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  <title>TEDE Communidade:</title>
  <link rel="alternate" href="https://tedebc.ufma.br/jspui/handle/tede/5115" />
  <subtitle />
  <id>https://tedebc.ufma.br/jspui/handle/tede/5115</id>
  <updated>2026-09-15T13:47:59Z</updated>
  <dc:date>2026-09-15T13:47:59Z</dc:date>
  <entry>
    <title>Plataforma fotoeletroquímica a base de Perovskitas cerâmicas para a detecção de 2 - (3,4-di-hidroxifenil) etilamina</title>
    <link rel="alternate" href="https://tedebc.ufma.br/jspui/handle/tede/7224" />
    <author>
      <name>COSTA, Lenilda Ferreira</name>
    </author>
    <id>https://tedebc.ufma.br/jspui/handle/tede/7224</id>
    <updated>2026-09-10T13:20:35Z</updated>
    <published>2026-03-23T00:00:00Z</published>
    <summary type="text">Título: Plataforma fotoeletroquímica a base de Perovskitas cerâmicas para a detecção de 2 - (3,4-di-hidroxifenil) etilamina
Autor: COSTA, Lenilda Ferreira
Primeiro orientador: LUZ, Rita de Cássia Silva
Abstract: Dopamine, chemically known as 2-(3,4-dihydroxyphenyl) ethylamine (DFE), is a catecholamine neurotransmitter fundamental to the modulation of essential physiological functions. its dysregulation is associated with heart disease, hypertension, kidney failure, and neurological disorders, underscoring the need for reliable detection methods. Ceramic perovskites, characterized by their unique crystal structure, exhibit remarkable properties that make them highly suitable for technological applications. In this study, we explore the synergistic combination of two zirconium-based ceramic perovskites, barium zirconate (BaZrO) and strontium zirconate (SrZrO₂) for the development of a photoelectrochemical platform designed to detect DFE in artificial plasma samples. A fluorine-doped tin oxide (FTO) electrode was modified with BaZrO, and SrZrO, to create a highly efficient photoelectrochemical sensor. The combination of these materials significantly enhanced the sensor's performance compared to their individual use, facilitating faster electron transfer rates and improved sensitivity for DFE detection. Under irradiation in the visible spectrum, using a low-power LED lamp as an excitation source, the photoelectrochemical platform showed a good response, compatible with sustainable and energy-efficient analytical applications. The materials were synthesized by microwave assisted combustion and characterized using X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and chronoamperometry. Under optimized conditions, the sensor demonstrated two linear detection ranges for DFE: 0.01 to 100 µmol L¹ and 100 to 500 µmol L, with a detection limit of 0.009 µmol L¹. The SrZrO/BaZrO/FTO platform exhibited exceptional precision, accuracy, and selectivity for DFE detection. Furthermore, the method was successfully applied to determine DFE concentrations in artificial plasma samples, achieving recovery rates between 98,32% and 102.13%. Furthermore, the photoelectrochemical approach offers significant advantages over well-established analytical methods, such as reduced instrumental costs, operational simplicity, and decreased analysis time These results highlight the potential of this photoelectrochemical platform for reliable and sensitive DFE detection in real-world applications.
