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Dive into the research topics where A. Gil Santos is active.

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Featured researches published by A. Gil Santos.


Journal of Molecular Catalysis A-chemical | 2000

Lewis base adducts of bis-(halogeno)dioxomolybdenum(VI): syntheses, structures, and catalytic applications

Fritz E. Kühn; André D. Lopes; Ana M. Santos; Eberhardt Herdtweck; Joachim J. Haider; Carlos C. Romão; A. Gil Santos

Abstract Reaction of solvent substituted MoO2X2(Solv)2 complexes ((Solv)=THF, CH3CN) with mono- and bidentate nitrogen and oxygen donor ligands leads to complexes of the type MoO2X2L2 in nearly quantitative yields at room temperature within a few minutes. The 95 Mo and 17 O NMR data of selected complexes as well as the MoO IR vibrations were used to probe the influence of the ligands on the electronic properties of the metal and the MoO bond. Two complexes have additionally been examined by single crystal X-ray analysis. The activity of the MoO2X2L2 complexes as catalysts in olefin epoxidation with t-butylhydroperoxide as oxidizing agent depends on both the nature of the organic ligand L and the halogeno ligand X. The difference in activity observed between Cl and Br substituted complexes is not very pronounced. In general, the Cl derivatives are more active than their Br analogues. The organic ligands L display a significant influence on the catalytic performance. Complexes with ligands bearing aromatic substituents at N are in all cases, much more active than those bearing aliphatic substituents. The less active complexes can be activated by raising the temperature and extending the reaction time. In all observed cases, these changes produce a significant increase of the product yield.


Chemistry: A European Journal | 2009

Density functional study of proline-catalyzed intramolecular Baylis-Hillman reactions.

Filipe J. S. Duarte; Eurico J. Cabrita; Gernot Frenking; A. Gil Santos

The mechanisms of proline-catalyzed and imidazole-co-catalyzed intramolecular Baylis-Hillman reactions have been studied by using density functional theory methods at the B3LYP/6-31G(d,p) level of theory. A polarizable continuum model (PCM B3LYP/6-31++G(d,p)//B3LYP/6-31G(d,p)) was used to describe solvent effects. Different reaction pathways were investigated, which indicated that water is an important catalyst in the imine/enamine conversion step in the absence of imidazole. When imidazole is used as a co-catalyst, water is still important in the imidazole addition step, but is not present in the Baylis-Hillman cyclization step. The computational data has allowed us to rationalize the experimental outcome of the intramolecular Baylis-Hillman reaction, validating some of the mechanistic steps proposed in the literature, as well as to propose new ones that considerably change and improve our understanding of the full reaction path.


Tetrahedron | 2001

Synthesis of α-amino esters by dynamic kinetic resolution of α-haloacyl imidazolidinones

Stephen Caddick; Carlos A. M. Afonso; Sara X. Candeias; Peter B. Hitchcock; Kerry Jenkins; L. Murtagh; D Pardoe; A. Gil Santos; Nigel Treweeke; Robert Weaving

Abstract Dynamic kinetic resolution of α-haloacyl imidazolidinones with a variety of nitrogen and carbon nucleophiles has been achieved with selectivities up to 100% (d.e.). An unusual dichotomy of diastereoselection has been observed whereby metalated nucleophiles preferentially react via the 5S,2′R diastereomer whilst amine nucleophiles react via the 5S,2′S diastereomer. Mild procedures are described for the coupling and removal of the ephedrine based chiral auxiliary.


Tetrahedron | 2001

Rationalising diastereoselection in the dynamic kinetic resolution of α-haloacyl imidazolidinones: a theoretical approach

A. Gil Santos; Sara X. Candeias; Carlos A. M. Afonso; Kerry Jenkins; Stephen Caddick; Nigel Treweeke; D Pardoe

Abstract A new model for the rationalisation of previously reported DKR results is presented. The proposed model is based both on experimental and molecular modelling results which indicate that selectivity arises from the interaction between the leaving group and the stereodifferentiating substituent of the chiral auxiliary.


