Grupo de Pesquisa em Materiais Molecualres e Engenharia de Cristais

Laboratório especializado em MOFs e cristais luminescentes.

Linhas de Pesquisa

Redes Metalorgânicas (MOFs)

Produzimos compostos orgâncicos que servem como ligantes divergentes e permitem o crescimento de redes porosas ao se ligarem aos metais. Atualmente focamos em MOFs biocompatíveis (BioMOFs) e também na engenharia molecular para modular as dimensões e propriedades dos poros delas.

A complex molecular structure represented in a 3D model with interconnected hexagonal patterns. The image has a vibrant magenta and cyan color scheme set against a dark background, creating a sense of depth and complexity.
A complex molecular structure represented in a 3D model with interconnected hexagonal patterns. The image has a vibrant magenta and cyan color scheme set against a dark background, creating a sense of depth and complexity.
Compostos e Sólidos Orgânicos Luminescentes

Sintetizamos compostos orgânicos que apresentam luminescência, tanto em solução, quanto no estado sólido. Avaliamos também o efeito de polimorfismo e produção de solvatos e como estas formas cristalinas afetam nas propriedades ópticas do material.

A close-up of a cluster of orange and yellow crystalline structures with a glossy, translucent appearance, set against a black background. The crystals have sharp, angular edges and some display an internal refraction of light, creating a mesmerizing visual effect.
A close-up of a cluster of orange and yellow crystalline structures with a glossy, translucent appearance, set against a black background. The crystals have sharp, angular edges and some display an internal refraction of light, creating a mesmerizing visual effect.
Compostos de Coordenação Magnéticos

Leonardo Alemeida

macrophotography of snow

Publicações Recentes

You didn’t come this far to stop

Galeria

Explore a beleza dos cristais e materiais moleculares de obtidos por nosso grupo de pesquisa.

Two molecular models, each consisting of one large red sphere and two smaller white spheres, are positioned facing each other on a white surface. A white plate and a paper clip are placed in the foreground.
Two molecular models, each consisting of one large red sphere and two smaller white spheres, are positioned facing each other on a white surface. A white plate and a paper clip are placed in the foreground.
A close-up of a shiny, metallic structure that resembles a molecular model. The background features a vibrant red hue, with bokeh circles of light scattered across the image, creating an abstract, artistic feel.
A close-up of a shiny, metallic structure that resembles a molecular model. The background features a vibrant red hue, with bokeh circles of light scattered across the image, creating an abstract, artistic feel.
A close-up abstract image of a metallic molecular model with shiny spheres and rods set against a vibrant red background. The focus is soft, creating a dreamy and slightly blurred effect.
A close-up abstract image of a metallic molecular model with shiny spheres and rods set against a vibrant red background. The focus is soft, creating a dreamy and slightly blurred effect.
A close-up of a crystalline structure showcasing intricate, clear crystal formations intertwined with rough, rocky surfaces. Smaller crystal clusters with a sparkling appearance are visible, surrounded by a mix of smoother and jagged textures.
A close-up of a crystalline structure showcasing intricate, clear crystal formations intertwined with rough, rocky surfaces. Smaller crystal clusters with a sparkling appearance are visible, surrounded by a mix of smoother and jagged textures.
The image contains a close-up view of crystalline structures in varying shades of red and blue. The crystals appear to be irregularly shaped and densely packed together, creating a textured and detailed surface.
The image contains a close-up view of crystalline structures in varying shades of red and blue. The crystals appear to be irregularly shaped and densely packed together, creating a textured and detailed surface.