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2014
Loureiro, J, Santos JR, Nogueira A, Wyczisk F, Divay L, Reparaz S, Alzina F, Torres CMS, Cuffe J, Montemor F, Martins R, Ferreira I.  2014.  Nanostructured p-type Cr/V2O5 thin films with boosted thermoelectric properties. J. Mater. Chem. A. 2(18):6456-6462. AbstractWebsite

The urgent need for non-toxic and abundant thermoelectric materials has become a significant motivation to improve the figures of merit of metal oxides in order to remove the barrier towards their widespread use for thermoelectric applications. Here we show the influence of a Cr layer in boosting the thermoelectric properties of vanadium pentoxide (V2O5) thin films, deposited by thermal evaporation and annealed at 500 °C. The Cr to V2O5 thickness ratio controls the morphological and thermoelectric properties of the thin films produced. The optimized Seebeck coefficient and power factor values at room temperature are +50 μV K−1 and 7.9 × 10−4 W m−1 K−2, respectively. The nanograin structure of the films is responsible for an improvement in the electrical conductivity up to 3 × 105 (Ω m)−1 with a typical thermal conductivity of 1.5 W m−1 K−1. These results combine to yield promising p-type thermoeletric CrV2O5 thin films with a ZT of 0.16 at room temperature.

Bird, LJ, Saraiva IH, Park S, Calçada EO, Salgueiro CA, Nitschke W, Louro RO, Newman DK.  2014.  Nonredundant roles for cytochrome c2 and two high-potential iron-sulfur proteins in the photoferrotroph Rhodopseudomonas palustris TIE-1. J Bacteriol. 196(4):850-858. AbstractWebsite

The purple bacterium Rhodopseudomonas palustris TIE-1 expresses multiple small high-potential redox proteins during photoautotrophic growth, including two high-potential iron-sulfur proteins (HiPIPs) (PioC and Rpal_4085) and a cytochrome c2. We evaluated the role of these proteins in TIE-1 through genetic, physiological, and biochemical analyses. Deleting the gene encoding cytochrome c2 resulted in a loss of photosynthetic ability by TIE-1, indicating that this protein cannot be replaced by either HiPIP in cyclic electron flow. PioC was previously implicated in photoferrotrophy, an unusual form of photosynthesis in which reducing power is provided through ferrous iron oxidation. Using cyclic voltammetry (CV), electron paramagnetic resonance (EPR) spectroscopy, and flash-induced spectrometry, we show that PioC has a midpoint potential of 450 mV, contains all the typical features of a HiPIP, and can reduce the reaction centers of membrane suspensions in a light-dependent manner at a much lower rate than cytochrome c2. These data support the hypothesis that PioC linearly transfers electrons from iron, while cytochrome c2 is required for cyclic electron flow. Rpal_4085, despite having spectroscopic characteristics and a reduction potential similar to those of PioC, is unable to reduce the reaction center. Rpal_4085 is upregulated by the divalent metals Fe(II), Ni(II), and Co(II), suggesting that it might play a role in sensing or oxidizing metals in the periplasm. Taken together, our results suggest that these three small electron transfer proteins perform different functions in the cell.

Jordao, N, Cabrita L, Pina F, Branco LC.  2014.  Novel Bipyridinium Ionic Liquids as Liquid Electrochromic Devices. CHEMISTRY-A EUROPEAN JOURNAL. 20(4):3982-3988.
Catalao, MJ, Figueiredo J, Henriques MX, Gomes JP, Filipe SR.  2014.  Optimization of fluorescent tools for cell biology studies in Gram-positive bacteria. PLoS One. 9:e113796.
Martins, P, Marques M, Coito L, Pombeiro AJ, Baptista PV, Fernandes AR.  2014.  Organometallic compounds in cancer therapy: past lessons and future directions. Anticancer Agents Med Chem. 14(9):1199-212.14martinsaamc.pdf
Teixeira, SS, Graça MPF, Dionísio M, Ilcikova M, Mosnacek J, Spitalsky Z, Krupa I, Costa LC.  2014.  Self-standing elastomeric composites based on lithium ferrites and their dielectric behavior. Journal of Applied Physics. 116:224102(1-8).Website
Kardarian K, Busani T, Osório I, Domingos H, Igreja R, Franco R, Cortez J.  2014.  SINTERING OF NANOSCALE SILVER COATED TEXTILES, A NEW APPROACH TO ATTAIN CONDUCTIVE FABRICS FOR ELECTROMAGNETIC SHIELDING. Materials Chemistry and Physics. 147:815-822.
Fernandes, DM, Granadeiro CM, de M. PSP, Grazina R, Moura JJG, Silva P, Almeida Paz FA, Cunha-Silva L, Balula SS, Freire C.  2014.  SiW11Fe@MIL-101(Cr) composite: A novel and versatile electrocatalyst. ChemElectroChem. 1:1293-1300.
Quaresma P, Osório I, Doria G, Carvalho PA, Pereira A, Langer J, Araújo JP, Pastoriza-Santos I, Liz-Marzán LM, Franco R, Baptista P, Pereira E.  2014.  STAR-SHAPED MAGNETITE@GOLD NANOPARTICLES FOR PROTEIN MAGNETIC SEPARATION AND SERS DETECTION. RSC Adv. 4(8):3659-3667.
Craveiro, R, Martins M, Santos GB, N. T. Correia, Dionísio M, Barreiros S, Duarte ARC, Reis RL, Paiva A.  2014.  Starch-based polymer – IL composites formed by compression moulding and supercritical fluid foaming for self-supported conductive materials. RSC Advances. 4:17161-17170.Website
Duarte, AG, Cordas CM, Moura JJG, Moura I.  2014.  Steady state kinetics with nitric oxide reductase (nor): new considerations onsubstrate inhibiion profile and catalytic mechanism. Biochim Biophys Acta. 1837:375-384.
Silva, MA, Valente RC, Pokkuluri PR, Turner DL, Salgueiro CA, Catarino T.  2014.  Thermodynamic and kinetic characterization of two methyl-accepting chemotaxis heme sensors from Geobacter sulfurreducens reveals the structural origin of their functional difference. Biochim Biophys Acta. 1837(6):920-928. AbstractWebsite

