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Amorphous Si (a-Si) powders have been synthesized using various synthetic methods, and their electrochemical sodiation behaviours have been studied in detail.
PbTe nanostructures have been synthesized using various techniques.
Varieties of morphologies for ZnO have been synthesized using various physical and chemical methods explained in the next section.
Various alternative buffer layers with higher bandgap than CdS (2.4 eV) [ZnS (3.8 eV), ZnSe (2.7 eV), ZnMgO, In2Se3 (2.7 eV), In2S3 (2.45 eV)] have been synthesized using various wet and dry deposition techniques [115, 116].
Green silver nanoparticles (AgNPs) have been synthesized using various natural products like Azadirachta indica [15], Glycine max [16], Cinnamon zeylanicum [17], Camellia sinensi [18] Peel extract of Pomegranate [19] and Callicarpa maingayi stem bark extract [20].
In the past few years, ZnGa2O4 nanowires and thin films have been synthesized using various methods such as solid-state reaction [7, 15, 16], sputtering [8], sol gel processing [17], electrophoresis [18], pulsed laser deposition [19], thermal evaporation [20, 21], and chemical vapor deposition [22 26].
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A series of potent and selective factor Xa inhibitors was synthesized using various readily available amino acids as central templates.
Mesoporous AlMCM-41 molecular sieves were synthesized using various aluminium sources, viz., sodium aluminate, aluminium sulphate, aluminium isopropoxide and pseudoboehmite.
In order to assign the soluble fraction signals unmistakably, PPGE samples had to be synthesized using various cationic initiator systems.
The copper-silica (Cu/SiO2) nanosized catalysts were synthesized using various precursors by impregnation (IM) of amorphous silica, or sol gel (SG) and co-precipitation (PRE) methods using sodium silicate or tetraethyl orthosilicate.
In the present study, 7-subsituted coumarin derivatives were synthesized using various aromatic and heterocyclic amines, and evaluated in vivo for anti-inflammatory and analgesic activity, and for ulcerogenic risk.
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