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A
Barreira, G, Ferreira ASD, Vidinha P, Cabral JMS, Martinho JMG, Lima JC, Cabrita EJ, Barreiros S.  2014.  Assessing diffusion in enzyme loaded sol-gel matrices. Rsc Advances. 4:25099-25105., Number 48 Abstract
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Kuckova, SH, Krizkova MC, Cortes Pereira CL, Hynek R, Lavrova O, Busani T, Branco LC, Anca Sandu IC.  2014.  Assessment of Green Cleaning Effectiveness on Polychrome Surfaces by MALDI-TOF Mass Spectrometry and Microscopic Imaging. Microscopy Research and Technique. 77:574-585., Number 8 Abstract
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Teixeira, J, Silva AR, Branco LC, Afonso CAM, Freire C.  2010.  Asymmetric alkene epoxidation by Mn(III)salen catalyst in ionic liquids. Inorganica Chimica Acta. 363:3321-3329., Number 13 Abstract
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Bazzicalupi, C, Bencini A, Bianchi A, Borsari L, Danesi A, Giorgi C, Lodeiro C, Mariani P, Pina F, Santarelli S, Tamayo A, Valtancoli B.  2006.  Basicity and coordination properties of a new phenanthroline-based bis- macrocyclic receptor. Dalton Transactions. :4000-4010., Number 33 Abstract
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Cavero, AM, Melo MJ, Miranda MA, Castro R, Casanova C.  2016.  Beatus manuscripts under the microscope: the Alcobaca Beatus and the Iberian Cistercian tradition revisited, 2016. Journal of Medieval Iberian Studies. 8(2):217-251. Abstract
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Braga, SS, Gago S, Seixas JD, Valente AA, Pillinger M, Santos TM, Goncalves IS, Romao CC.  2006.  beta-cyclodextrin and permethylated beta-cyclodextrin inclusion compounds of a cyclopentadienyl molybdenum tricarbonyl complex and their use as cyclooctene epoxidation catalyst precursors. Inorganica Chimica Acta. 359:4757-4764., Number 15 Abstract
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Lipinska, ME, Teixeira DMD, Laia CAT, Silva AMG, Rebelo SLH, Freire C.  2013.  beta-Functionalized zinc(II)aminoporphyrins by direct catalytic hydrogenation. Tetrahedron Letters. 54:110-113., Number 1 Abstract
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Bazzicalupi, C, Biagini S, Bianchi A, Faggi E, Gratteri P, Mariani P, Pina F, Valtancoli B.  2010.  Binding of H+ and Zn(II) ions with a new fluorescent macrocyclic phenanthrolinophane. Dalton Transactions. 39:10128-10136., Number 42 Abstract
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Mendoza, J, Basilio N, Dangles O, Mora N, Al Bittar S, Pina F.  2017.  Binding of the five multistate species of the anthocyanin analog 7-beta-D-glucopyranosyloxy-4'-hydroxyflavylium to the beta-cyclodextrin derivative captisol, 2017. Dyes and Pigments. 143:479-487. Abstract
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Giestas, L, Folgosa F, Lima JC, Parola AJ, Pina F.  2005.  Bio-inspired multistate networks responsive to light, pH and thermal inputs - An example of a multistate system operating through different algorithms. European Journal of Organic Chemistry. :4187-4200., Number 19 Abstract
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Cordeiro, M, Giestas L, Lima JC, Baptista PMV.  2016.  BioCode gold-nanobeacon for the detection of fusion transcripts causing chronic myeloid leukemia, 2016. Journal of Nanobiotechnology. 14 Abstract
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Ventura, MG, Paninho AI, Nunes AVM, Fonseca IM, Branco LC.  2015.  Biocompatible locust bean gum mesoporous matrices prepared by ionic liquids and a scCO(2) sustainable system, 2015. Rsc Advances. 5(130):107700-107706. Abstract
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Tron, A, Gago S, McClenaghan ND, Parola AJ, Pina F.  2016.  A blue 4 ',7-diaminoflavylium cation showing an extended pH range stability, 2016. Physical Chemistry Chemical Physics. 18(13):8920-8925. Abstract
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Bonifacio, VDB, Correia VG, Pinho MG, Lima JC, Aguiar-Ricardo A.  2012.  Blue emission of carbamic acid oligooxazoline biotags. Materials Letters. 81:205-208. Abstract
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Gomis-Berenguer, A, Iniesta J, Moro A, Maurino V, Lima JC, Ania CO.  2016.  Boosting visible light conversion in the confined pore space of nanoporous carbons, 2016. Carbon. 96:98-104. Abstract
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Gomis-Berenguer, A, Iniesta J, Moro A, Maurino V, Lima JC, Ania CO.  2016.  Boosting visible light conversion in the confined pore space of nanoporous carbons (vol 96, pg 98, 2015), 2016. Carbon. 98:187-187. Abstract