The periplasmic sensor domains GSU582 and GSU935 are part of methyl-accepting chemotaxis proteins of the bacterium Geobacter sulfurreducens containing one c-type heme and a PAS-like fold. Their spectroscopic properties were shown previously to share similar spectral features. In both sensors, the heme group is in the high-spin form in the oxidized state and low-spin after reduction and binding of a methionine residue. Therefore, it was proposed that this redox-linked ligand switch might be related to the signal transduction mechanism. We now report the thermodynamic and kinetic characterization of the sensors GSU582 and GSU935 by visible spectroscopy and stopped-flow techniques, at several pH and ionic strength values. Despite their similar spectroscopic features, the midpoint reduction potentials and the rate constants for reduction by dithionite are considerably different in the two sensors. The reduction potentials of both sensors are negative and well framed within the typical anoxic subsurface environments in which Geobacter species predominate. The midpoint reduction potentials of sensor GSU935 are lower than those of GSU582 at all pH and ionic strength values and the same was observed for the reduction rate constants. The origin of the different functional properties of these closely related sensors is rationalized in the terms of the structures. The results suggest that the sensors are designed to function in different working potential ranges, allowing the bacteria to trigger an adequate cellular response in different anoxic subsurface environments. These findings provide an explanation for the co-existence of two similar methyl-accepting chemotaxis proteins in G. sulfurreducens.

Ribeiro D, Kulakova A, Quaresma P, Pereira E, Bonifácio C, Romão MJ, Franco R, Carvalho AL.  2014.  THE USE OF GOLD NANOPARTICLES AS ADDITIVES IN PROTEIN CRYSTALLIZATION. Cryst. Growth Des. 14:222-227.
McVey, CE, Ferreira MJ, Correia B, Lahiri S, de Sanctis D, Carrondo MA, Lindley PF, de Sá Nogueira I, Soares CM, Bento I.  2014.  The importance of the Abn2 calcium cluster in the endo-1,5-arabinanase activity from Bacillus subtilis. JBIC Journal of Biological Inorganic Chemistry. 19:505-513., Number 4-5: Springer Berlin Heidelberg Abstract

Arabinanase is a glycosyl hydrolase that is able to cleave the glycosidic bonds of α-1,5-L-arabinan, releasing arabino-oligosaccharides and L-arabinose. The enzyme has two domains, an N-terminal catalytic domain with a characteristic β-propeller fold and a C-terminal domain whose function is unknown. A calcium ion, located near the catalytic site, serves to stabilize the N-terminal domain, but it has also been proposed to play a key role in the enzyme mechanism. The present work describes the structure of an inactive mutant of the wild-type enzyme (H318Q) and in which the calcium ion has been adventitiously replaced by nickel. These structural studies, together with functional and modelling studies, clearly support the role of the calcium ion in the overall reaction mechanism.

Miguel, C, Pinto JV, Clarke M, Melo MJ.  2014.  The alchemy of red mercury sulphide: The production of vermilion for medieval art. Dyes and Pigments. 102:210-217. AbstractWebsite
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Sampaio, JM, Madeira TI, Marques JP, Parente F, Costa AM, Indelicato P, Santos JP, Lépy M-C, Ménesguen Y.  2014.  Approaches for theoretical and experimental determinations of K-shell decay rates and fluorescence yields in Ge. Physical Review A. 89:012512., Number 1: APS AbstractWebsite
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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 AbstractWebsite
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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. Abstract

Pulsed field gradient spin echo high resolution magic angle spinning nuclear magnetic resonance spectroscopy is a powerful technique to characterize confined biosystems. We used this approach to assess the diffusion of solvent and reaction species within sol–gel matrices differing in enzyme loading.

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 AbstractWebsite
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Otrelo-Cardoso, AR, Schwuchow V, Rodrigues D, Cabrita EJ, Leimkuehler S, Romao MJ, Santos-Silva T.  2014.  Biochemical, Stabilization and Crystallization Studies on a Molecular Chaperone (PaoD) Involved in the Maturation of Molybdoenzymes. Plos One. 9, Number 1 AbstractWebsite
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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 AbstractWebsite
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Moro, AJ, Pana A-M, Cseh L, Costisor O, Parola J, Cunha-Silva L, Puttreddy R, Rissanen K, Pina F.  2014.  Chemistry and Photochemistry of 2,6-Bis(2-hydroxybenzilidene)cyclohexanone. An Example of a Compound Following the Anthocyanins Network of Chemical Reactions. Journal of Physical Chemistry A. 118:6208-6215., Number 32 AbstractWebsite
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Sousa, A, Cabrita L, Araujo P, Mateus N, Pina F, de Freitas V.  2014.  Color stability and spectroscopic properties of deoxyvitisins in aqueous solution. New Journal of Chemistry. 38:539-544., Number 2 AbstractWebsite
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Sousa, A, Cabrita L, Araujo P, Mateus N, Pina F, de Freitas V.  2014.  Color stability and spectroscopic properties of deoxyvitisins in aqueous solution. New Journal of Chemistry. 38:539-544., Number 2 AbstractWebsite
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