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Dive into the research topics where Adilson C. Silva is active.

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Featured researches published by Adilson C. Silva.


Scientific Reports | 2016

A hole inversion layer at the BiVO4/Bi4V2O11 interface produces a high tunable photovoltage for water splitting

Wayler S. dos Santos; Mariandry Rodriguez; André S. Afonso; João P. de Mesquita; Lucas L. Nascimento; Antonio Otavio T. Patrocinio; Adilson C. Silva; Luiz C.A. Oliveira; José Domingos Fabris; Márcio C. Pereira

The conversion of solar energy into hydrogen fuel by splitting water into photoelectrochemical cells (PEC) is an appealing strategy to store energy and minimize the extensive use of fossil fuels. The key requirement for efficient water splitting is producing a large band bending (photovoltage) at the semiconductor to improve the separation of the photogenerated charge carriers. Therefore, an attractive method consists in creating internal electrical fields inside the PEC to render more favorable band bending for water splitting. Coupling ferroelectric materials exhibiting spontaneous polarization with visible light photoactive semiconductors can be a likely approach to getting higher photovoltage outputs. The spontaneous electric polarization tends to promote the desirable separation of photogenerated electron- hole pairs and can produce photovoltages higher than that obtained from a conventional p-n heterojunction. Herein, we demonstrate that a hole inversion layer induced by a ferroelectric Bi4V2O11 perovskite at the n-type BiVO4 interface creates a virtual p-n junction with high photovoltage, which is suitable for water splitting. The photovoltage output can be boosted by changing the polarization by doping the ferroelectric material with tungsten in order to produce the relatively large photovoltage of 1.39u2009V, decreasing the surface recombination and enhancing the photocurrent as much as 180%.


Journal of Nanomaterials | 2016

Synthesis, structural characterization, and thermal properties of the poly(methylmethacrylate)/ δ -FeOOH hybrid material: an experimental and theoretical study

Silviana Corrêa; Lívia C. T. Lacerda; Maíra dos Santos Pires; Marcus V. J. Rocha; Francisco G. E. Nogueira; Adilson C. Silva; Márcio C. Pereira; Angela D. B. de Brito; Elaine F. F. da Cunha; Teodorico C. Ramalho

The δ-FeOOH/PMMA nanocomposites with 0.5 and 2.5 wt.% of δ-FeOOH were prepared by grafting 3-(trimethoxysilyl)propyl methacrylate on the surface of the iron oxyhydroxide particles. The FTIR spectra of the δ-FeOOH/PMMA nanocomposites showed that the silane monomers were covalently attached to the δ-FeOOH particles. Because of the strong interaction between the PMMA and δ-FeOOH nanoparticles, the thermal stability of the δ-FeOOH/PMMA nanocomposites was improved compared to the pure PMMA. The SEM analysis conferred the size agglomerate of particles regarding the morphology of samples. The theoretical study enabled a better understanding of the interaction of the polymer with the iron oxyhydroxide. The DFT-based calculations reinforce the radical trapping mechanism of stabilization of nanocomposites; that is, Fe3+ species might be able to accept electrons coming from the organic phase that decomposes via radical unzipping. The radical scavenge effect delays the weight loss of polymer.


Química Nova | 2010

Utilization of Sn/Nb2O5 composite for the removal of methylene blue

Fabiane de Oliveira Cantão; Walclée de Carvalho Melo; Luiz C.A. Oliveira; Aline Ribeiro Passos; Adilson C. Silva

In this work, the oxidation of methylene blue textile dye in the presence of hydrogen peroxide, using niobium oxide impregnated with different proportions of tin (1, 5 and 10% in mass) as catalyst was studied. The materials were characterized by TPR, XPS, XRD and FTIR. The oxidation tests monitored by ESI-MS showed that the composite containing the higher amount of tin was the most efficient in the removal of the dye. The XRD, XPS, and TPR data presented evidence of the formation of the tin-niobium oxide composite containing Sn0 and supported SnO2.


Química Nova | 2009

Modified synthetic niobia as catalyst in the oxidation of organic dye: utilization of H2O2 and atmospheric O2 as oxidants

Kele T. G. Carvalho; Adilson C. Silva; Luiz C.A. Oliveira; Maraísa Gonçalves; Zuy M. Magriotis

In this work synthetic niobia was used to promote the oxidation of methylene blue dye in aqueous medium. The niobia was characterized by N2 adsorption/desorption, XRD and TG measurements. The presence of reactive species on the niobia surface strongly increased the oxidation rate of the methylene blue dye. The reaction mechanism was studied by ESI-MS suggesting that the oxidation of the organic dye involve oxidizing species generated mainly after previous treatment with H2O2. It can be observed that the catalyst is a good material in the activation of gas (atmospheric oxygen) or liquid (hydrogen peroxide) oxidant agent with a total discoloration of the dye solution after only 1xa0h of reaction.


