988 resultados para Ligação pilar - fundação
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B3LYP/6-31G(d,p) calculations were used to determine the optimized geometries of the C2H4O-C2H2 and C2H4S-C2H2 heterocyclic hydrogen-bonded complexes. Results of structural, rotational, electronic and vibrational parameters indicate that the hydrogen bonding is non-linear due to the pi bond of the acetylene interacting with the hydrogen atoms of the methyl groups of the three-membered rings. Moreover, the theoretical investigation showed that the non-linearity is much more intriguing, since there is a structural disjunction on the acetylene within the heterocyclic system.
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This report has an objective to contribute the understanding of some historical features associated with the preceding period before SBQ foundation on 8th July of 1977. There are some descriptions involving chemist meetings to decide the strategy of splitting from the Brazilian Society for the Progress of Science (SBPC), in order to be independent on annual meeting organizations. The military political situation forced the annual SBPC meeting transference from Fortaleza to São Paulo, where the chemist assembly took place in PUC and the SBQ was definitively founded. The actual powerful of the Society and its successful in completing the thirty years anniversary is also exalted.
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It is through the application of an electronic partition approach called Symmetry-Adapted Perturbation Theory (SAPT) that the nature of hydrogen bonds and van der Waals interactions can be unveiled according to the contribution of electrostatic, charge transfer, exchange repulsion, polarization, and dispersion terms. Among these, electrostatic partition governs the formation of the hydrogen bonds, whose energies are arguably high. However, the weakness of the interaction strength is caused by dispersion forces, whose contribution decisively lead to the stabilization of complexes formed via van der Waals interactions.
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This article presents a theoretical study of the molecular properties of trimolecular clusters of CnHm∙∙∙HCN∙∙∙HX formed by the ϖ∙∙∙H and n∙∙∙H hydrogen bonds. The interaction strengths of these interactions are in line with the variations in s-character, and independently, the red-shift rise whether stronger or weaker bound systems are carried out. This behavior was justified via NBO analysis and supported by Bent´s rule, wherein the greater variations in s-character of X are in good agreement with larger red-shifts and vice-versa. To conclude, the refinement of the supermolecule approach and NBO binding energies also corroborate in this regard.
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Theoretical analysis at the BHandHLYP/6-311++G(d,p) level of theory with the support of QTAIM calculations was used to reinvestigate the structure of an intermolecular system formed between ethylene oxide (C2H4O) and formic acid (HCO2H) after the epoxidation known as the Prileschajew reaction. Geometric and infrared vibration results revealed that HO2CH forms a strong hydrogen bond with C2H4O followed by a larger red-shift of the H−O bond. NBO analysis was applied to justify this frequency shift. Finally, QTAIM calculations identified the formation of two hydrogen bonds, namely O···H−O and H···O=C.
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Along the historical background of science, the hydrogen bond became widely known as the universal interaction, thus playing a key role in many molecular processes. Through the available theoretical approaches, many of these processes can be unveiled on the basis of the molecular parameters of the subject intermolecular system, such as the variation of bond length and mainly the frequency shift observed in the proton donor. Supported by the natural bond analysis (NBO) with the quantification of the hybridization contributions, the structural deformations and vibrational effects cited above are also attributed to the outcome of the intermolecular interaction strength, which consequently can be estimated by means of the quantum theory of atoms in molecules (QTAIM) as well as evaluated by the symmetry-adapted perturbation theory (SAPT). Moreover, to identify the preferential interaction sites for proton donors and acceptors, the molecular electrostatic potential (MEP) is useful in this regard.
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Por reação de quantidades eqüimoleculares de R2SnO ou R2SnCl2 (R = -CH3; -C4H9) com ácido dl-mandélico, C6H5CH(OH)COOH, em meio de etanol, foram obtidos novos compostos formulados como [(LR2Sn)2O] [L= C6H5CH(OH)COO-], nos quais o átomo de estanho é pentacoordenado, com o ligante L estabelecendo uma ligação bidentada através dos átomos de oxigênio dos grupos ácido e hidroxila alcoólica. Nas mesmas condições, nenhum produto obtido a partir da reação de (C6H5)2SnO ou (C6H5)2SnCl2 pode ser identificado. No entanto, quando da reação de (C6H5)2SnCl2 com ácido dl-mandélico, em meio de acetonitrila, foi preparado um composto dimérico hexacoordenado formulado como [L(C6H5)2SnCl]2. Este composto não pode ser isolado de forma pura e está misturado com 7% de impurezas não identificadas, cujos parâmetros de interação hiperfina sugerem tratar de estanho tetravalente octaedricamente coordenado por oxigênio. Os compostos obtidos foram caracterizados por determinação de ponto de fusão, microanálise e espectroscopias i.v. e Mössbauer.
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Este artigo se propõe a apresentar a formulação feuerbachiana do fundamento sensível do pensamento, buscando mostrar que nesse empreendimento Feuerbach: [1] toma como base uma teoria da objetivação, inseparável de uma teoria do homem como essência-gênero (Gattungswesen); [2] formula uma interpretação do desenvolvimento moderno da filosofia ao qual sua proposta filosófica seria imanente e do qual seria o resultado necessário; e [3] chega a formular as bases de uma nova posição ética, no plexo Eu-Tu. Desse modo, sua posição ontológica, ao reivindicar o sensível como o verdadeiro, não se constitui num imediatismo, pois o sensível aí apresentado é ele mesmo mediado pela existência genérica dos homens.
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Nos últimos anos, inúmeros problemas surgiram na área da saúde em decorrência, sobretudo, dos avanços ocorridos no campo das biotecnociências. Percebendo-se a exigüidade de espaço, no atual currículo médico, para a discussão de muitas dessas questões, alunos e professores da Fundação Educacional Serra dos Órgãos (FESO) propuseram a criação do Núcleo de Estudos em Filosofia e Saúde (NEFISA), espaço destinado a fomentar o debate, o ensino e a pesquisa sobre os assuntos que tenham sua emergência na interface da Filosofia com a Medicina e a Saúde. O escopo do presente artigo é apresentar o trabalho desenvolvido no NEFISA-FESO.
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Gestión del conocimiento
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Tesis (Maestría en Ciencias con Especialidad en Biología Celular) U.A.N.L.
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Tesis (Maestría en Administración con Especialidad en Finanzas) U.A.N.L.