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Rondao, R, de Melo JSS, Pina J, Melo MJ, Vitorino T, Parola AJ.  2013.  Brazilwood Reds: The (Photo)Chemistry of Brazilin and Brazilein, 2013. Journal of Physical Chemistry A. 117:10650-10660. Abstract

The ground and excited state (in the singlet state, S-1) acid-base equilibria, together with the photophysical properties of the two main constituents of brazilwood, brazilin and brazilein, have been investigated in aqueous solutions in the pH range: -1 < pH < 10. Brazilin is the colorless reduced form of brazilein where three ground and three excited state species (BredHn, with n = 2-4 representing the protonated hydroxyl groups) are observed with two corresponding acidity constants: pK(a1) = 6.6 and pK(a2) = 9.4 (pK(a1)(*) = 4.7 and pK(a2)(*) = 9.9, obtained from the Forster cycle). In the case of brazilein, three ground species (pK(a1) = 6.5 and pK(a2) = 9.5) and four excited state species were identified (again from the Forster cycle: pK(a1)(*) = 3.9 and pK(a2)(*) = 9.8). The colorless species (brazilin) presents a high fluorescence quantum yield (phi(F) = 0.33) and competitive radiative channel (k(F) = 1.3 x 10(9) s(-1)) over radiationless processes (k(NR) = 2.6 x 10(9) s(-1)). In contrast to this behavior, brazilein displays a phi(F) value 2 orders of magnitude lower and a dominance of the radiationless decay pathways, which is suggested to be linked to an excited state proton transfer leading to a quinoidal-like structure. This is further supported by time-resolved data (obtained in a ps time domain). The overall data indicates that brazilin is more prone to degradation than brazilein, mainly due to the high efficiency of the racliationless decay channel (likely through internal conversion), which confers a stabilizing inherent characteristic to the latter. In the case of brazilein, the efficiency of the radiationless channel is linked to an excited state intramolecular proton transfer resulting from an excited state equilibrium involving neutral and zwitterionic tautomeric species of this compound. Furthermore, a theoretical study has been performed with the determination of the optimized ground-state and excited molecular geometries for the two compounds together with the prediction of the lowest vertical one-electron excitation energy and the relevant molecular orbital contours and charge densities changes using density functional theory calculations. These were found to corroborate differences in acidity in the ground and excited states.

Melo, MJ, Claro A.  2010.  Bright Light: Microspectrofluorimetry for the Characterization of Lake Pigments and Dyes in Works of Art. Accounts of Chemical Research. 43:857-866., Number 6 Abstract
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C
Pina, F.  1998.  Caffeine interaction with synthetic flavylium salts. A flash photolysis study for the adduct involving 4 ',7-dihydroxyflavylium. Journal of Photochemistry and Photobiology a-Chemistry. 117:51-59., Number 1 Abstract
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Kulkarni, PS, Branco LC, Crespo JG, Afonso CAM.  2008.  Capture of Dioxins by ionic liquids. Environmental Science & Technology. 42:2570-2574., Number 7 Abstract
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Branco, LC, Afonso CAM.  2002.  Catalytic asymmetric dihydroxylation of olefins using a recoverable and reusable OsO42- in ionic liquid bmim PF6. Chemical Communications. :3036-3037., Number 24 Abstract
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Neves, P, Gago S, Pereira CCL, Figueiredo S, Lemos A, Lopes AD, Goncalves IS, Pillinger M, Silva CM, Valente AA.  2009.  Catalytic Epoxidation and Sulfoxidation Activity of a Dioxomolybdenum(VI) Complex Bearing a Chiral Tetradentate Oxazoline Ligand. Catalysis Letters. 132:94-103., Number 1-2 Abstract
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Gago, S, Balula SS, Figueiredo S, Lopes AD, Valente AA, Pillinger M, Goncalves IS.  2010.  Catalytic olefin epoxidation with cationic molybdenum(VI) cis-dioxo complexes and ionic liquids. Applied Catalysis a-General. 372:67-72., Number 1 Abstract
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Kuhn, FE, Zhao J, Abrantes M, Sun W, Afonso CAM, Branco LC, Goncalves IS, Pillinger M, Romao CC.  2005.  Catalytic olefin epoxidation with cyclopentadienyl-molybdenum complexes in room temperature ionic liquids. Tetrahedron Letters. 46:47-52., Number 1 Abstract
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Otero, V, Sanches D, Montagner C, Vilarigues M, Carlyle L, Lopes JA, Melo MJ.  2014.  Characterisation of metal carboxylates by Raman and infrared spectroscopy in works of art. Journal of Raman Spectroscopy. 45:1197-1206., Number 11-12 Abstract
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