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991.
B. J. Vieira M. C. Freitas A. F. Rodrigues A. M. G. Pacheco P. M. Soares 《Journal of Radioanalytical and Nuclear Chemistry》2007,271(2):377-385
Within an extensive survey of prevalent lower and higher plants in the Azores’ islands, with a view to their monitoring potential
for airborne elements at ground level, and then to an eventual use in evaluation routines for the archipelago, epiphytic lichens
were collected from Cryptomeria japonica (Japanese cedar) trunks all across Terceira and Santa Maria islands. After suitable procedures, thalli samples were put through
instrumental neutron activation analysis (INAA; k
0-variant) for elemental concentrations. Providing an overall view of micro-and trace-element levels in representative foliose-and
fruticose-type species, the data of high-level elements agree generally well for genera with distinct species, with a relatively
low interspecies variability. Principal-component analysis of the whole set of results discriminates clearly between two morphological
factors, corresponding to foliose and fruticose species, and likely among four major origins of elemental inputs: soil/dust
(two factors), sea spray and an antimony-related source. All things considered, and accounting for its availability and ubiquity,
Parmotrema bangii seems an adequate choice for further lichen-based, biomonitoring campaigns in the Azores archipelago. 相似文献
992.
Gessenildo Pereira Rodrigues Elizete Ventura Silmar Andrade do Monte Mario Barbatti 《Journal of computational chemistry》2016,37(7):675-683
The UV‐induced photochemistry of HCFC‐132b (CF2ClCH2Cl) was investigated by computing excited‐state properties with time‐dependent density functional theory (TDDFT), multiconfigurational second‐order perturbation theory (CASPT2), and coupled cluster with singles, doubles, and perturbative triples (CCSD(T)). Excited states calculated with TDDFT show good agreement with CASPT2 and CCSD(T) results, correctly predicting the main excited‐states properties. Simulations of ultrafast nonadiabatic dynamics in the gas phase were performed, taking into account 25 electronic states at TDDFT level starting in two different spectral windows (8.5 ± 0.25 and 10.0 ± 0.25 eV). Experimental data measured at 123.6 nm (10 eV) is in very good agreement with our simulations. The excited‐state lifetimes are 106 and 191 fs for the 8.5 and 10.0 eV spectral windows, respectively. Internal conversion to the ground state occurred through several different reaction pathways with different products, where 2Cl, C‐Cl bond breakage, and HCl are the main photochemical pathways in the low‐excitation region, representing 95% of all processes. On the other hand, HCl, HF, and C‐Cl bond breakage are the main reaction pathways in the higher excitation region, with 77% of the total yield. © 2015 Wiley Periodicals, Inc. 相似文献
993.
Bridging C−H Activation: Mild and Versatile Cleavage of the 8‐Aminoquinoline Directing Group 下载免费PDF全文
Martin Berger Rajan Chauhan Dr. Catarina A. B. Rodrigues Prof. Dr. Nuno Maulide 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(47):16805-16808
8‐Aminoquinoline has emerged as one of the most powerful bidentate directing groups in history of C?H activation within the last decade. However, cleavage of its robust amide bond has shown to be challenging in several cases, thus jeopardizing the general synthetic utility of the method. To overcome this limitation, we herein report a simple oxidative deprotection protocol. This transformation rapidly converts the robust amide to a labile imide, allowing subsequent cleavage in a simple one‐pot fashion to rapidly access carboxylic acids or amides as final products. 相似文献
994.
Maria Inês F. Mota José Miguel Loureiro Alírio E. Rodrigues 《Separation & Purification Reviews》2016,45(3):227-259
Lignin is an underexploited side-stream of pulp and paper industry and biorefineries, being used for energy production at mill site or as low value material for dispersants or binding applications. However, an integrated process of reaction and separation can be implemented for the production of high added-value monomeric phenolic chemicals such as vanillin and syringaldehyde. In this review, the main research advances in the recovery of vanillin and syringaldehyde resulting from oxidation of lignin are addressed, covering various separation methodologies namely liquid-liquid extraction, supercritical fluid extraction, distillation, crystallization, membrane separation, and adsorption. Studies in this area started in the early years of the 20th century, but in the last decades several processes have been suggested, mainly for vanillin separation. Finding the ultimate industrially feasible process is still a necessary task and this review points out the most promising technologies and sequence of processes. 相似文献
995.
