PPGNMA PÓS-GRADUAÇÃO EM NANOCIÊNCIAS E MATERIAIS AVANÇADOS FUNDAÇÃO UNIVERSIDADE FEDERAL DO ABC Phone: Not available http://propg.ufabc.edu.br/ppgnma

Banca de QUALIFICAÇÃO: MARCELO FRANCISCO TAGLIALENHA LIMA ISSY DE SOUSA

Uma banca de QUALIFICAÇÃO de MESTRADO foi cadastrada pelo programa.
DISCENTE : MARCELO FRANCISCO TAGLIALENHA LIMA ISSY DE SOUSA
Data: 24/07/2026
HORA: 14:00
LOCAL: Sala 306 do Bloco B do Campus de Santo André da Universidade Federal do ABC
TÍTULO:

Synthesis and Physical Properties Characterization of 3D/2D Halide Double Perovskites for Solar-driven Applications


PÁGINAS: 70
RESUMO:

Lead-free halide double perovskites have emerged as promising semiconductor materials for sustainable energy conversion and environmental remediation (solar-driven applications) due to their reduced toxicity, improved chemical stability, and structural versatility. In this thesis, three-dimensional and two-dimensional silver–bismuth bromide double perovskites are investigated, with emphasis on the comparison between bulk Cs2AgBiBr6 and layered Ruddlesden–Popper phases based on butylammonium spacers. The main goal is to understand how dimensionality affects crystal structure, morphology, optical properties, charge transport, photocatalysis, and photoelectrochemical performance. The materials were synthesized by solution-based crystallization in hydrobromic acid media, using controlled precursor stoichiometry and organic spacer incorporation to tune the dimensionality. Morphological and structural characterizations reveal a clear evolution from lamellar, plate-like microcrystals in the 2D phases to faceted octahedral crystals in the 3D compound. X-ray diffraction and Rietveld refinement confirm the formation of distinct layered and bulk phases, while optical measurements show that dimensional reduction modifies the band structure, excitonic behavior, and light absorption response. The photodegradation of Rhodamine B (RhB) and photoelectrochemical results indicate that aqueous medium and dimensionality play a decisive role in balancing light harvesting, charge separation, surface reactivity, and chemical stability. Although the bulk 3D phase showed the highest photoactivity, it was also highly susceptible to rapid structural degradation and phase segregation into BiOBr and AgBr in purely aqueous media. In contrast, the 2D phases exhibited lower photoactivity than the 3D counterpart but showed slower structural degradation and reduced phase segregation. While 2D phases may improve surface exposure and environmental resistance, the 3D phase offers more favorable charge transport pathways. The study also emphasizes the importance of the degradation medium, electrolyte, and pH conditions, since the reaction environment strongly affects both activity and stability. Overall, this work establishes dimensionality engineering and medium/electrolyte as effective strategies to tune lead-free halide double perovskites for solar-driven hydrogen production and pollutant degradation.


MEMBROS DA BANCA:
Presidente - Interno ao Programa - 1671275 - DERVAL DOS SANTOS ROSA
Membro Titular - Examinador(a) Interno ao Programa - 1734908 - FABIO FURLAN FERREIRA
Membro Titular - Examinador(a) Externo à Instituição - ARYANE TOFANELLO DE SOUZA - UFABC
Membro Suplente - Examinador(a) Interno ao Programa - 2946001 - ANTONIO ALVARO RANHA NEVES
Membro Suplente - Examinador(a) Interno ao Programa - 2249395 - THIAGO BRANQUINHO DE QUEIROZ
Membro Suplente - Examinador(a) Externo ao Programa - 1762438 - JEAN JACQUES BONVENT
Notícia cadastrada em: 25/06/2026 12:33
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