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In the reaction system for the synthesis of SnO2/graphene nanocomposite, EG not only reduces graphene oxide (GO) to graphene, but also results in the formation of SnO2 facilitated by the presence of a small amount of water.
The hydrothermal product will hereafter be referred to as nZGC, where n is the amount of Zn2+ (in mmol) in the hydrothermal reaction system for the synthesis of Zn (Ga1.995Cr0.005) O4 phosphors.
The increasing specific activities upon immobilization as well as the conversion of different substrates by both enzymes point to the potential applicability of this system for the synthesis of optically pure α-amino acids.
In recent years, nanoporous anodic aluminum oxide (AAO) has become a popular template system for the synthesis of various functional nanostructures which have extensive applications in scientific and commercial fields [1 4].
In this study, twelve novel 2-alkoxy-3H-quinazolin-4-ones were synthesized from carbodiimide 8, which was obtained from aza-Wittig reaction of iminophosphorane 7 with aromatic isocynate (Scheme 3).Sophie Barthelemy et al. applied perfluoroalkyl-tagged triphenylphosphine in a fluorous biphasic system for the synthesis of 3H-quinazolin-4-ones by aza-Wittig reaction [27].
They employed this newly synthesize catalytic system for the synthesis of pyrano[3,2-b]chromenes (87) via one-pot three-component reactions of various aromatic aldehydes (5), kojic acid (86) and dimethone (16) under solvent-free condition at 100 °C (Table 25).
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The expression of PG synthases in the microbial systems for the synthesis of PGs is discussed.
These case studies involve multiphase reaction systems for the synthesis of active pharmaceutical ingredients.
The company was created in 2004 around the polycarbonate technology developed at Cornell by Coates, an internationally known polymer chemist whose research focuses on development of new catalyst systems for the synthesis of novel polymers.
This study deals with combustion behavior of B2O3/Mg/NH4Cl/C complex systems for the synthesis of amorphous boron (B), boron carbide (B4C), and boron nitride (BN) nanostructures.
The intrinsically small volumes and highly controlled reaction conditions render continuous flow microreactors ideal systems for the synthesis of potentially explosive compounds such as organic azides.
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