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Graphene carboxylic acid based polynorbornene nanocomposites were fabricated following simple synthetic protocol with different graphene loading.
A synthetic protocol for the preparation of periodic mesoporous organosilicas containing niobium (Nb-PMOs) is presented.
This is an economical synthetic protocol for benzimidazole from o-nitroaniline with 100% conversion in 12 h with 97.5% selectivity.
Moreover, such a synthetic protocol can lead to otherwise unaccessible coordination structures.
The synthetic protocol (starting from indigo) is optimized and the final materials are thoroughly analyzed.
The synthetic protocol for the formation of these complexes differs from one ligand to the other.
A well-controlled chemical synthetic protocol was developed to prepare a novel conductive, polypyrrole (PPy)/cellulose nanocrystal (CNC) system that is simple, cost-effective and scalable.
The synthetic protocol was optimized with regards to several parameters including reactions conditions, type and concentration of suspension stabilizer and controlled low temperature addition of co-initiator.
Monometallic Pd, Ag and bimetallic PdxAgy alloy nanoparticles were synthesized in a single pot using a green synthetic protocol in absence of any capping agent.
In addition, several new synthons were prepared, which were required by the designed synthetic protocol to achieve the target molecules.
Taking advantage of a microwave-assisted synthetic protocol, a small library of derivatives was obtained and biologically evaluated.
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