Chemistry: A European Journal | 2009

An Alternative Mechanism for Diels–Alder Reactions of Evans Auxiliary Derivatives

Snezhana M. Bakalova; Filipe J. S. Duarte; Miglena K. Georgieva; Eurico J. Cabrita; A. Gil Santos

The mechanism proposed by Evans for the dialkylaluminum chloride promoted Diels-Alder reaction of cyclopentadiene with alpha,beta-unsaturated N-acyloxazolidinones has been widely used as a basis for the rationalization of the experimental selectivities observed in many different types of reactions in which oxazolidinones or imidazolidinones are used as chiral auxiliaries. In this manuscript we introduce a new and more general model based on molecular modeling and NMR spectroscopy data that avoids several ambiguous concepts raised by the Evans model and fully explains all available experimental data. While the Evans proposal relies on the formation of high-energetic ionic chelates that promote the rotation of the amide bond in the N-acyloxazolidinone molecule, our model is based on the catalysis by means of low-energetic mono- or bicomplexes at the chain and the ring carbonyl groups that are easily observed by NMR spectroscopy measurements. The observed selectivities are explained by a chirality-transfer concept, in which an achiral Lewis acid works as a bridge for the transfer of chirality between a chiral auxiliary and a prochiral reactive center. Different to the Evans proposal, this mechanism fully explains the experimental selectivities for low Lewis acid concentrations, based on the catalysis by means of concurrent monocomplexes at the chain or the ring carbonyl groups, as well as the increased reaction rates and selectivities experimentally observed for high Lewis acid concentrations. The model can be extrapolated to nonchelating and other chelating Lewis acids, thereby allowing for the rationalization of much experimental data that were never explained by the Evans proposal.


Journal of Organic Chemistry | 2012

Enantioselective Organocatalytic Intramolecular Diels–Alder Reactions: A Computational Study

Filipe J. S. Duarte; A. Gil Santos

The diastereo- and enantioselectivity obtained experimentally by Christmann in the amine-catalyzed intramolecular Diels-Alder reaction of α,β-unsaturated carbonylic compounds were fully rationalized using density functional theory methods at the PBE1PBE/6-311+G** level. A polarizable continuum model was used to describe solvent effects. The selectivity is induced in the cyclization step, and while the enantioselectivity results from the syn/anti orientation around the C-N enamine bond, the diastereoselectivity mainly results from the syn/anti configuration of the substituents in the forming cyclopentane ring. The remarkable reaction rate experimentally observed when an external protic acid is used is attributed to the strong decrease in the activation energy of all steps needed for the enamine formation, while the external acid marginally influences the cyclization step. When hydrogen-bond-donor catalysts are used, the formation of one hydrogen bond in the cyclization step inverts the configuration and reduces the selectivity. The different behavior between dialdehydes and ketoaldehydes is suggested to be resulting from different reaction rates in the catalyst elimination step.


Journal of Organic Chemistry | 2010

Asymmetric Intramolecular Aldol Reactions of Substituted 1,7-Dicarbonylic Compounds. A Mechanistic Study

Filipe J. S. Duarte; Eurico J. Cabrita; Gernot Frenking; A. Gil Santos

The diastereo- and enantioselectivity obtained experimentally by List on the proline-catalyzed intramolecular aldol reaction of substituted 1,7-dicarbonylic compounds was accurately predicted using density functional theory methods at the B3LYP/6-31++G** level. A polarizable continuum model was used to describe solvent effects. The theoretical data agree in good extension with Lists experimental results, both in enantioselectivity and diastereoselectivity, and allow for the confirmation of our previous rationalization of the main factors contributing to the reaction selectivity. While the enantioselectivity results from an important electrostatic contact between the forming alkoxyde group and the proline moiety, the calculated diasteroselectivity results from several steric contacts that can be established between the different substituents and from their relative orientation in respect to the ring conformation. However, for dialdehydes that can originate two diastereomeric enamine intermediates, the proline attack and the immonium formation steps can also be of major importance in the rationalization of the final reaction selectivity, as is the case in two of the six studied systems. The obtained data allows for a full rationalization of the known experimental systems as well as for the extrapolation to new ones with variable substitution at the carbonylic chain.


