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Synthesis of Nanoporous Materials Al-MCM-41 from …
Cecile Reynaud has her expertise in the synthesis and chemical physics of nanomaterials. Her work has mainly dealt with silicon nanocrystals and aligned carbon nanotubes. She was for 15 years at the head of the Laboratory of Nanometric Assemblies (LEDNA) in the fundamental research division of Saclay CEA center. The LEDNA group follows the "bottom-up" approach of nanosciences. It develops its own synthesis methods and obtains nanostructured materials with well-controlled characteristics. The applications are relevant for energy, health, environmental issues and the development of composite materials. The group also develop the up-scaling of its processes to allow their industrial transfer.
N2 - The ability of nanoporous aluminosilicate materials, synthesized using an evaporation-induced self-assembly (EISA) approach, to function as catalysts for the formation of ß-amino alcohols from aromatic amines and epoxides was assessed. Materials containing high aluminium loadings displayed catalytic activity, giving the desired ß-amino alcohols in high yield and with high selectivity for the Markovnikov addition product. These materials exhibited nanoporous pores, typically 1.34–1.49 nm, with a narrow pore size distribution and the expected large surface areas.
Synthesis of Nanoporous Molybdenum Carbide …
T1 - Synthesis of nanoporous aluminosilicate materials and their application as highly selective heterogeneous catalysts for the synthesis of β-amino alcohols
AB - The ability of nanoporous aluminosilicate materials, synthesized using an evaporation-induced self-assembly (EISA) approach, to function as catalysts for the formation of ß-amino alcohols from aromatic amines and epoxides was assessed. Materials containing high aluminium loadings displayed catalytic activity, giving the desired ß-amino alcohols in high yield and with high selectivity for the Markovnikov addition product. These materials exhibited nanoporous pores, typically 1.34–1.49 nm, with a narrow pore size distribution and the expected large surface areas.
Nanoporous Materials Synthesis And Applications
M. Kraini received a Phd Degree in Physics in 2016 from the University of Monastir. Currently, he is a membre at the Laboratory of Physics of Materials and Nanomaterials Applied at Environment, Gabes, Tunisia. His main research interests are the synthesis and characterization of nanoparticles and thin films for a variety of applications.
Assunta Marrocchi is currently Associate Professor at the Department of Chemistry, Biology and Biotechnology of the University of Perugia. She earned a PhD in Chemical Sciences at the same Institution. In 2008 she conducted research at Northwestern University, Evanston, IL (USA), as visiting scientist. Her research expertise and interests encompass the fields of 1) organic functional materials, with a special emphasis on the sustainable synthesis of photoactive organics for solar cells; 2) biomass sustainable conversion to high added value chemicals.
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Nanoporous Materials Synthesis And Applications - …
Perry T. Yin, Shreyas Shah, Manish Chhowalla, and Ki-Bum Lee "Design, Synthesis, and Characterization of Graphene−NanoparticleHybrid Materials for Bioapplications" Chemical Reviews., 115 (7) 2483-2531 doi: 10.1021/cr500537t (2015)
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