Instituição: Universidade Federal do Maranhão
Tipo do documento: Tese</summary>
    <dc:date>2026-03-23T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Desenvolvimento e caracterização de microemulsão a base do óleo de alfavaca (Ocimum gratissimum) para avaliação da atividade antioxidante, citotóxica e antimicrobiana</title>
    <link rel="alternate" href="https://tedebc.ufma.br/jspui/handle/tede/7076" />
    <author>
      <name>FERREIRA, Jonny Erick dos Santos</name>
    </author>
    <id>https://tedebc.ufma.br/jspui/handle/tede/7076</id>
    <updated>2026-07-01T12:09:30Z</updated>
    <published>2026-01-21T00:00:00Z</published>
    <summary type="text">Título: Desenvolvimento e caracterização de microemulsão a base do óleo de alfavaca (Ocimum gratissimum) para avaliação da atividade antioxidante, citotóxica e antimicrobiana
Autor: FERREIRA, Jonny Erick dos Santos
Primeiro orientador: MONTEIRO, Odair dos Santos
Abstract: Ocimum gratissimum, popularly known in Brazil as “alfavaca,” “manjericão,” “alfavacão,”&#xD;
or “alfavaca-cravo,” belongs to the Lamiaceae family, is native to Africa and Asia, and is&#xD;
widely distributed throughout Brazil. Studies on its therapeutic applications have revealed&#xD;
significant pharmacological diversity, with antibacterial, antifungal, hypoglycemic, and&#xD;
antioxidant properties documented in different experimental models. Several biologically&#xD;
active monoterpenes and sesquiterpenes have been described for this genus, especially&#xD;
regarding its antimicrobial potential. In this context, the aim of this study was to develop a&#xD;
microemulsion containing Ocimum gratissimum essential oil (OGEO), obtained by&#xD;
hydrodistillation of the leaves. The essential oils were analyzed by gas chromatography&#xD;
coupled with mass spectrometry (GC-MS) and subsequently evaluated regarding seasonal&#xD;
and circadian influences on chemical composition, as well as antioxidant, cytotoxic,&#xD;
antibacterial, and antifungal activities. Significant variations were observed in both yield&#xD;
and concentration of the essential oil constituents throughout the evaluated periods. On&#xD;
average, 23 compounds were identified, with carvacrol (38.4%–63.5%), p-cymene (9.3%–&#xD;
19.3%), and γ-terpinene (8.7%–27.9%) being the major constituents in all samples. For&#xD;
microemulsion development, a phase diagram was constructed, allowing the identification&#xD;
of the most stable system proportion, composed of 18.2% oil, 72.7%&#xD;
surfactant/cosurfactant, and 9.1% water. The selected formulation (ME6) was&#xD;
characterized in terms of particle size (43.82 ± 0.319 nm), polydispersity index (0.416 ±&#xD;
0.021), zeta potential (−26.2 mV), thermal stability, conductivity (76.8 μS/cm), and pH&#xD;
(6.42–5.37). Headspace GC-MS analysis confirmed the incorporation of the essential oil&#xD;
into the microemulsion matrix, highlighting carvacrol (40.39%), γ-terpinene (22.51%), and&#xD;
p-cymene (12.57%) as the major constituents present in ME6. The microemulsion&#xD;
exhibited superior biological performance compared to the Negative Control (ME-Negative&#xD;
Control) and the isolated essential oil (EO) against all tested microorganisms, both in terms&#xD;
of bacteriostatic activity (MIC) and bactericidal activity (MBC). Notably, it demonstrated&#xD;
strong inhibitory effects against Staphylococcus aureus and Klebsiella pneumoniae,&#xD;
maintaining high microbial growth inhibition even at a concentration of 2000 mg/mL.&#xD;
Microbiological analyses demonstrated that the microemulsion (ME6) presented MIC&#xD;
values ranging from 15.62 to 250 mg/mL against the tested bacteria, whereas the isolated essential oil exhibited MIC values ranging from 250 to 2000 mg/mL, indicating up to a 16-&#xD;
fold increase in antimicrobial potency after microemulsification. Antifungal activity was also&#xD;
enhanced, with a reduction in the minimum fungicidal concentration (MFC) from 500&#xD;
mg/mL (EO) to 15.62 mg/mL (ME6) against Candida albicans and Candida parapsilosis&#xD;
strains. In the antioxidant assay, the microemulsion exhibited an IC50 value of 39.38&#xD;
mg/mL, whereas the isolated essential oil showed an IC50 value of 70.51 mg/mL,&#xD;
confirming a 44.14% increase in antioxidant capacity after microemulsification. In&#xD;
hemolysis assays, OGEO showed values below 10% only at concentrations lower than&#xD;
500 μg/mL, ranging from 9.8% (500 μg/mL) to 9.6% (15.62 μg/mL). In contrast, the&#xD;
microemulsion maintained hemolysis values below 10% even at higher concentrations&#xD;
(2000 μg/mL), reaching 0.3% at the lowest tested concentration (15.62 μg/mL),&#xD;
demonstrating a considerably milder cytotoxic profile compared to the free essential oil.&#xD;
Taken together, these results demonstrate that the microemulsion containing Ocimum&#xD;
gratissimum essential oil exhibited clear superiority over the non-formulated essential oil,&#xD;
presenting enhanced antimicrobial and antioxidant activities associated with a significant&#xD;
reduction in cytotoxicity. This combination of high physicochemical stability, improved&#xD;
biological efficiency, and enhanced safety profile reinforces the potential of this formulation&#xD;
as a promising candidate for the development of topical pharmaceutical products with&#xD;
antibacterial and antifungal properties. The findings of this study contribute to the&#xD;
advancement of pharmaceutical technologies applied to natural products and highlight&#xD;
relevant perspectives for future clinical and biotechnological applications.