Chemsuschem | 2018

Bismuth Vanadate Photoelectrodes with High Photovoltage as Photoanode and Photocathode in Photoelectrochemical Cells for Water Splitting

Wayler S. dos Santos; Mariandry Rodriguez; Júlia M. O. Khoury; Luíza A. Nascimento; Rebecca J. P. Ribeiro; João Paulo de Mesquita; Adilson C. Silva; Francisco G. E. Nogueira; Márcio C. Pereira

Using dual-photoelectrode photoelectrochemical (PEC) devices based on earth-abundant metal oxides for unbiased water splitting is an attractive means of producing green H2 fuel, but is challenging, owing to low photovoltages generated by PEC cells. This problem can be solved by coupling n-type BiVO4 with n-type Bi4 V2 O11 to create a virtual p/n junction due to the formation of a hole-inversion layer at the semiconductor interface. Thus, photoelectrodes with high photovoltage outputs were synthesized. The photoelectrodes exhibited features of p- and n-type semiconductors when illuminated under an applied bias, suggesting their use as photoanode and photocathode in a dual-photoelectrode PEC cell. This concept was proved by connecting a 1u2005molu2009% W-doped BiVO4 /Bi4 V2 O11 photoanode with an undoped BiVO4 /Bi4 V2 O11 photocathode, which produced a high photovoltage of 1.54u2005V, sufficient to drive stand-alone water splitting with 0.95u2009% efficiency.


Bioprocess and Biosystems Engineering | 2018

Soybean peroxidase immobilized on δ-FeOOH as new magnetically recyclable biocatalyst for removal of ferulic acid

Tássia S. Tavares; Juliana Arriel Torres; Maria Cristina Silva; Francisco G. E. Nogueira; Adilson C. Silva; Teodorico C. Ramalho

A significant enhancement in the catalytic performance due to enzymes immobilization is a great way to enhance the economics of biocatalytic processes. The soybean peroxidase (SP) immobilization under ferroxyte and the ferulic acid removal by the enzyme free and immobilized were investigated. The immobilization via silica-coated ferroxyte nanoparticles was effective, and immobilization yield of 39%. The scanning electron microscopy (SEM) images showed significant changes in the materials morphology. Substantial differences were observed in the particles’ Fourier Transform Infrared (FTIR) spectra. The magnetic catalyst revealed a better performance than the free enzyme in the ferulic acid conversion, presenting a good Vmax/Km ratio when compared with the free enzyme. The reuse evaluated by ten cycles exhibited excellent recycling, remaining constant between the sixth and seventh cycles. The use of magnetic nanocatalyst becomes possible to eliminate the high operational costs, and complicated steps of the conventional enzymatic processes. Thus, a viable industrial route for the use of the enzyme as catalyst is possible.


Applied Catalysis A-general | 2009

Nb-containing hematites Fe2-xNbxO3: The role of Nb5+ on the reactivity in presence of the H2O2 or ultraviolet light

Adilson C. Silva; Diana Q.L. Oliveira; Luiz C.A. Oliveira; Alexandre S. Anastácio; Teodorico C. Ramalho; João Henrique Lopes; Hudson W.P. Carvalho; Claudia E. Rodriguez Torres


Applied Clay Science | 2009

Reactive adsorption of methylene blue on montmorillonite via an ESI-MS study

Francisco G. E. Nogueira; João Henrique Lopes; Adilson C. Silva; Maraísa Gonçalves; Alexandre S. Anastácio; Karim Sapag; Luiz C.A. Oliveira


Applied Catalysis A-general | 2009

Nb-doped hematites for decomposition of isopropanol: Evidence of surface reactivity by in situ CO adsorption

Luiz C.A. Oliveira; Ilkeun Lee; Diana Q. Lima; Teodorico C. Ramalho; Adilson C. Silva; Emanuella M.B. Fonseca


Hyperfine Interactions | 2010

Niobian iron oxides as heterogeneous Fenton catalysts for environmental remediation

Diana Q.L. Oliveira; Luiz C.A. Oliveira; Enver Murad; José Domingos Fabris; Adilson C. Silva; Lucas Morais de Menezes

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Luiz C.A. Oliveira

Universidade Federal de Minas Gerais

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Francisco G. E. Nogueira

Federal University of São Carlos

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Teodorico C. Ramalho

Universidade Federal de Lavras

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Diana Q.L. Oliveira

Universidade Federal de Minas Gerais

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José Domingos Fabris

Universidade Federal de Minas Gerais

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João Henrique Lopes

State University of Campinas

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Maraísa Gonçalves

Universidade Federal de Lavras

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Márcio C. Pereira

Universidade Federal de Minas Gerais

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Alexandre S. Anastácio

Universidade Federal de Lavras

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