From Complex Natural Products to Simple Synthetic Mimetics by Computational De Novo Design 下载免费PDF全文
Lukas Friedrich Dr. Tiago Rodrigues Claudia S. Neuhaus Dr. Petra Schneider Prof. Dr. Gisbert Schneider 《Angewandte Chemie (International ed. in English)》2016,55(23):6789-6792
We present the computational de novo design of synthetically accessible chemical entities that mimic the complex sesquiterpene natural product (?)‐Englerin A. We synthesized lead‐like probes from commercially available building blocks and profiled them for activity against a computationally predicted panel of macromolecular targets. Both the design template (?)‐Englerin A and its low‐molecular weight mimetics presented nanomolar binding affinities and antagonized the transient receptor potential calcium channel TRPM8 in a cell‐based assay, without showing target promiscuity or frequent‐hitter properties. This proof‐of‐concept study outlines an expeditious solution to obtaining natural‐product‐inspired chemical matter with desirable properties. 相似文献
996.
Chemical Modification in the Design of Immobilized Enzyme Biocatalysts: Drawbacks and Opportunities 下载免费PDF全文
Nazzoly Rueda Jose C. S. dos Santos Claudia Ortiz Rodrigo Torres Oveimar Barbosa Rafael C. Rodrigues Ángel Berenguer‐Murcia Roberto Fernandez‐Lafuente 《Chemical record (New York, N.Y.)》2016,16(3):1436-1455
Chemical modification of enzymes and immobilization used to be considered as separate ways to improve enzyme properties. This review shows how the coupled use of both tools may greatly improve the final biocatalyst performance. Chemical modification of a previously immobilized enzyme is far simpler and easier to control than the modification of the free enzyme. Moreover, if protein modification is performed to improve its immobilization (enriching the enzyme in reactive groups), the final features of the immobilized enzyme may be greatly improved. Chemical modification may be directed to improve enzyme stability, but also to improve selectivity, specificity, activity, and even cell penetrability. Coupling of immobilization and chemical modification with site‐directed mutagenesis is a powerful instrument to obtain fully controlled modification. Some new ideas such as photoreceptive enzyme modifiers that change their physical properties under UV exposition are discussed. 相似文献
997.
This work shows how the nanostructuration of ionic liquids (ILs) governs the glass and melting transitions of the bistriflimide imidazolium‐based [CnC1im][NTf2] and [CnCnim][NTf2] series, which highlights the trend shift that occurs at the critical alkyl size (CAS) of n=6. An initial increase in the glass temperature (Tg) with an increase in the alkyl side chain was observed due to the intensification of the dispersive interactions (van der Waals). Above the CAS, the ?CH2? increment has the same effect in both glass and liquid states, which leads to a plateau in the glass transition after nanostructuration. The melting temperature (Tm) of the [CnC1im][NTf2] and [CnCnim][NTf2] series presents a V‐shaped profile. For the short‐alkyl ILs, the ?CH2? increment affects the electrostatic ion pair interactions, which leads to an increase in the conformational entropy. The ?CH2? increment disturbs the packing ability of the ILs and leads to a higher entropy value ( ) and consequently a decrease in Tm. Above the CAS, the ?CH2? contribution to the melting temperature becomes more regular, as a consequence of the nanostructuration of the IL into polar and nonpolar domains. The dependence of the alkyl chain on the temperature, enthalpy, and entropy of melting in the ILs above the CAS is very similar to the one observed for the alkane series, which highlights the importance of the nonpolar alkyl domains on the ILs thermal behavior. 相似文献
998.