Instituição: Universidade Federal do Maranhão
Tipo do documento: Tese</summary>
    <dc:date>2026-01-21T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>DESENVOLVIMENTO DE SENSORES ELETROQUÍMICOS BASEADOS EM MATERIAIS NANOESTRUTURADOS E HÍBRIDOS PARA DETECÇÃO DE FLOROGLUCINOL E L-CISTEÍNA</title>
    <link rel="alternate" href="https://tedebc.ufma.br/jspui/handle/tede/7008" />
    <author>
      <name>RIBEIRO, Danilo Braga</name>
    </author>
    <id>https://tedebc.ufma.br/jspui/handle/tede/7008</id>
    <updated>2026-05-26T13:09:20Z</updated>
    <published>2026-04-24T00:00:00Z</published>
    <summary type="text">Título: DESENVOLVIMENTO DE SENSORES ELETROQUÍMICOS BASEADOS EM MATERIAIS NANOESTRUTURADOS E HÍBRIDOS PARA DETECÇÃO DE FLOROGLUCINOL E L-CISTEÍNA
Autor: RIBEIRO, Danilo Braga
Primeiro orientador: LUZ, Rita de Cássia Silva
Abstract: Phloroglucinol (FG) is a phenolic compound of relevance in pharmaceutical,&#xD;
environmental, and industrial applications, whereas L-cysteine (L-CIS) is a biologically&#xD;
important amino acid associated with metabolic processes and widely used as a&#xD;
biomarker in clinical analyses. In this context, the development of sensitive and&#xD;
selective analytical methods for the determination of these species is of great interest.&#xD;
In this work, electrochemical sensors based on glassy carbon electrodes modified with&#xD;
nanostructured and hybrid materials were developed for the sensitive and selective&#xD;
detection of FG and L-CIS. For FG determination, a sensor composed of multi-walled&#xD;
carbon nanotubes (MWCNTs), carboxyl-functionalized cadmium telluride quantum&#xD;
dots (CdTe-COOH), and chitosan (CTS) was proposed. The combination of these&#xD;
materials promoted a synergistic effect, resulting in a significant enhancement of the&#xD;
electrochemical response in phosphate buffer solution (PBS, pH 7.5). The sensor&#xD;
exhibited, by linear sweep voltammetry (LSV), a linear range from 1 to 2000 µmol L⁻¹&#xD;
and a limit of detection of 0.8 µmol L⁻¹. By differential pulse voltammetry (DPV), two&#xD;
linear ranges were observed, from 0.05 to 250 and from 250 to 1000 µmol L⁻¹, with a&#xD;
limit of detection of 0.03 µmol L⁻¹. Selectivity, repeatability, and reproducibility studies&#xD;
confirmed the robustness of the device, with relative standard deviation (RSD) values&#xD;
of 1.72% for repeatability and 2.56% for reproducibility. The applicability was&#xD;
demonstrated in water and artificial urine samples, with recoveries ranging from&#xD;
104.6% to 107.7% and from 97.7% to 101.6%, respectively. For L-CIS determination,&#xD;
a second sensor was developed using a glassy carbon electrode modified with&#xD;
MWCNTs, trimetallic oxides (Fe₂O₃–MgO–CuO), and Nafion. Morphological analyses&#xD;
indicated the formation of aggregated structures with nanostructured characteristics.&#xD;
Under optimized conditions (PBS, pH 7.5) and using linear sweep voltammetry (LSV),&#xD;
the sensor exhibited a significant improvement in charge transfer kinetics and&#xD;
electrocatalytic performance. The analytical response showed a linear dependence on&#xD;
the logarithm of L-CIS concentration, with two linear ranges (0.5–100 and 100–1000&#xD;
µmol L⁻¹) and high correlation coefficients (R² ≥ 0.990). The detection limit was 0.004&#xD;
µmol L⁻¹. Repeatability and reproducibility tests yielded RSD values of 1.58% and&#xD;
1.82%, respectively, while selectivity studies demonstrated good tolerance toward&#xD;
potential interferents. The applicability of the sensor was confirmed for the&#xD;
determination of L-CIS in artificial plasma and human urine samples, with recoveries ranging from 106.00% to 108.82% and from 96.43% to 103.08%, respectively,&#xD;
demonstrating high accuracy even in complex matrices.
