![]() ![]() ![]() ![]() This strategy is sensitive, simple and easy to handle, thus expected to possess potentials for the practical Ni 2+ detection applications. The fact that DMG show high selectivity with Ni 2+ and accompanied with obvious color change enable us to fabricate test strip for naked-eye detection of Ni 2+ Benefit from the large surfaceĪreas of DMG nanoparticles on the test strip, the detection limit is improved by two orders over that of conventional solution method. To partial or complete hollow interiors and eventually resulted in mircotubes. It was proposed that under high reactants' concentrations, molecules will prefer to grow at corners or edges of nuclei with high free energies, to reduce the total energy in the system, which would lead The resulting products can also be controlled through changing the reaction temperatures. By manipulating the reaction kinetics via the concentration of reactants, shapes of the resulting microstructures can be easily tuned from microrods to microtubes. The chemical formulation, having potential for producing an intermediate solution of dmg, produces diethylamino acetonitrile (E 1) through reaction of. We have demonstrated controlled preparation of Ni(DMG) 2 microrods/tubes via chemical reaction method. ![]()
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