Up to now, this hypothesis has only been observed empirically and there is currently no
explanation for its presence in DNA strands. Here we argue that CSPR is a probabilistic consequence of the reverse complementarity
between paired strands, because the Gibbs distribution associated with the chemical energy between the bonds satisfies CSPR.
We develop a statistical test to study the validity of CSPR under the Gibbsian assumption and we apply it to a large set of
bacterial genomes taken from the GenBank repository. 相似文献
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Castro Jorge Fernández Francisco Olivares Felipe Berríos Cristhian Garrido-Ramírez Elizabeth Blanco Elodie Escalona Néstor Aspée Alexis Barrías Pablo Ureta-Zañartu M. Soledad 《Journal of Solid State Electrochemistry》2021,25(1):117-131
Journal of Solid State Electrochemistry - 2,4,6-trichlorophenol (TCP) is a persistent pollutant introduced in water by industrial processes and pesticides. We have studied the electrooxidation of... 相似文献
48.
Felipe J. Llanes-Estrada Tim Van Cauteren Ángel P. Martín 《The European Physical Journal C - Particles and Fields》2007,51(4):945-952
We study the multiple solutions of the truncated propagator Dyson–Schwinger equation for a simple fermion theory with Yukawa
coupling to a scalar field. Upon increasing the coupling constant g, other parameters being fixed, more than one non-perturbative
solution breaking chiral symmetry becomes possible and we find these numerically. These “recurrences” appear as a mechanism
to generate different fermion generations as quanta of the same fundamental field in an interacting field theory, without
assuming any composite structure. The number of recurrences or flavors is reduced to the question of the value of the Yukawa
coupling, and it has no special profound significance in the standard model. The resulting mass function can have one or more
nodes and the measurement that potentially detects them can be thought of as a collider-based test of the virtual dispersion
relation for the charged lepton member of each family. This requires the three independent measurements of the charged lepton’s energy,
three-momentum and off-shellness. We illustrate how this can be achieved for the (more difficult) case of the tau lepton.
PACS 12.15.Ff; 11.30.Rd 相似文献
49.
Reglucosylation of the Benzoxazinoid DIMBOA with Inversion of Stereochemical Configuration is a Detoxification Strategy in Lepidopteran Herbivores 总被引:1,自引:0,他引:1 下载免费PDF全文
Felipe C. Wouters Dr. Michael Reichelt Dr. Gaétan Glauser Eugen Bauer Dr. Matthias Erb Prof. Jonathan Gershenzon Dr. Daniel G. Vassão 《Angewandte Chemie (International ed. in English)》2014,53(42):11320-11324
Benzoxazinoids are chemical defenses against herbivores and are produced by many members of the grass family. These compounds are stored as stable glucosides in plant cells and require the activity of glucosidases to release the corresponding toxic aglucones. In maize leaves, the most abundant benzoxazinoid is (2R)‐DIMBOA‐Glc, which is converted into the toxic DIMBOA upon herbivory. The ways in which three Spodoptera species metabolize this toxin were investigated. (2S)‐DIMBOA‐Glc, an epimer of the initial plant compound, was observed in the insect frass, and the associated glucosyltransferase activity was detected in the insect gut tissue. The epimeric glucoside produced by the insect was found to be no longer reactive towards plant glucosidases and thus cannot be converted into a toxin. Stereoselective reglucosylation thus represents a detoxification strategy in Spodoptera species that might help to explain their success as agricultural pests on benzoxazinoid‐containing crops. 相似文献
50.
Florian A. Mann Niklas Herrmann Felipe Opazo Sebastian Kruss 《Angewandte Chemie (International ed. in English)》2020,59(40):17732-17738
Single‐walled carbon nanotubes (SWCNTs) are a 1D nanomaterial that shows fluorescence in the near‐infrared (NIR, >800 nm). In the past, covalent chemistry was less explored to functionalize SWCNTs as it impairs NIR emission. However, certain sp3 defects (quantum defects) in the carbon lattice have emerged that preserve NIR fluorescence and even introduce a new, red‐shifted emission peak. Here, we report on quantum defects, introduced using light‐driven diazonium chemistry, that serve as anchor points for peptides and proteins. We show that maleimide anchors allow conjugation of cysteine‐containing proteins such as a GFP‐binding nanobody. In addition, an Fmoc‐protected phenylalanine defect serves as a starting point for conjugation of visible fluorophores to create multicolor SWCNTs and in situ peptide synthesis directly on the nanotube. Therefore, these quantum defects are a versatile platform to tailor both the nanotube's photophysical properties as well as their surface chemistry. 相似文献