Instituição: Universidade Federal do Maranhão
Tipo do documento: Tese; Trabalho sob Sigilo. Motivo do sigilo: Parte do trabalho ainda será publicado. Prazo previsto para disponibilização total: após 2 anos.</summary>
    <dc:date>2026-04-24T00:00:00Z</dc:date>
  </entry>
  <entry>
    <title>Hidróxidos duplos lamelares e derivados como materiais multifuncionais para processos de adsorção, fotocatálise e energia limpa</title>
    <link rel="alternate" href="https://tedebc.ufma.br/jspui/handle/tede/6947" />
    <author>
      <name>CAMPOS, Vanessa Niely Soares</name>
    </author>
    <id>https://tedebc.ufma.br/jspui/handle/tede/6947</id>
    <updated>2026-05-11T18:51:12Z</updated>
    <published>2026-03-13T00:00:00Z</published>
    <summary type="text">Título: Hidróxidos duplos lamelares e derivados como materiais multifuncionais para processos de adsorção, fotocatálise e energia limpa
Autor: CAMPOS, Vanessa Niely Soares
Primeiro orientador: ALCÂNTARA, Ana Clécia Santos de
Abstract: This thesis investigates the development and application of layered double hydroxides (LDHs) and &#xD;
their derivatives, mixed metal oxides (MMOs), as multifunctional materials aimed at &#xD;
environmental remediation and clean energy production. The research was structured in &#xD;
interconnected chapters, ranging from a systematic literature review to the experimental evaluation &#xD;
of the synthesized materials. The systematic review revealed a growing interest in LDHs and &#xD;
MMOs for adsorption, photocatalysis, and photocatalytic hydrogen production processes, &#xD;
highlighting limitations related to efficiency, stability, and action mechanisms. Based on these &#xD;
challenges, bimetallic (CoAl and NiAl) and trimetallic (NiCoAl) systems were synthesized, along &#xD;
with their calcined derivatives, which were extensively characterized in terms of their structural, &#xD;
morphological, textural, and electronic properties. The results demonstrated that CoAl-LDH &#xD;
exhibited a high adsorption capacity for naproxen, with rapid kinetics influenced by parameters &#xD;
such as pH, initial concentration, and temperature. The process was well described by kinetic and &#xD;
isothermal models, indicating a predominance of chemical and electrostatic interactions. In the &#xD;
energy context, NiAl-LDH and CoAl-LDH showed photocatalytic activity for hydrogen &#xD;
production via water splitting, highlighting the influence of metallic composition on charge &#xD;
separation and process efficiency. Furthermore, mixed metal oxides, particularly the trimetallic &#xD;
NiCoAl-MMO system, exhibited high performance in the photodegradation of ciprofloxacin, with &#xD;
effective removal under different operating conditions and evidence of mechanisms mediated by &#xD;
reactive species. Overall, the results reveal a direct relationship between composition, structure, &#xD;
and functional performance, demonstrating that modulation between lamellar phases and derived &#xD;
oxides is a promising strategy for the development of multifunctional materials. Thus, this thesis &#xD;
contributes significantly to scientific advancement in the area of materials applied to &#xD;
environmental remediation and clean energy generation, offering perspectives for sustainable &#xD;
applications in the real world.
Instituição: Universidade Federal do Maranhão
Tipo do documento: Tese</summary>
    <dc:date>2026-03-13T00:00:00Z</dc:date>
  </entry>
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