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Sensitive voltammetric determination of cysteamine using promazine hydrochloride as a mediator and modified multi-wall carbon nanotubes carbon paste electrodes
Sensitive voltammetric determination of cysteamine using promazine hydrochloride as a mediator and modified multi-wall carbon nanotubes carbon paste electrodes
The effect of organo-modified montmorillonite on mechanical and barrier properties of linear low-density polyethylene/ low-density polyethylene blend films
The effect of organo-modified montmorillonite on mechanical and barrier properties of linear low-density polyethylene/ low-density polyethylene blend films
Oxidation of ethylbenzene to acetophenone by a Mn catalyst supported on a modified nanosized SiO 2/Al 2O 3 mixed-oxide in supercritical carbon dioxide
Oxidation of ethylbenzene to acetophenone by a Mn catalyst supported on a modified nanosized SiO 2/Al 2O 3 mixed-oxide in supercritical carbon dioxide
Modified multiwall carbon nanotubes paste electrode as a sensor for simultaneous determination of 6-thioguanine and folic acid using ferrocenedicarboxylic acid as a mediator
Simultaneous Determination of Ascorbic Acid Dopamine and Uric Acid by Differential Pulse Voltammetry using Tiron Modified Glassy Carbon Electrode
Simultaneous Determination of Ascorbic Acid Dopamine and Uric Acid by Differential Pulse Voltammetry using Tiron Modified Glassy Carbon Electrode
Highly selective differential pulse voltammetric determination of phenazopyridine using MgCr2O4 nanoparticles decorated MWCNTs-modified glassy carbon electrode.
Highly selective differential pulse voltammetric determination of phenazopyridine using MgCr2O4 nanoparticles decorated MWCNTs-modified glassy carbon electrode.
Highly selective differential pulse voltammetric determination of phenazopyridine using MgCr2O4 nanoparticles decorated MWCNTs-modified glassy carbon electrode.
Polymer Nanocomposites Containing N-Trimellitylimido- L-phenylalanine Dicarboxylic Acid Moieties Reinforced with a-Al2O3 Nanoparticles Modified with Citric Acid Synthesis and Characterization
Ni-Co-Se nanoparticles modified reduced graphene oxide nanoflakes an advance electrocatalyst for highly efficient hydrogen evolution reaction.
Ni-Co-Se nanoparticles modified reduced graphene oxide nanoflakes an advance electrocatalyst for highly efficient hydrogen evolution reaction.
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