Dr. Ana Clara B. Rodrigues Dario Wetterling Prof. Ullrich Scherf Prof. J. Sérgio Seixas de Melo 《Chemistry (Weinheim an der Bergstrasse, Germany)》2021,27(29):7826-7830
Enhancement of the luminescence efficiency of two new diazapentacenium salts ( D1 and D2 ) of more than 55 for D1 and 22 times for D2 ) in poor solvents, acetonitrile and/or dichloromethane, was observed and rationalized as formation of emissive J-aggregates. Both compounds displaying 4-n-decylphenyl substituents at the 7,14-carbons and phenyl ( D1 ) or 2,6-difluorophenyl ( D2 ) substituents at the quaternary nitrogen atoms in 5,12-positions have been synthetized in a two-step procedure involving a two-fold Buchwald-Hartwig-type CN cross-coupling and an electrophilic Friedel-Crafts-type cyclization. The optical properties of the dicationic diazapentacenium salts in various solvents and in thin films have been investigated by steady-state and time-resolved absorption and photoluminescence spectroscopies. In thin films and in good solvents, isolated molecules coexist with aggregates. Nonetheless, D1 is seven times more emissive than D2 , reflecting a higher J-aggregate contribution in the former. 相似文献
999.
Bruna R. Silva Rita Rebelo Juliana M. Rodrigues Cristina P. R. Xavier M. Helena Vasconcelos Maria-Joo R. P. Queiroz 《Molecules (Basel, Switzerland)》2021,26(6)
A series of novel functionalized methyl 3-(hetero)arylthieno[3,2-b]pyridine-2-carboxylates 2a–2h were synthesized by C-C Pd-catalyzed Suzuki-Miyaura cross-coupling of methyl 3-bromothieno[3,2-b]pyridine-2-carboxylate with (hetero)aryl pinacol boranes, trifluoro potassium boronate salts or boronic acids. Their antitumoral potential was evaluated in two triple negative breast cancer (TNBC) cell lines—MDA-MB-231 and MDA-MB-468, by sulforhodamine B assay. Their effects on the non-tumorigenic MCF-12A cells were also evaluated. The results demonstrated that three compounds caused growth inhibition in both TNBC cell lines, with little or no effect against the non-tumorigenic cells. The most promising compound was further studied concerning possible effects on cell viability (by trypan blue exclusion assay), cell proliferation (by bromodeoxyuridine assay) and cell cycle profile (by flow cytometry). The results demonstrated that the GI50 concentration of compound 2e (13 μM) caused a decreased in MDA-MB-231 cell number, which was correlated with a decreased in the % of proliferating cells. Moreover, this compound increased G0/G1 phase and decreased S phases, when compared to control cells (although was not statistic significant). Interestingly, compound 2e also reduced tumor size using an in ovo CAM (chick chorioallantoic membrane) model. This work highlights the potential antitumor effect of a novel methyl 3-arylthieno[3,2-b]pyridine-2-carboxylate derivative. 相似文献
1000.
Joo Figueira Joo Rodrigues Luca Russo Kari Rissanen 《Acta Crystallographica. Section C, Structural Chemistry》2008,64(2):o33-o36
2,5‐Diethoxy‐1,4‐bis[(trimethylsilyl)ethynyl]benzene, C20H30O2Si2, (I), constitutes one of the first structurally characterized examples of a family of compounds, viz. the 2,5‐dialkoxy‐1,4‐bis[(trimethylsilyl)ethynyl]benzene derivatives, used in the preparation of oligo(phenyleneethynylene)s via Pd/Cu‐catalysed cross‐coupling. 2,5‐Diethoxy‐1,4‐diethynylbenzene, C14H14O2, (II), results from protodesilylation of (I). 1,4‐Diethynyl‐2,5‐bis(heptyloxy)benzene, C24H34O2, (III), is a long alkyloxy chain analogue of (II). The molecules of compounds (I)–(III) are located on sites with crystallographic inversion symmetry. The large substituents either in the alkynyl group or in the benzene ring have a marked effect on the packing and intermolecular interactions of adjacent molecules. All the compounds exhibit weak intermolecular interactions that are only slightly shorter than the sum of the van der Waals radii of the interacting atoms. Compound (I) displays C—H...π interactions between the methylene H atoms and the acetylenic C atom. Compound (II) shows π–π interactions between the acetylenic C atoms, complemented by C—H...π interactions between the methyl H atoms and the acetylenic C atoms. Unlike (I) or (II), compound (III) has weak nonclassical hydrogen‐bond‐type interactions between the acetylenic H atoms and the ether O atoms. 相似文献