Tetrahedron | 2001

Synthesis and conformational analysis of 2,6-dimethyl-1,5-diaza-cis-decalins

Marisa C. Kozlowski; Zhenrong Xu; A. Gil Santos

Abstract The stereoselective synthesis of 2,6-dimethyl-1,5-diaza-cis-decalins with the dimethyl groups syn or anti to the angular hydrogens has been accomplished starting from 1,5-diaza-cis-decalin. From an NMR study of the conformational properties of all three 2,6-dimethyl-1,5-diaza-cis-decalins, the components which affect the conformational equilibrium have been identified.


Journal of Organometallic Chemistry | 2001

Metal–metal interaction in polynuclear complexes with cyanide bridges: synthesis, characterisation, and theoretical studies

Maria José Calhorda; Michael G. B. Drew; Vítor Félix; L. Fonseca; Carla A. Gamelas; Sofia S.M.C Godinho; Isabel S. Gonçalves; E Hunstock; João Lopes; A. Jorge Parola; Fernando Pina; Carlos C. Romão; A. Gil Santos

Abstract The reaction of the cyanide anion [M(CO) 5 CN] − (M=Cr or Mo) with metallocenes of Groups 4 and 6 produced polynuclear complexes of the type [CpCp′M(CO){NCM′(CO) 5 }]BF 4 (M=Mo, W; M′=Mo, Cr; Cp′=Cp, Ind), Cp 2 TiCl{NCMo(CO) 5 } and Cp 2 Ti{NCMo(CO) 5 } 2 . These complexes were characterised by 1 H-, 13 C- and 95 Mo-NMR, IR and UV–vis spectroscopies, elemental analysis and examined by cyclic voltammetry. These methods show that the [M(CO) 5 CN] − ligands shift the electron density towards the metallocene centres. The complex [Cp 2 W(CO){NCMo(CO) 5 }] + is additionally examined by single crystal X-ray structure determination. The Density Functional Theory (DFT) calculations with the ADF program were performed on selected compounds to understand the nature of the redox processes taking place. Compared with a nitrile, the coordination of a [M(CO) 5 CN] − fragment to the metallocene moiety does not significantly change the geometrical features, but leads to the stabilisation of the HOMO of the latter, with all the oxidation processes occurring in the pentacarbonyl moiety of the binuclear species. Time-dependent DFT calculations were used to identify the band appearing in the visible spectrum of Cp 2 TiCl{NCMo(CO) 5 } as a Mo to Ti charge transfer.


Journal of Organic Chemistry | 2011

Lewis Acid Catalyzed Reactions of Chiral Imidazolidinones and Oxazolidinones: Insights on the Role of the Catalyst

Filipe J. S. Duarte; Snezhana M. Bakalova; Eurico J. Cabrita; A. Gil Santos

The mechanism proposed by Evans to justify the selectivity obtained in Lewis acid catalyzed Diels-Alder reactions of cyclopentadiene with acyloxazolidinones has been generalized and used in the rationalization of selectivities obtained in many other systems. However, we recently proposed an alternative mechanism, on the basis of open-chain mono- and bicomplexes, that avoids the need for chelates and explains the selectivity obtained by Evans. In this manuscript we apply our proposal to the catalyzed conjugated addition of amines to acylimidazolidinones, reported by Cardillo, and we clearly show that aluminum chelates are not involved in the reaction, as they induce no selectivity, while Cardillo observed high experimental selectivities. Our data equally show that bicomplexes with carbonyl parallel orientation, proposed by Cardillo to justify the experimental selectivity with nonchelating Lewis acids, indeed induce the opposite selectivity and have also to be dismissed. On the other hand, our mechanistic proposal allows for the full rationalization of the data obtained by Cardillo with aluminum, boron, or zinc Lewis acids and supports our previous proposal on DA cycloadditions of dienes to Evans chiral auxiliary derivatives.

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Snezhana M. Bakalova

Bulgarian Academy of Sciences

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Eurico J. Cabrita

Universidade Nova de Lisboa

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Sara X. Candeias

Universidade Nova de Lisboa

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Carlos C. Romão

Spanish National Research Council

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